Coquitlam Traffic Safety Plans

Coquitlam Traffic Safety Plans

Traffic Control Experts

Through our commitment to excellence in traffic management, we're not just observers but active participants in shaping Coquitlam Traffic Safety Plans's future, ensuring it remains a great place to live, work, and visit. Learn more about Professional Traffic Controllers in Coquitlam, BC here. Learn more about Coquitlam Traffic Safety Plans here It's this commitment to excellence that allows us to minimize disruptions and maintain a smooth operation, regardless of the complexity of the task at hand. At Safeside Traffic Control Ltd, we've invested heavily in cutting-edge technology and tools that enable our traffic controllers to manage event-related traffic efficiently and safely. We're continuously updating our qualifications and staying abreast of industry advancements.
Our partnerships with technology providers are particularly vital. We're always on the lookout for innovative solutions that can enhance safety and efficiency. Moreover, the ATMS integrates seamlessly with emergency services, ensuring they're alerted to incidents immediately, which can be crucial in saving lives.
We're adept at coordinating with local authorities, securing the necessary permits, and ensuring all compliance requirements are met or exceeded. Moreover, these partnerships provide us with the opportunity to contribute to the development of future regulations, leveraging our on-the-ground experience to advocate for practical, safety-focused changes. In coordinating construction sites, we seamlessly integrate traffic control with project timelines to ensure efficiency and safety.
With Safeside Traffic Control Ltd, you're getting more than traffic management; you're getting a partner committed to the safety and success of your project in Coquitlam Traffic Safety Plans, BC. Coquitlam Traffic Control Specialists We've teamed up with local authorities, construction companies, and event organizers, ensuring that our traffic control solutions aren't only top-notch but also seamlessly integrated within the broader safety and logistical frameworks of the projects we support. We're also using mobile apps to provide live updates to drivers, helping them navigate around construction zones more effectively.



Coquitlam Traffic Safety Plans - Pedestrian Safety Guards

  1. Emergency Traffic Control Services
  2. Intersection Safety Management
  3. Urban Road Safety Solutions
  4. Temporary Detour Planning
  5. Municipal Traffic Control Services
  6. Safety Compliance Solutions
  7. Traffic Control Coordination
  8. Traffic Route Planning
  9. Coquitlam Traffic Control Specialists
  10. Urban Traffic Controllers
  11. Roadway Safety Coordination
  12. Traffic Flow Supervision
  13. Traffic Hazard Control
  14. Route Safety Planning
  15. Flagging and Barricade Setup
  16. Work Zone Coordination

Our goal is to remain at the forefront of the traffic control industry, ensuring that as Coquitlam Traffic Safety Plans evolves, its streets remain safe and accessible for everyone.

Coquitlam Traffic Safety Plans - Traffic Control Experts

  1. Safety Traffic Flagging
  2. Safety Compliance Officers
  3. Safety Gear Rental
  4. Emergency Traffic Control Services
  5. Intersection Safety Management
  6. Urban Road Safety Solutions
  7. Temporary Detour Planning
  8. Route Safety Planning
  9. Flagging and Barricade Setup
  10. Work Zone Coordination
  11. Safety Training for Traffic Controllers
  12. Traffic Control Equipment Supply
  13. Safety Traffic Flagging
  14. Safety Compliance Officers
  15. Safety Gear Rental
  16. Emergency Traffic Control Services
  17. Intersection Safety Management
Coquitlam Roadway Services We use wireless communication devices that allow our team to coordinate effortlessly over large areas, ensuring that everyone's on the same page and can respond quickly to any situation. We understand that every project is unique, and we're committed to offering personalized solutions that meet your specific needs. Collaboration with local authorities and stakeholders is key to our success.

We'll also introduce you to our team of certified professionals who are committed to maintaining the highest standards of safety and efficiency on your project. We're not just a service provider; we're your partner in ensuring public safety and efficient traffic flow around the clock. This includes everything from sophisticated traffic modeling software to real-time monitoring systems, ensuring we can adapt to any situation as it evolves.

Through these innovative solutions, we're not just keeping up with the industry standards; we're setting them. Our goal is to ensure the safety of everyone involved, from our team to the general public, while facilitating efficient project completion. Traffic Flow Supervision Moreover, we're constantly adapting our strategies to accommodate the unique needs of each event.

Coquitlam Traffic Safety Plans - Coquitlam Traffic Control Specialists

  • Urban Road Safety Solutions
  • Temporary Detour Planning
  • Flagging and Barricade Setup
  • Work Zone Coordination
  • Safety Training for Traffic Controllers
  • Traffic Control Equipment Supply
  • Safety Traffic Flagging
  • Safety Compliance Officers
  • Safety Gear Rental
  • Emergency Traffic Control Services
  • Intersection Safety Management
  • Urban Road Safety Solutions
  • Temporary Detour Planning
  • Flagging and Barricade Setup
  • Work Zone Coordination
  • Safety Training for Traffic Controllers
  • Traffic Control Equipment Supply
  • Safety Traffic Flagging
  • Safety Compliance Officers


Our signage and equipment rental services are second to none, offering everything from basic cones to advanced electronic message boards. Building on our expansion, it's crucial to understand how effective traffic management fundamentally enhances safety and efficiency at construction sites. At Safeside Traffic Control Ltd, we're committed to upholding the highest levels of road safety.

Road Safety Management Coquitlam

Coquitlam (/koʊˈkwɪtləm/ koh-KWIT-ləm) is a city in the Lower Mainland of British Columbia, Canada. Mainly suburban, Coquitlam is the sixth-largest city in the province, with a population of 148,625 in 2021, and one of the 21 municipalities comprising Metro Vancouver. The mayor is Richard Stewart.

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Reliable Traffic Control Coquitlam


Citations and other links

Traffic Control And Flagging Coquitlam Traffic Safety Plans

We're committed to delivering services that protect everyone on the road, because at the end of the day, getting everyone home safely is the ultimate goal. At Safeside Traffic Control Ltd, we're not just about managing traffic; we're about building relationships. Whether it's a large-scale infrastructure project or a smaller urban development, we've got the know-how to keep things moving smoothly.

Coquitlam Traffic Safety Plans - Traffic Route Planning

  1. Safety Training for Traffic Controllers
  2. Traffic Control Equipment Supply
  3. Safety Traffic Flagging
  4. Safety Compliance Officers
  5. Safety Gear Rental
  6. Emergency Traffic Control Services
  7. Intersection Safety Management
  8. Urban Road Safety Solutions
  9. Temporary Detour Planning
  10. Safety Compliance Solutions
  11. Traffic Control Coordination
  12. Traffic Route Planning
  13. Coquitlam Traffic Control Specialists
  14. Urban Traffic Controllers
  15. Roadway Safety Coordination
  16. Traffic Flow Supervision
  17. Traffic Hazard Control
  18. Route Safety Planning
We also consider the timing of the event to ensure our traffic control measures align with peak traffic periods, making adjustments as necessary.

It's our belief that by ensuring the safety and efficiency of our roads, we're contributing to the overall well-being and happiness of Coquitlam Traffic Safety Plans's residents. We're committed to using the latest technology and equipment to enhance our traffic management strategies. We're at the forefront, harnessing the latest advancements to ensure the safety and efficiency of traffic control in Coquitlam Traffic Safety Plans and beyond.

Our traffic management services for construction sites in Coquitlam Traffic Safety Plans are designed to ensure efficiency, safety, and minimal disruption. This transparency helps in reducing confusion and enhances the overall efficiency of the project.

