Transportation Engineering | Study Unit
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Transportation Engineering

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Topics 10

Introduction to Transportation Engineering
An overview of the field of transportation engineering, including its history, importance,...
Transportation Planning
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Traffic Engineering
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Public Transportation Systems
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Highway Engineering
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Transportation Safety
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Intelligent Transportation Systems (ITS)
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Sustainable Transportation
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Transportation Economics
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Urban Transportation Planning
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Unit Outline 45h

Learning Objectives

5 objectives
  • Understand the fundamental principles and history of transportation engineering.
  • Analyze and design transportation systems including traffic, highways, and public transit.
  • Evaluate safety, sustainability, and economic aspects of transportation infrastructure.
  • Apply intelligent transportation system technologies to improve mobility and safety.
  • Develop strategies for urban transportation planning and sustainable transportation solutions.

Content Outline

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Unit 1941: Comprehensive Transportation Engineering

1. Introduction to Transportation Engineering

  • Overview of the discipline
  • Historical development and milestones
  • Importance and impact on society and economy
  • Key concepts and terminology

2. Transportation Planning

  • Definition and objectives
  • Data collection and analysis techniques
  • Travel demand forecasting models
  • Infrastructure needs assessment
  • Development of transportation improvement plans

3. Traffic Engineering

  • Fundamentals of traffic flow theory
  • Capacity analysis and level of service (LOS)
  • Traffic control devices: signals, signs, and markings
  • Intersection design and traffic management
  • Roadway design considerations for safety and efficiency

4. Public Transportation Systems

  • Modes of public transport: buses, trains, subways, trams
  • Design considerations for vehicles and infrastructure
  • Operational challenges: scheduling, routing, and capacity
  • Accessibility and equity considerations
  • Sustainability and environmental impacts

5. Highway Engineering

  • Geometric design principles of highways and roads
  • Pavement materials: types, properties, and selection
  • Construction methods and quality control
  • Maintenance and rehabilitation strategies
  • Highway safety features and signage

6. Transportation Safety

  • Crash data collection and analysis methods
  • Safety regulations and standards
  • Infrastructure design to mitigate accidents
  • Traffic calming and speed management
  • Emergency response and incident management

7. Intelligent Transportation Systems (ITS)

  • Overview of ITS technologies
  • Traffic signal control systems and adaptive signals
  • Electronic toll collection and automated payment systems
  • Real-time traffic information and traveler information systems
  • Vehicle-to-infrastructure (V2I) and vehicle-to-vehicle (V2V) communication

8. Sustainable Transportation

  • Principles of sustainability in transportation
  • Promotion of public transit and non-motorized transport (cycling, walking)
  • Electric and alternative fuel vehicles
  • Infrastructure to support sustainable modes
  • Policies and incentives for reducing environmental impacts

9. Transportation Economics

  • Economic principles relevant to transportation
  • Cost-benefit and cost-effectiveness analysis
  • Funding sources: public, private, and public-private partnerships
  • Lifecycle cost analysis of transportation projects
  • Pricing strategies and demand management

10. Urban Transportation Planning

  • Challenges in urban mobility and congestion
  • Land use and transportation integration
  • Transit-oriented development (TOD)
  • Congestion management techniques
  • Strategies to promote sustainable urban mobility

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