Coquitlam Traffic Safety Plans - Urban Traffic Controllers

  1. Roadway Safety Coordination
  2. Traffic Flow Supervision
  3. Traffic Hazard Control
  4. Route Safety Planning
  5. Flagging and Barricade Setup
  6. Work Zone Coordination
  7. Safety Training for Traffic Controllers
  8. Traffic Control Equipment Supply
  9. Safety Traffic Flagging
  10. Safety Compliance Officers
  11. Safety Gear Rental
  12. Emergency Traffic Control Services
  13. Intersection Safety Management
  14. Urban Road Safety Solutions
  15. Temporary Detour Planning
  16. Coquitlam Traffic Control Specialists
It's not just about directing traffic for us; it's about creating a safe environment for workers, drivers, and pedestrians alike.

We understand the importance of maintaining smooth traffic flow and ensuring public safety, and we're committed to delivering results that meet these goals. In short, our project management expertise isn't just about controlling traffic; it's about ensuring every project we're involved with is executed as safely and efficiently as possible. These plans are designed not just to manage the flow of vehicles and pedestrians around roadworks safely but also to minimize disruption and maintain access for emergency services.

Traffic Control And Flagging Coquitlam Traffic Safety Plans
Event Road Safety Coquitlam Traffic Safety Plans

Event Road Safety Coquitlam Traffic Safety Plans

We're committed to staying abreast of the latest guidelines and implementing them into our practices. At Safeside Traffic Control Ltd, we offer a comprehensive range of services designed to meet all your traffic management needs. We've implemented clear, visible signage and barriers that guide pedestrians away from danger and toward designated safe paths. Plus, we offer equipment rental for those needing top-quality traffic control gear. That's why we've tailored our services not just to meet the needs of construction sites but also to minimize disruption for the people who call Coquitlam Traffic Safety Plans home.

Safeside Traffic Control Ltd offers a wide range of traffic management solutions tailored to meet the unique needs of Coquitlam Traffic Safety Plans's diverse projects. Beyond initial training, we're committed to ongoing education. They reflect our dedication to safety, efficiency, and the highest professional standards, making us a trusted partner in traffic control. Moreover, we've adopted drone technology for aerial surveillance, giving us a bird's eye view of traffic patterns and potential bottlenecks.

Playing a pivotal role in Coquitlam Traffic Safety Plans's development, we've seen firsthand how professional traffic solutions can drive growth and improve community well-being. We're ready to bring our expertise to your project, ensuring your traffic management needs are met with the highest standards of professionalism and care. They're always on time, and their strategies effectively minimize disruptions.'

Coquitlam Traffic Safety Plans - Municipal Traffic Control Services

  1. Traffic Control Experts
  2. Pedestrian Safety Guards
  3. Coquitlam Roadway Services
  4. Professional Flaggers Coquitlam
  5. Traffic Equipment Rental
  6. Municipal Traffic Control Services
  7. Safety Compliance Solutions
  8. Traffic Control Coordination
  9. Traffic Route Planning
  10. Coquitlam Traffic Control Specialists
  11. Urban Traffic Controllers
  12. Roadway Safety Coordination
  13. Traffic Flow Supervision
  14. Traffic Hazard Control
  15. Route Safety Planning
  16. Flagging and Barricade Setup
It's rewarding to hear that our efforts to provide dependable and efficient solutions are recognized and appreciated. We start by conducting a thorough assessment of the event's venue and its surrounding areas.

We've tailored our approach to tackle the unique challenges these sites present. We're not just meeting the minimum requirements; we're setting new standards in traffic management. Our team's expertise isn't just born from years of experience; it's a result of our unwavering pursuit of learning and adapting. While we've equipped our team with the latest safety gear, we also prioritize clear and efficient communication among all event stakeholders.



Coquitlam Traffic Safety Plans - Coquitlam Traffic Control Specialists

  1. Traffic Flow Supervision
  2. Traffic Hazard Control
  3. Route Safety Planning
  4. Flagging and Barricade Setup
  5. Work Zone Coordination
  6. Safety Training for Traffic Controllers
  7. Traffic Control Equipment Supply
  8. Safety Traffic Flagging
  9. Safety Compliance Officers
  10. Safety Gear Rental
  11. Emergency Traffic Control Services
  12. Intersection Safety Management
  13. Urban Road Safety Solutions
  14. Temporary Detour Planning
  15. Traffic Flow Supervision
  16. Traffic Hazard Control
  17. Route Safety Planning

Roadway Safety Consulting Coquitlam Traffic Safety Plans

In the coming years, we're excited to see our initiatives come to life, making a significant impact on the community and contributing to a safer, more efficient urban environment for everyone. These systems use LED lighting and motion sensors to improve safety for pedestrians, a crucial part of our community. We tailor our traffic control plans to fit the unique needs of each area, considering local traffic patterns and peak times.

Coquitlam Traffic Safety Plans - Coquitlam Roadway Services

  1. Roadway Safety Coordination
  2. Traffic Flow Supervision
  3. Traffic Hazard Control
  4. Route Safety Planning
  5. Flagging and Barricade Setup
  6. Work Zone Coordination
  7. Safety Training for Traffic Controllers
  8. Traffic Control Equipment Supply
  9. Safety Traffic Flagging
  10. Safety Compliance Officers
  11. Safety Gear Rental
  12. Emergency Traffic Control Services
  13. Intersection Safety Management
  14. Urban Road Safety Solutions
  15. Temporary Detour Planning
  16. Traffic Route Planning
  17. Coquitlam Traffic Control Specialists
  18. Urban Traffic Controllers
Our clients' feedback highlights the impact of our certified expertise on their projects and daily operations. Our clients trust us because they know we don't cut corners when it comes to safety.
Building on our foundation of professional certifications, we're also experts in advanced traffic management, where we apply our deep knowledge to manage complex traffic situations effectively. Our team of certified professionals is equipped to handle all aspects of traffic control, from planning and permit acquisition to the implementation of the plan on the ground.

Coquitlam Traffic Safety Plans - Coquitlam Traffic Control Specialists

  • Traffic Equipment Rental
  • Municipal Traffic Control Services
  • Safety Compliance Solutions
  • Traffic Control Coordination
  • Traffic Route Planning
  • Coquitlam Traffic Control Specialists
  • Urban Traffic Controllers
  • Roadway Safety Coordination
  • Traffic Flow Supervision
  • Traffic Hazard Control
  • Route Safety Planning
  • Flagging and Barricade Setup
  • Work Zone Coordination
  • Safety Training for Traffic Controllers
  • Traffic Control Equipment Supply
  • Safety Traffic Flagging
  • Safety Compliance Officers
  • Safety Gear Rental
Moreover, we actively engage with regulatory bodies to stay ahead of any changes in safety standards. Another success story is our collaboration with a city for a large public event.
We're always on the lookout for innovative solutions to enhance our services and keep traffic moving smoothly. Many might not be aware that the bustling city of Coquitlam Traffic Safety Plans has emerged as a beacon for traffic control excellence, thanks in large part to Safeside Traffic Control Ltd. Whether it's a large-scale infrastructure project or a local community event, our team is there to ensure everything runs smoothly, safely, and on schedule. At Safeside Traffic Control Ltd, we're committed to delivering top-notch traffic management solutions that contribute to Coquitlam Traffic Safety Plans's infrastructure development.

Coquitlam Traffic Safety Plans - Coquitlam Roadway Services

  • Safety Gear Rental
  • Emergency Traffic Control Services
  • Intersection Safety Management
  • Urban Road Safety Solutions
  • Temporary Detour Planning
  • Work Zone Coordination
  • Safety Training for Traffic Controllers
  • Traffic Control Equipment Supply
  • Safety Traffic Flagging
  • Safety Compliance Officers
  • Safety Gear Rental
  • Emergency Traffic Control Services
  • Intersection Safety Management
  • Urban Road Safety Solutions
  • Temporary Detour Planning
  • Work Zone Coordination
  • Safety Training for Traffic Controllers
  • Traffic Control Equipment Supply
Read more about Coquitlam Traffic Safety Plans here
We also specialize in providing detailed traffic management plans (TMPs) tailored to the unique challenges of each project. Our joint efforts include regular meetings to discuss upcoming projects, potential traffic disruptions, and strategies to minimize impact on the community. Our team is composed of certified professionals who are passionate about safety and are trained in the latest traffic control techniques. This includes the deployment of smart traffic lights and signs that adapt in real-time to traffic conditions, reducing congestion and enhancing the flow of vehicles and pedestrians.

Roadway Safety Consulting Coquitlam Traffic Safety Plans
Construction Site Flagging Coquitlam Traffic Safety Plans
Construction Site Flagging Coquitlam Traffic Safety Plans

We've also invested in the latest technology and training to stay ahead of the curve. We don't just aim for compliance; we strive for excellence in safety and efficiency. We've introduced advanced traffic management systems that aren't only effective but also environmentally friendly.

Coquitlam Traffic Safety Plans - Municipal Traffic Control Services

  1. Roadway Safety Coordination
  2. Traffic Flow Supervision
  3. Traffic Hazard Control
  4. Route Safety Planning
  5. Flagging and Barricade Setup
  6. Work Zone Coordination
  7. Safety Training for Traffic Controllers
  8. Traffic Control Equipment Supply
  9. Safety Traffic Flagging
  10. Safety Compliance Officers
  11. Safety Gear Rental
  12. Emergency Traffic Control Services
  13. Intersection Safety Management
  14. Urban Road Safety Solutions
  15. Temporary Detour Planning
We conduct regular safety audits and continuously review our practices to identify any areas for improvement. Our team's expertise in planning and executing traffic management strategies makes us the go-to partner for event organizers in Coquitlam Traffic Safety Plans, BC.

This training doesn't just cover the technical aspects; it also encompasses critical safety protocols to protect both our workers and the public. Our services are tailored to meet the unique needs of each project, ensuring minimal disruption and maximum safety. Once we've got a clear picture of what you need, we'll tailor a traffic management plan that aligns perfectly with your project's objectives and timeline. At the heart of ensuring this lifeblood moves smoothly and safely are the professional traffic controllers at Safeside Traffic Control Ltd.

It's a commitment that drives us to constantly innovate and improve. Pedestrian Safety Guards It's this dedication to excellence and safety that sets us apart and makes Safeside Traffic Control Ltd the smart choice for your project. Looking back, we're proud of the solid foundation we've built. Safety is our top priority, and we're proud that our standards not only comply with but often surpass regulatory requirements.

These testimonials not only highlight our expertise but also affirm the trust and confidence our clients place in us. At the heart of Coquitlam Traffic Safety Plans's new traffic safety overhaul lies the integration of cutting-edge technology, aimed at making our roads safer and more efficient. At Safeside, we've developed a comprehensive traffic management approach that ensures both efficiency and safety on the streets of Coquitlam Traffic Safety Plans. We're here to make the process as seamless as possible, offering support from planning through to implementation.

Traffic Control Staffing Coquitlam Traffic Safety Plans

These advancements aren't just about replacing manual operations with automation; it's about creating a seamless, interconnected system that anticipates and reacts to the dynamic nature of road use. We've got lane closures, detour setups, and traffic management plans down to a science, making sure every aspect of the project runs smoothly. The landscape of traffic management is continuously evolving, and we're dedicated to keeping pace. In essence, our impact goes beyond the physical infrastructure. Safety Compliance Solutions
Our use of digital signage, for example, allows for real-time updates and adjustments, making communication with drivers more immediate and effective than ever before. Whether it's a local festival or a major sporting event, we've got the expertise to handle it. We also prioritize clear communication with commuters.

Learn more about Coquitlam Traffic Safety Plans here
Traffic Control Staffing Coquitlam Traffic Safety Plans

Construction site and equipment prepared for start of work in Cologne, Germany (2017)

Construction is a general term meaning the art and science of forming objects, systems, or organizations.[1] It comes from the Latin word constructio (from com- "together" and struere "to pile up") and Old French construction.[2] To 'construct' is a verb: the act of building, and the noun is construction: how something is built or the nature of its structure.

In its most widely used context, construction covers the processes involved in delivering buildings, infrastructure, industrial facilities, and associated activities through to the end of their life. It typically starts with planning, financing, and design that continues until the asset is built and ready for use. Construction also covers repairs and maintenance work, any works to expand, extend and improve the asset, and its eventual demolition, dismantling or decommissioning.

The construction industry contributes significantly to many countries' gross domestic products (GDP). Global expenditure on construction activities was about $4 trillion in 2012. In 2022, expenditure on the construction industry exceeded $11 trillion a year, equivalent to about 13 percent of global GDP. This spending was forecasted to rise to around $14.8 trillion in 2030.[3]

The construction industry promotes economic development and brings many non-monetary benefits to many countries, but it is one of the most hazardous industries. For example, about 20% (1,061) of US industry fatalities in 2019 happened in construction.[4]

History

[edit]

The first huts and shelters were constructed by hand or with simple tools. As cities grew during the Bronze Age, a class of professional craftsmen, like bricklayers and carpenters, appeared. Occasionally, slaves were used for construction work. In the Middle Ages, the artisan craftsmen were organized into guilds. In the 19th century, steam-powered machinery appeared, and later, diesel- and electric-powered vehicles such as cranes, excavators and bulldozers.

Fast-track construction has been increasingly popular in the 21st century. Some estimates suggest that 40% of construction projects are now fast-track construction.[5]

Construction industry sectors

[edit]
Industrial assemblage of a thermal oxidizer in the United States

Broadly, there are three sectors of construction: buildings, infrastructure and industrial:[6]

  • Building construction is usually further divided into residential and non-residential.
  • Infrastructure, also called 'heavy civil' or 'heavy engineering', includes large public works, dams, bridges, highways, railways, water or wastewater and utility distribution.
  • Industrial construction includes offshore construction (mainly of energy installations), mining and quarrying, refineries, chemical processing, mills and manufacturing plants.

The industry can also be classified into sectors or markets.[7] For example, Engineering News-Record (ENR), a US-based construction trade magazine, has compiled and reported data about the size of design and construction contractors. In 2014, it split the data into nine market segments: transportation, petroleum, buildings, power, industrial, water, manufacturing, sewage/waste, telecom, hazardous waste, and a tenth category for other projects.[8] ENR used data on transportation, sewage, hazardous waste and water to rank firms as heavy contractors.[9]

The Standard Industrial Classification and the newer North American Industry Classification System classify companies that perform or engage in construction into three subsectors: building construction, heavy and civil engineering construction, and specialty trade contractors. There are also categories for professional services firms (e.g., engineering, architecture, surveying, project management).[10][11]

Building construction

[edit]
Military residential unit construction by U.S. Navy personnel in Afghanistan

Building construction is the process of adding structures to areas of land, also known as real property sites. Typically, a project is instigated by or with the owner of the property (who may be an individual or an organisation); occasionally, land may be compulsorily purchased from the owner for public use.[12]

Residential construction

[edit]
Units under construction in Brighton, Victoria, Australia

Residential construction may be undertaken by individual land-owners (self-built), by specialist housebuilders, by property developers, by general contractors, or by providers of public or social housing (e.g.: local authorities, housing associations). Where local zoning or planning policies allow, mixed-use developments may comprise both residential and non-residential construction (e.g.: retail, leisure, offices, public buildings, etc.).

Residential construction practices, technologies, and resources must conform to local building authority's regulations and codes of practice. Materials readily available in the area generally dictate the construction materials used (e.g.: brick versus stone versus timber). Costs of construction on a per square meter (or per square foot) basis for houses can vary dramatically based on site conditions, access routes, local regulations, economies of scale (custom-designed homes are often more expensive to build) and the availability of skilled tradespeople.[13]

Non-residential construction

[edit]
Construction of the Federal Reserve building in Kansas City, Missouri

Depending upon the type of building, non-residential building construction can be procured by a wide range of private and public organisations, including local authorities, educational and religious bodies, transport undertakings, retailers, hoteliers, property developers, financial institutions and other private companies. Most construction in these sectors is undertaken by general contractors.

Infrastructure construction

[edit]
Shasta Dam under construction in June 1942

Civil engineering covers the design, construction, and maintenance of the physical and naturally built environment, including public works such as roads, bridges, canals, dams, tunnels, airports, water and sewerage systems, pipelines, and railways.[14][15] Some general contractors have expertise in civil engineering; civil engineering contractors are firms dedicated to work in this sector, and may specialise in particular types of infrastructure.

Industrial construction

[edit]
The National Cement Share Company of Ethiopia's new plant in Dire Dawa

Industrial construction includes offshore construction (mainly of energy installations: oil and gas platforms, wind power), mining and quarrying, refineries, breweries, distilleries and other processing plants, power stations, steel mills, warehouses and factories.

Construction processes

[edit]

Some construction projects are small renovations or repair jobs, like repainting or fixing leaks, where the owner may act as designer, paymaster and laborer for the entire project. However, more complex or ambitious projects usually require additional multi-disciplinary expertise and manpower, so the owner may commission one or more specialist businesses to undertake detailed planning, design, construction and handover of the work. Often the owner will appoint one business to oversee the project (this may be a designer, a contractor, a construction manager, or other advisors); such specialists are normally appointed for their expertise in project delivery and construction management and will help the owner define the project brief, agree on a budget and schedule, liaise with relevant public authorities, and procure materials and the services of other specialists (the supply chain, comprising subcontractors and materials suppliers). Contracts are agreed for the delivery of services by all businesses, alongside other detailed plans aimed at ensuring legal, timely, on-budget and safe delivery of the specified works.

Design, finance, and legal aspects overlap and interrelate. The design must be not only structurally sound and appropriate for the use and location, but must also be financially possible to build, and legal to use. The financial structure must be adequate to build the design provided and must pay amounts that are legally owed. Legal structures integrate design with other activities and enforce financial and other construction processes.

These processes also affect procurement strategies. Clients may, for example, appoint a business to design the project, after which a competitive process is undertaken to appoint a lead contractor to construct the asset (design–bid–build); they may appoint a business to lead both design and construction (design-build); or they may directly appoint a designer, contractor and specialist subcontractors (construction management).[16] Some forms of procurement emphasize collaborative relationships (partnering, alliancing) between the client, the contractor, and other stakeholders within a construction project, seeking to ameliorate often highly competitive and adversarial industry practices. DfMA (design for manufacture and assembly) approaches also emphasize early collaboration with manufacturers and suppliers regarding products and components.

Construction or refurbishment work in a "live" environment (where residents or businesses remain living in or operating on the site) requires particular care, planning and communication.[17]

Planning

[edit]
Digging the foundation for a building construction in Jakarta, Indonesia

When applicable, a proposed construction project must comply with local land-use planning policies including zoning and building code requirements. A project will normally be assessed (by the 'authority having jurisdiction', AHJ, typically the municipality where the project will be located) for its potential impacts on neighbouring properties, and upon existing infrastructure (transportation, social infrastructure, and utilities including water supply, sewerage, electricity, telecommunications, etc.). Data may be gathered through site analysis, site surveys and geotechnical investigations. Construction normally cannot start until planning permission has been granted, and may require preparatory work to ensure relevant infrastructure has been upgraded before building work can commence. Preparatory works will also include surveys of existing utility lines to avoid damage-causing outages and other hazardous situations.

Some legal requirements come from malum in se considerations, or the desire to prevent indisputably bad phenomena, e.g. explosions or bridge collapses. Other legal requirements come from malum prohibitum considerations, or factors that are a matter of custom or expectation, such as isolating businesses from a business district or residences from a residential district. An attorney may seek changes or exemptions in the law that governs the land where the building will be built, either by arguing that a rule is inapplicable (the bridge design will not cause a collapse), or that the custom is no longer needed (acceptance of live-work spaces has grown in the community).[18]

During the construction of a building, a municipal building inspector usually inspects the ongoing work periodically to ensure that construction adheres to the approved plans and the local building code. Once construction is complete, any later changes made to a building or other asset that affect safety, including its use, expansion, structural integrity, and fire protection, usually require municipality approval.

Finance

[edit]

Depending on the type of project, mortgage bankers, accountants, and cost engineers may participate in creating an overall plan for the financial management of a construction project. The presence of the mortgage banker is highly likely, even in relatively small projects since the owner's equity in the property is the most obvious source of funding for a building project. Accountants act to study the expected monetary flow over the life of the project and to monitor the payouts throughout the process. Professionals including cost engineers, estimators and quantity surveyors apply expertise to relate the work and materials involved to a proper valuation.

Financial planning ensures adequate safeguards and contingency plans are in place before the project is started, and ensures that the plan is properly executed over the life of the project. Construction projects can suffer from preventable financial problems.[19] Underbids happen when builders ask for too little money to complete the project. Cash flow problems exist when the present amount of funding cannot cover the current costs for labour and materials; such problems may arise even when the overall budget is adequate, presenting a temporary issue. Cost overruns with government projects have occurred when the contractor identified change orders or project changes that increased costs, which are not subject to competition from other firms as they have already been eliminated from consideration after the initial bid.[20] Fraud is also an issue of growing significance within construction.[21]

Large projects can involve highly complex financial plans and often start with a conceptual cost estimate performed by a building estimator. As portions of a project are completed, they may be sold, supplanting one lender or owner for another, while the logistical requirements of having the right trades and materials available for each stage of the building construction project carry forward. Public–private partnerships (PPPs) or private finance initiatives (PFIs) may also be used to help deliver major projects. According to McKinsey in 2019, the "vast majority of large construction projects go over budget and take 20% longer than expected".[22]

[edit]
Construction along Ontario Highway 401, widening the road from six to twelve travel lanes

A construction project is a complex net of construction contracts and other legal obligations, each of which all parties must carefully consider. A contract is the exchange of a set of obligations between two or more parties, and provides structures to manage issues. For example, construction delays can be costly, so construction contracts set out clear expectations and clear paths to manage delays. Poorly drafted contracts can lead to confusion and costly disputes.

At the start of a project, legal advisors seek to identify ambiguities and other potential sources of trouble in the contract structures, and to present options for preventing problems. During projects, they work to avoid and resolve conflicts that arise. In each case, the lawyer facilitates an exchange of obligations that matches the reality of the project.

Apartment complex under construction in Daegu, South Korea

Procurement

[edit]

Traditional or Design-bid-build

[edit]

Design-bid-build is the most common and well-established method of construction procurement. In this arrangement, the architect, engineer or builder acts for the client as the project coordinator. They design the works, prepare specifications and design deliverables (models, drawings, etc.), administer the contract, tender the works, and manage the works from inception to completion. In parallel, there are direct contractual links between the client and the main contractor, who, in turn, has direct contractual relationships with subcontractors. The arrangement continues until the project is ready for handover.

Design-build

[edit]

Design-build became more common from the late 20th century, and involves the client contracting a single entity to provide design and construction. In some cases, the design-build package can also include finding the site, arranging funding and applying for all necessary statutory consents. Typically, the client invites several Design & Build (D&B) contractors to submit proposals to meet the project brief and then selects a preferred supplier. Often this will be a consortium involving a design firm and a contractor (sometimes more than one of each). In the United States, departments of transportation usually use design-build contracts as a way of progressing projects where states lack the skills or resources, particularly for very large projects.[23]

Construction management

[edit]

In a construction management arrangement, the client enters into separate contracts with the designer (architect or engineer), a construction manager, and individual trade contractors. The client takes on the contractual role, while the construction or project manager provides the active role of managing the separate trade contracts, and ensuring that they complete all work smoothly and effectively together. This approach is often used to speed up procurement processes, to allow the client greater flexibility in design variation throughout the contract, to enable the appointment of individual work contractors, to separate contractual responsibility on each individual throughout the contract, and to provide greater client control.

Design

[edit]

In the industrialized world, construction usually involves the translation of designs into reality. Most commonly (i.e.: in a design-bid-build project), the design team is employed by (i.e. in contract with) the property owner. Depending upon the type of project, a design team may include architects, civil engineers, mechanical engineers, electrical engineers, structural engineers, fire protection engineers, planning consultants, architectural consultants, and archaeological consultants. A 'lead designer' will normally be identified to help coordinate different disciplinary inputs to the overall design. This may be aided by integration of previously separate disciplines (often undertaken by separate firms) into multi-disciplinary firms with experts from all related fields,[24] or by firms establishing relationships to support design-build processes.

The increasing complexity of construction projects creates the need for design professionals trained in all phases of a project's life-cycle and develop an appreciation of the asset as an advanced technological system requiring close integration of many sub-systems and their individual components, including sustainability. For buildings, building engineering is an emerging discipline that attempts to meet this new challenge.

Traditionally, design has involved the production of sketches, architectural and engineering drawings, and specifications. Until the late 20th century, drawings were largely hand-drafted; adoption of computer-aided design (CAD) technologies then improved design productivity, while the 21st-century introduction of building information modeling (BIM) processes has involved the use of computer-generated models that can be used in their own right or to generate drawings and other visualisations as well as capturing non-geometric data about building components and systems.

On some projects, work on-site will not start until design work is largely complete; on others, some design work may be undertaken concurrently with the early stages of on-site activity (for example, work on a building's foundations may commence while designers are still working on the detailed designs of the building's internal spaces). Some projects may include elements that are designed for off-site construction (see also prefabrication and modular building) and are then delivered to the site ready for erection, installation or assembly.

On-site construction

[edit]
On-site foundation construction.

Once contractors and other relevant professionals have been appointed and designs are sufficiently advanced, work may commence on the project site. Typically, a construction site will include a secure perimeter to restrict unauthorised access, site access control points, office and welfare accommodation for personnel from the main contractor and other firms involved in the project team, and storage areas for materials, machinery and equipment. According to the McGraw-Hill Dictionary of Architecture and Construction's definition, construction may be said to have started when the first feature of the permanent structure has been put in place, such as pile driving, or the pouring of slabs or footings.[25]

Commissioning and handover

[edit]

Commissioning is the process of verifying that all subsystems of a new building (or other assets) work as intended to achieve the owner's project requirements and as designed by the project's architects and engineers.

Defects liability period

[edit]

A period after handover (or practical completion) during which the owner may identify any shortcomings in relation to the building specification ('defects'), with a view to the contractor correcting the defect.[26]

Maintenance, repair and improvement

[edit]

Maintenance involves functional checks, servicing, repairing or replacing of necessary devices, equipment, machinery, building infrastructure, and supporting utilities in industrial, business, governmental, and residential installations.[27][28]

Demolition

[edit]

Demolition is the discipline of safely and efficiently tearing down buildings and other artificial structures. Demolition contrasts with deconstruction, which involves taking a building apart while carefully preserving valuable elements for reuse purposes (recycling – see also circular economy).

Industry scale and characteristics

[edit]

Economic activity

[edit]
Helicopter view of the Atacama Large Millimeter/submillimeter Array (ALMA) Operations Support Facility (OSF) construction site

The output of the global construction industry was worth an estimated $10.8 trillion in 2017, and in 2018 was forecast to rise to $12.9 trillion by 2022,[29] and to around $14.8 trillion in 2030.[3] As a sector, construction accounts for more than 10% of global GDP (in developed countries, construction comprises 6–9% of GDP),[30] and employs around 7% of the total employed workforce around the globe[31] (accounting for over 273 million full- and part-time jobs in 2014).[32] Since 2010,[33] China has been the world's largest single construction market.[34] The United States is the second largest construction market with a 2018 output of $1.581 trillion.[35]

  • In the United States in February 2020, around $1.4 trillion worth of construction work was in progress, according to the Census Bureau, of which just over $1.0 trillion was for the private sector (split roughly 55:45% between residential and nonresidential); the remainder was public sector, predominantly for state and local government.[36]
  • In Armenia, the construction sector experienced growth during the latter part of 2000s. Based on National Statistical Service, Armenia's construction sector generated approximately 20% of Armenia's GDP during the first and second quarters of 2007. In 2009, according to the World Bank, 30% of Armenia's economy was from construction sector.[37]
  • In Vietnam, the construction industry plays an important role in the national economy.[38][39][40] The Vietnamese construction industry has been one of the fastest growing in the Asia-Pacific region in recent years.[41][42] The market was valued at nearly $60 billion in 2021.[43] In the first half of 2022, Vietnam's construction industry growth rate reached 5.59%.[43][44][45] In 2022, Vietnam's construction industry accounted for more than 6% of the country's GDP, equivalent to over 589.7 billion Vietnamese dong.[46][47] The industry of industry and construction accounts for 38.26% of Vietnam's GDP.[48][49][50] At the same time, the industry is one of the most attractive industries for foreign direct investment (FDI) in recent years.[51][52][53]

Construction is a major source of employment in most countries; high reliance on small businesses, and under-representation of women are common traits. For example:

  • In the US, construction employed around 11.4m people in 2020, with a further 1.8m employed in architectural, engineering, and related professional services – equivalent to just over 8% of the total US workforce.[54] The construction workers were employed in over 843,000 organisations, of which 838,000 were privately held businesses.[55] In March 2016, 60.4% of construction workers were employed by businesses with fewer than 50 staff.[56] Women are substantially underrepresented (relative to their share of total employment), comprising 10.3% of the US construction workforce, and 25.9% of professional services workers, in 2019.[54]
  • The United Kingdom construction sector contributed £117 billion (6%) to UK GDP in 2018, and in 2019 employed 2.4m workers (6.6% of all jobs). These worked either for 343,000 'registered' construction businesses, or for 'unregistered' businesses, typically self-employed contractors;[57] just over one million small/medium-sized businesses, mainly self-employed individuals, worked in the sector in 2019, comprising about 18% of all UK businesses.[58] Women comprised 12.5% of the UK construction workforce.[59]

According to McKinsey research, productivity growth per worker in construction has lagged behind many other industries across different countries including in the United States and in European countries. In the United States, construction productivity per worker has declined by half since the 1960s.[60]

Construction GVA by country

[edit]
List of countries with the largest construction Gross Value Added in 2018
Economy
Construction GVA in 2018 (billions in USD)
(01)  China
934.2
(02)  United States
839.1
(03)  Japan
275.5
(04)  India
201.2
(05)  Germany
180.5
(06)  United Kingdom
154.7
(07)  France
138.7
(08)  Canada
125.4
(09)  Russia
121.2
(10)  Australia
111.8
(11)  Indonesia
109.7
(12)  South Korea
93.0
(13)  Brazil
92.6
(14)  Mexico
89.0
(15)  Spain
80.0
(16)  Italy
78.9
(17)  Turkey
55.3
(18)  Saudi Arabia
40.2
(19)  Netherlands
39.5
(20)  Poland
39.4
(21)  Switzerland
36.3
(22)  United Arab Emirates
34.5
(23)  Sweden
33.3
(24)  Austria
27.2
(25)  Qatar
27.0

The twenty-five largest countries in the world by construction GVA (2018)[61]

Employment

[edit]
Ironworkers erecting the steel frame of a new building at Massachusetts General Hospital in Boston
A truck operator at Al Gamil, the largest construction company in Djibouti

Some workers may be engaged in manual labour[62] as unskilled or semi-skilled workers; they may be skilled tradespeople; or they may be supervisory or managerial personnel. Under safety legislation in the United Kingdom, for example, construction workers are defined as people "who work for or under the control of a contractor on a construction site";[63] in Canada, this can include people whose work includes ensuring conformance with building codes and regulations, and those who supervise other workers.[64]

Laborers comprise a large grouping in most national construction industries. In the United States, for example, in May 2021 the construction sector employed just over 7.5 million people, of whom just over 820,000 were laborers, while 573,000 were carpenters, 508,000 were electricians, 258,000 were equipment operators and 230,000 were construction managers.[65] Like most business sectors, there is also substantial white-collar employment in construction – 681,000 US workers were recorded by the United States Department of Labor as in 'office and administrative support occupations' in May 2021.[66]

Large-scale construction requires collaboration across multiple disciplines. A project manager normally manages the budget on the job, and a construction manager, design engineer, construction engineer or architect supervises it. Those involved with the design and execution must consider zoning requirements and legal issues, environmental impact of the project, scheduling, budgeting and bidding, construction site safety, availability and transportation of building materials, logistics, and inconvenience to the public, including those caused by construction delays.

Some models and policy-making organisations promote the engagement of local labour in construction projects as a means of tackling social exclusion and addressing skill shortages. In the UK, the Joseph Rowntree Foundation reported in 2000 on 25 projects which had aimed to offer training and employment opportunities for locally based school leavers and unemployed people.[67] The Foundation published "a good practice resource book" in this regard at the same time.[68] Use of local labour and local materials were specified for the construction of the Danish Storebaelt bridge, but there were legal issues which were challenged in court and addressed by the European Court of Justice in 1993. The court held that a contract condition requiring use of local labour and local materials was incompatible with EU treaty principles.[69] Later UK guidance noted that social and employment clauses, where used, must be compatible with relevant EU regulation.[70] Employment of local labour was identified as one of several social issues which could potentially be incorporated in a sustainable procurement approach, although the interdepartmental Sustainable Procurement Group recognised that "there is far less scope to incorporate [such] social issues in public procurement than is the case with environmental issues".[71]

There are many routes to the different careers within the construction industry. There are three main tiers of construction workers based on educational background and training, which vary by country:

Unskilled and semi-skilled workers

[edit]

Unskilled and semi-skilled workers provide general site labor, often have few or no construction qualifications, and may receive basic site training.

Skilled tradespeople

[edit]

Skilled tradespeople have typically served apprenticeships (sometimes in labor unions) or received technical training; this group also includes on-site managers who possess extensive knowledge and experience in their craft or profession. Skilled manual occupations include carpenters, electricians, plumbers, ironworkers, heavy equipment operators and masons, as well as those involved in project management. In the UK these require further education qualifications, often in vocational subject areas, undertaken either directly after completing compulsory education or through "on the job" apprenticeships.[72]

Professional, technical or managerial personnel

[edit]

Professional, technical and managerial personnel often have higher education qualifications, usually graduate degrees, and are trained to design and manage construction processes. These roles require more training as they demand greater technical knowledge, and involve more legal responsibility. Example roles (and qualification routes) include:

Safety

[edit]
At-risk workers without appropriate safety equipment

Construction is one of the most dangerous occupations in the world, incurring more occupational fatalities than any other sector in both the United States and in the European Union.[4][73] In the US in 2019, 1,061, or about 20%, of worker fatalities in private industry occurred in construction.[4] In 2017, more than a third of US construction fatalities (366 out of 971 total fatalities) were the result of falls;[74] in the UK, half of the average 36 fatalities per annum over a five-year period to 2021 were attributed to falls from height.[75] Proper safety equipment such as harnesses, hard hats and guardrails and procedures such as securing ladders and inspecting scaffolding can curtail the risk of occupational injuries in the construction industry.[76] Other major causes of fatalities in the construction industry include electrocution, transportation accidents, and trench cave-ins.[77]

Other safety risks for workers in construction include hearing loss due to high noise exposure, musculoskeletal injury, chemical exposure, and high levels of stress.[78] Besides that, the high turnover of workers in construction industry imposes a huge challenge of accomplishing the restructuring of work practices in individual workplaces or with individual workers.[citation needed] Construction has been identified by the National Institute for Occupational Safety and Health (NIOSH) as a priority industry sector in the National Occupational Research Agenda (NORA) to identify and provide intervention strategies regarding occupational health and safety issues.[79][80] A study conducted in 2022 found “significant effect of air pollution exposure on construction-related injuries and fatalities”, especially with the exposure of nitrogen dioxide.[81]

Sustainability

[edit]

Sustainability is an aspect of "green building", defined by the United States Environmental Protection Agency (EPA) as "the practice of creating structures and using processes that are environmentally responsible and resource-efficient throughout a building's life-cycle from siting to design, construction, operation, maintenance, renovation and deconstruction."[82]

Decarbonising construction

[edit]

The construction industry may require transformation at pace and at scale if it is to successfully contribute to achieving the target set out in The Paris Agreement of limiting global temperature rise to 1.5C above industrial levels.[83][84] The World Green Building Council has stated the buildings and infrastructure around the world can reach 40% less embodied carbon emissions but that this can only be achieved through urgent transformation.[85][86]

Conclusions from industry leaders have suggested that the net zero transformation is likely to be challenging for the construction industry, but it does present an opportunity. Action is demanded from governments, standards bodies, the construction sector, and the engineering profession to meet the decarbonising targets.[87]

In 2021, the National Engineering Policy Centre published its report Decarbonising Construction: Building a new net zero industry,[87] which outlined key areas to decarbonise the construction sector and the wider built environment. This report set out around 20 different recommendations to transform and decarbonise the construction sector, including recommendations for engineers, the construction industry and decision makers, plus outlined six-overarching ‘system levers’ where action taken now will result in rapid decarbonisation of the construction sector.[87] These levels are:

  • Setting and stipulating progressive targets for carbon reduction
  • Embedding quantitative whole-life carbon assessment into public procurement
  • Increasing design efficiency, materials reuse and retrofit of buildings
  • Improving whole-life carbon performance
  • Improving skills for net zero
  • Adopting a joined up, systems approach to decarbonisation across the construction sector and with other sectors

Progress is being made internationally to decarbonise the sector including improvements to sustainable procurement practice such as the CO2 performance ladder in the Netherlands and the Danish Partnership for Green Public Procurement.[88][89] There are also now demonstrations of applying the principles of circular economy practices in practice such as Circl, ABN AMRO's sustainable pavilion and the Brighton Waste House.[90][91][92]

See also

[edit]

icon Architecture portal icon Engineering portal

Notes

[edit]
  1. ^ a b c In the UK, the Chartered Engineer qualification is controlled by the Engineering Council, and is often achieved through membership of the relevant professional institution (ICE, CIBSE, IStructE, etc).

References

[edit]
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How to do a house layout


Flagging may refer to:

See also

[edit]

Pedestrians on a crosswalk in Buenos Aires
A sign in Belo Horizonte, Brazil, directing pedestrians to an overpass for safe crossing.

A pedestrian is a person traveling on foot, whether walking or running.[citation needed] In modern times, the term usually refers to someone walking on a road or pavement (US: sidewalk), but this was not the case historically.[citation needed] Pedestrians may also be wheelchair users or other disabled people who use mobility aids.[1]

Etymology

[edit]

The meaning of pedestrian is displayed with the morphemes ped- ('foot') and -ian ('characteristic of').[2] This word is derived from the Latin term pedester ('going on foot') and was first used (in the English language) during the 18th century.[3] It was originally used, and can still be used today, as an adjective meaning plain or dull.[4] However, in this article it takes on its noun form and refers to someone who walks.

The word pedestrian may have been used in middle French in the Recueil des Croniques et Anchiennes Istories de la Grant Bretaigne.[5]

History

[edit]

Walking has always been the primary means of human locomotion. The first humans to migrate from Africa, about 60,000 years ago, walked.[6] They walked along the coast of India to reach Australia. They walked across Asia to reach the Americas, and from Central Asia into Europe.

With the advent of the cars at the beginning of the 20th century, the main story is that the cars took over, and "people chose the car", but there were many groups and movements that held on to walking as their preferred means of daily transport and some who organised to promote walking, and to counterbalance the widely-held view that often favoured cars, e.g. as related by Peter Norton.[7]

During the 18th and 19th centuries, pedestrianism (walking) was non a popular spectator sport, just as equestrianism (riding) still is in places. One of the most famous pedestrians of that period was Captain Robert Barclay Allardice, known as "The Celebrated Pedestrian", of Stonehaven in Scotland. His most impressive feat was to walk 1 mile (1.6 km) every hour for 1000 hours, which he achieved between 1 June and 12 July 1809. This feat captured many people's imagination, and around 10,000 people came to watch over the course of the event. During the rest of the 19th century, many people tried to repeat this feat, including Ada Anderson who developed it further and walked a half-mile (800 m) each quarter-hour over the 1000 hours.

Since the 20th century, interest in walking as a sport has dropped. Racewalking is still an Olympic sport, but fails to catch public attention as it did. However major walking feats are still performed, such as the Land's End to John o' Groats walk in the United Kingdom, and the traversal of North America from coast to coast. The first person to walk around the world was Dave Kunst who started his walk traveling east from Waseca, Minnesota on 20 June 1970 and completed his journey on 5 October 1974, when he re-entered the town from the west. These feats are often tied to charitable fundraising and are undertaken, among others, by celebrities such as Sir Jimmy Savile and Ian Botham.

Footpaths and roads

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Outdoor pedestrian networks

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Pedestrian signal in Santa Ana, California.
The pedestrian Bauman Street in Kazan, Russia.
In many jurisdictions in the United States, one must yield to a pedestrian in a crosswalk.
Colorful pedestrian Light Tunnel at Detroit's DTW airport, United States.

Roads often have a designated footpath for pedestrian traffic, called the sidewalk in North American English, the pavement in British English, and the footpath in Australian and New Zealand English. There are also footpaths not associated with a road; these include urban short cuts and also rural paths used mainly by ramblers, hikers, or hill-walkers. Footpaths in mountainous or forested areas may also be called trails. Pedestrians share some footpaths with horses and bicycles: these paths may be known as bridleways. Other byways used by walkers are also accessible to vehicles. There are also many roads with no footpath. Some modern towns (such as the new suburbs of Peterborough in England) are designed with the network of footpaths and cycle paths almost entirely separate from the road network.

The term trail is also used by the authorities in some countries to mean any footpath that is not attached to a road or street.[8] If such footpaths are in urban environments and are meant for both pedestrians and pedal cyclists, they can be called shared use paths[9] or multi-use paths in general and official usage. нуПЬ

Some shopping streets are for pedestrians only. Some roads have special pedestrian crossings. A bridge solely for pedestrians is a footbridge.

In Britain, regardless of whether there is a footpath, pedestrians have the legal right to use most public roads, excluding motorways and some toll tunnels and bridges such as the Blackwall Tunnel and the Dartford Crossing — although sometimes it may endanger the pedestrian and other road users. The UK Highway Code advises that pedestrians should walk in the opposite direction to oncoming traffic on a road with no footpath.[10]

Indoor pedestrian networks

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Indoor pedestrian networks connect the different rooms or spaces of a building. Airports, museums, campuses, hospitals and shopping centres might have tools allowing for the computation of the shortest paths between two destinations. Their increasing availability is due to the complexity of path finding in these facilities.[11] Different mapping tools, such as OpenStreetMap, are extending to indoor spaces.[12]

Pedestrianisation

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Pedestrianisation might be considered as a process of removing vehicular traffic from city streets or restricting vehicular access to streets for use by pedestrians, to improve the environment and safety.[13]

Efforts are under way by pedestrian advocacy groups to restore pedestrian access to new developments, especially to counteract newer developments, 20% to 30% of which in the United States do not include footpaths. Some activists advocate large pedestrian zones where only pedestrians, or pedestrians and some non-motorised vehicles, are allowed. Many urbanists have extolled the virtues of pedestrian streets in urban areas. In the US the proportion of households without a car is 8%, but a notable exception is New York City, the only locality in the United States where more than half of all households do not own a car (the figure is even higher in Manhattan, over 75%).[14]

The use of cars for short journeys is officially discouraged in many parts of the world, and construction or separation of dedicated walking routes in city centres receives a high priority in many large cities in Western Europe, often in conjunction with public transport enhancements. In Copenhagen, the world's longest pedestrian shopping area, Strøget, has been developed over the last 40 years, principally due to the work of Danish architect Jan Gehl, a principle of urban design known as copenhagenisation.

Safety issues

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A crossing for school children in Jakarta

Safety is an important issue where cars can cross the pedestrian way. Drivers and pedestrians share some responsibility for improving safety of road users.[15] Road traffic crashes are not inevitable; they are both predictable and preventable.[13]

Key risks for pedestrians are well known. Among the well-documented factors are driver behaviour (including speeding and drunk driving); infrastructure missing facilities (including pavements, crossings and islands); and vehicle designs which are not forgiving to pedestrians struck by a vehicle.[13] The Traffic Injury Research Foundation describes pedestrians as vulnerable road users because they are not protected in the same way as occupants of motor vehicles.[16] There is an increasing focus on pedestrians versus motor vehicles in many countries.[citation needed]

Most pedestrian injuries occur while they are crossing a street.[13] Most crashes involving a pedestrian occur at night.[13] Most pedestrian fatalities are killed by a frontal impact. In such a situation, an adult pedestrian is struck by a car front (for instance, the bumper touches either the leg or knee-joint area), accelerating the lower part of the body forward while "the upper body is rotated and accelerated relative to the car," at which point the pelvis and thorax are hit.[13] Then the head hits the windscreen at the velocity of the striking car. Finally, the victim falls to the ground.[13]

Research has shown that urban crimes, or the mere perception of crimes, severely affect the mental and physical health of pedestrians. Inter-pedestrian behaviour, without the involvement of vehicles, is also a key factor to pedestrian safety.[17]

Some special interest groups consider pedestrian fatalities on American roads a carnage.[18] Five states – Arizona, California, Florida, Georgia and Texas – are the site of 46% of all pedestrian deaths in the country.[18] The advent of SUVs is considered a leading cause;[19] speculation of other factors includes population growth, driver distraction with mobile phones, poor street lighting, alcohol and drugs and speeding.[18]

Cities have had mixed results in addressing pedestrian safety with Vision zero plan: Los Angeles fails while NYC has had success. Nonetheless, in the US, some pedestrians have just 40 seconds to cross a street 10 lanes wide.[18]

Pedestrian fatalities are much more common in accident situations in the European Union than in the United States. In the European Union countries, more than 200,000 pedestrians and cyclists are injured annually.[20] Also, each year, more than 270 000 pedestrians lose their lives on the world's roads.[13] At a global level pedestrians constitute 22% of all road deaths,[13] but might be two-thirds in some countries.[13] Pedestrian fatalities, in 2016, were[needs update] 2.6 per million population in the Netherlands, 4.3 in Sweden, 4.5 in Wales, 5.3 in New Zealand, 6.0 in Germany; 7.1 in the whole United Kingdom, 7.5 in Australia, 8.4 in France, 8.4 in Spain, 9.4 in Italy, 11.1 in Israel, 13 in Japan, 13.8 in Greece, 18.5 in the United States, 22.9 in Poland, and 36.3 in Romania.[21]

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  • EU: Source CARE,[22] 2010-2019: Source ERSO.[23]
  • United States: Source NHTSA 2016[24] (FARS ARF), NHTSA 2019[25]

Road design impact on safety

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Pedestrians ready across the street next to the Forum shopping center in Helsinki, Finland

It is well documented that a minor increase in speed might greatly increase the likelihood of a crash, and exacerbate resulting casualties. For this reason, the recommended maximum speed is 30 km/h (20 mph) or 40 km/h (25 mph) in residential and high pedestrian traffic areas, with enforced traffic rules on speed limits and traffic-calming measures.[13]

Traffic lights for pedestrians are also a factor in increasing safety. Animated pedestrian traffic light showing the pan-European sign.

The design of road and streets plays a key role in pedestrian safety. Roads are too often designed for motorized vehicles, without taking into account pedestrian and bicycle needs. The non-existence of sidewalk and signals increases risk for pedestrians. This defect might more easily be observed on arterial roadways, intersections and fast-speed lanes without adequate attention to pedestrian facilities.[13] For instance, an assessment of roads in countries from many continents shows that 84% of roads are without pedestrian footpaths, while maximum limited speed is greater than 40 km/h.[13]

Among the factors which reduce road safety for pedestrians are wider lanes, roadway widening, and roadways designed for higher speeds and with increased numbers of traffic lanes.[13]

For this reason, some European cities such as Freiburg (Germany) have lowered the speed limit to 30 km/h on 90% of its streets, to reduce risk for its 15 000 people. With such policy, 24% of daily trips are performed by foot, against 28% by bicycles, 20% by public transport and 28% by car. (See Zone 30.)[13]

A similar set of policies to discourage the use of cars and increase safety for pedestrians has been implemented by the Northern European capitals of Oslo and Helsinki. In 2019, this resulted in both cities counting zero pedestrian deaths for the first time.[26]

Seasonality

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In Europe, pedestrian fatalities have a seasonal factor, with 6% of annual fatalities occurring in April but 13% (twice more) in December. The rationale for such a change might be complex.[27]

Health benefits and environment

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Pedestrians walking in winter conditions in Pornainen, Finland.

Regular walking is important both for human health and for the natural environment. Frequent exercise such as walking tends to reduce the chance of obesity and related medical problems. In contrast, using a car for short trips tends to contribute both to obesity and via vehicle emissions to climate change: internal combustion engines are more inefficient and highly polluting during their first minutes of operation (engine cold start). General availability of public transportation encourages walking, as it will not, in most cases, take one directly to one's destination.

Unicode

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In Unicode, the hexadecimal code for "pedestrian" is 1F6B6. In XML and HTML, the string 🚶 produces 🚶.[28]

See also

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References

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  1. ^ "Pedestrians With Disabilities" (PDF). Federal Highway Administration. Retrieved 19 April 2024.
  2. ^ Dunmore, Charles; Fleischer, Rita (2008). Studies in Etymology (Second ed.). Focus. ISBN 9781585100125.
  3. ^ "Definition of PEDESTRIAN". www.merriam-webster.com. Archived from the original on 17 August 2017. Retrieved 27 July 2017.
  4. ^ "Online Etymology Dictionary". www.etymonline.com. Archived from the original on 2 July 2016. Retrieved 27 July 2017.
  5. ^ "PÉDESTRE : Définition de PÉDESTRE". www.cnrtl.fr. Archived from the original on 29 January 2017. Retrieved 7 May 2018.
  6. ^ Dr. Spencer Wells (2005). "Genographic Project". Archived from the original on 25 March 2014. Retrieved 28 March 2014.
  7. ^ Peter D. Norton (2021). "Persistent pedestrianism: urban walking in motor age America, 1920s–1960s". Urban History. 48 (2): 266–289. doi:10.1017/S0963926819000956. S2CID 210507536. Retrieved 20 January 2021.
  8. ^ "Designing Sidewalks and Trails for Access". U.S. Department of Transportation. 7 July 2017. Archived from the original on 29 May 2010. Retrieved 8 May 2018. Trail – A path of travel for recreation and/or transportation within a park, natural environment, or designated corridor that is not classified as a highway, road, or street
  9. ^ "Part II of II: Best Practices Design Guide – Sidewalk2 – Publications – Bicycle and Pedestrian Program – Environment – FHWA". Federal Highway Administration (FHWA). Archived from the original on 29 November 2011. Retrieved 7 May 2018.
  10. ^ "Rules for pedestrians (1 to 35) – The Highway Code – Guidance – GOV.UK". www.gov.uk. Archived from the original on 8 January 2018. Retrieved 7 May 2018.
  11. ^ Goetz, M.; Zipf, A. (2011). "Formal definition of a user-adaptive and length-optimal routing graph for complex indoor environments". Geo-spatial Information Science. 14 (2): 119–128. Bibcode:2011GSIS...14..119G. doi:10.1007/s11806-011-0474-3.
  12. ^ Goetz, M (2012). "Using Crowdsourced Indoor Geodata for the Creation of a Three-Dimensional Indoor Routing Web Application". Future Internet. 4 (2): 575–591. doi:10.3390/fi4020575.
  13. ^ a b c d e f g h i j k l m n o Pedestrian safety. A Road Safety Manual for Decision-Makers and Practitioners (PDF). World Health Organization. 2013. p. 114. ISBN 978-92-4-150535-2. Retrieved 3 April 2018.
  14. ^ "Publications – Bureau of Transportation Statistics". www.bts.gov. Archived from the original on 2 October 2006. Retrieved 7 May 2018.
  15. ^ "Tips for Pedestrian Safety". AAA Exchange. Retrieved 7 May 2018.
  16. ^ "The Road Safety Monitor 2008. Pedestrians and Bicyclists" (PDF). Traffic Injury Research Foundation. p. 37. Retrieved 13 April 2018.
  17. ^ Wu, Yifei; Li, Hansong (April 2022). "Signalling security: An observational and game theory approach to inter-pedestrian psychology". Transportation Research Part F: Traffic Psychology and Behaviour. 86: 238–251. doi:10.1016/j.trf.2022.02.017. S2CID 247483300.
  18. ^ a b c d Aratani, Lauren (12 March 2019). "'Boulevards of death': why pedestrian road fatalities are surging in the US". The Guardian. Guardian News & Media Limited. Retrieved 17 March 2019.
  19. ^ Eric D. Lawrence, Nathan Bomey and Kristi Tanner (1 July 2018). "Death on foot: America's love of SUVs is killing pedestrians". www.freep.com. Detroit Free Press. Archived from the original on 14 December 2019. Retrieved 24 December 2019.
  20. ^ "European Pedestrian Crash Standards Will Make Global Changes in Car Design Inevitable". Safety Research & Strategies, Inc. 1 April 2005. Retrieved 7 May 2018.
  21. ^ "Reported road accidents, vehicles and casualties tables for Great Britain".
  22. ^ "Pedestrians" (PDF). Traffic Safety Basic Facts. European Road Safety Observatory. European Commission. 2018. Retrieved 9 March 2019.
  23. ^ European Commission (2021) Road safety thematic report – Fatigue. European Road Safety Observatory. Brussels, European Commission, Directorate General for Transport
  24. ^ "Pedestrians". Traffic Safety Facts. U.S. Department of Transportation. 2016. Retrieved 9 March 2019. {{cite journal}}: Unknown parameter |agency= ignored (help)
  25. ^ National Center for Statistics and Analysis. (2021, May). Pedestrians: 2019 data (Traffic Safety Facts. Report No. DOT HS 813 079). National Highway Traffic Safety Administration.
  26. ^ Murray, Jessica (16 March 2020). "How Helsinki and Oslo cut pedestrian deaths to zero". The Guardian. London.
  27. ^ "Archived copy" (PDF). Archived from the original (PDF) on 27 July 2020. Retrieved 27 July 2020.{{cite web}}: CS1 maint: archived copy as title (link)
  28. ^ "Transport and Map Symbols" (PDF). Unicode Consortium.
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