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Chartered Engineers

The BIM applications course has been completed in the design of roads and trafficThe course is not only an application of the BIM technology in the design, but it is considered that the course will deal with all the design elements of the roads in accordance with the methodology of the global design code and the transition from the elementary level of the student to the advanced level of the professional engineer is taken into account as follows:

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The BIM applications course has been completed in the design of roads and trafficThe course is not only an application of the BIM technology in the design, but it is considered that the course will deal with all the design elements of the roads in accordance with the methodology of the global design code and the transition from the elementary level of the student to the advanced level of the professional engineer is taken into account as follows:

1 - study the interface of the program infraworks2. How modal works to simulate reality with the model builder3 - How to design the initial design and put more than one design proposal4 - Adding roads, people and buildings to the project5- Designing parking spaces and public location6- Adding and preparing new elements for the project7. Surface analysis and cantor study8 - standards of road design according to code AASHTO9 - Design of the horizontal route of the road10- Designing the vertical path of the road11 - Design of stations and bus stops on the side of the road12- Studying the elements of road protection.13- Design criteria for surface intersections according to AASHTO14- Modeling and design of intersections15- Modeling and design roundabout rotors13- Design criteria for surface intersections and interchanges according to AASHTO14 - Modeling and design of surface intersections interchanges15 - Study and modeling traffic16 - Calculation of quantities for cutting and filling and all elements of roads.

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What's inside

Syllabus

COURSE STRUCTURE
COURSE OVERVIEW
BONUS SECTION: Introduction to BIM from BIM ESSENTIAL COURSE
BIM COURSE CONTENT
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Unit 1- Infraworks interface
1.1- Infraworks interface
1.2- Model builder
Unit 2- Model explorer and manage
2.1- Model explorer and manage
Unit 3- Create concept and design proposals
3.1- Create your proposal ( adding parking, cars and persons)
3.2- Complete your proposal ( adding roads, buildings, trees)
Unit 4- Creating and modifying styles
4.1- Create custom component
4.2- Analyze surface and styles
Unit 5- Detailed Design of Roads and Highways
5.1- Roads design criteria as AASHTO
5.2- Horizontal geomotry design
5.3- Vertical geometry design
5.4- Add and Design road components
5.5- Sight distance analysis and obstructions
Unit 6- Advanced modeling and designs of intersections
6.1- Intersections design guidelines by AASHTO
6.2- Design of 3-leg intersection
6.3- Design of 4-leg intersection - Roundabout
Unit 7- Advanced modeling and designs of interchanges
7.1- Interchanges design criteria as AASHTO 2011
7.2- Design and modeling of Main road , Cross road and Bridge
7.3- Design and modeling of Ramps, loops and accelerations lanes with tapers
Unit 8- Traffic management and design
8.1- Traffic analysis terms
8.2- Traffic analysis and simulation
Bonus Section Resources

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All the Best in your learning Journey

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Activities

Be better prepared before your course. Deepen your understanding during and after it. Supplement your coursework and achieve mastery of the topics covered in BIM applications for Roads, Highways & Transportation design with these activities:
Review AASHTO Guidelines
Refresh your understanding of AASHTO guidelines to better grasp the design principles taught in the course.
Show steps
  • Download the relevant AASHTO specifications.
  • Review key sections on horizontal and vertical alignment.
  • Summarize the key design criteria.
Read 'Highway Engineering' by S.K. Khanna and C.E.G Justo
Expand your knowledge of highway engineering principles.
View Melania on Amazon
Show steps
  • Obtain a copy of the book.
  • Read chapters related to road design and traffic management.
  • Summarize key concepts and formulas.
Read 'Geometric Design of Highways' by Paul H. Wright
Gain a deeper understanding of geometric design principles for highways.
Show steps
  • Obtain a copy of the book.
  • Read chapters related to horizontal and vertical alignment.
  • Take notes on key concepts and formulas.
Four other activities
Expand to see all activities and additional details
Show all seven activities
InfraWorks Modeling Exercises
Reinforce your InfraWorks skills through repetitive modeling exercises.
Show steps
  • Find or create sample road design scenarios.
  • Model each scenario in InfraWorks.
  • Repeat the exercises with increasing complexity.
Design a Simple Road Intersection
Apply the BIM concepts learned in the course by designing a road intersection using InfraWorks.
Show steps
  • Gather requirements for the intersection design.
  • Create a new model in InfraWorks.
  • Design the intersection layout.
  • Model the intersection in 3D.
Create a Presentation on BIM for Road Design
Solidify your understanding of BIM applications in road design by creating a presentation.
Show steps
  • Research BIM applications in road design.
  • Outline the presentation structure.
  • Create slides with visuals and key points.
  • Practice the presentation delivery.
Write a Blog Post on BIM Benefits for Transportation
Articulate the advantages of using BIM in transportation projects to solidify your understanding.
Show steps
  • Research the benefits of BIM in transportation.
  • Outline the blog post structure.
  • Write the blog post with clear examples.
  • Publish the blog post online.

Career center

Learners who complete BIM applications for Roads, Highways & Transportation design will develop knowledge and skills that may be useful to these careers:
Road Design Engineer
As a Road Design Engineer, your main duty is the planning and design of roadways, considering safety, efficiency, and cost-effectiveness. A course on BIM applications for roads and highways equips you with crucial skills. The course's focus on AASHTO road design standards, horizontal and vertical geometry design, and intersection modeling directly supports the responsibilities of a Road Design Engineer. This course's coverage of surface analysis and quantity calculations for cutting and filling provides practical design skills.
Highway Engineer
The Highway Engineer is responsible for the design, construction, and maintenance of highways and road systems. The BIM applications for roads, highways, and transportation design course is valuable for aspiring highway engineers. The course's emphasis on road design according to AASHTO standards, horizontal and vertical geometry design, and modeling of intersections and interchanges directly supports the responsibilities of a Highway Engineer. The course may also be useful in understanding the design of road components and sight distance analysis.
Infrastructure Modeler
Infrastructure Modelers create digital representations of physical infrastructure assets, using BIM software. The BIM applications for roads, highways, and transportation design course provides specific skills for this role. The course's emphasis on modeling roads, intersections, and interchanges provides a solid foundation for an Infrastructure Modeler. The course may be helpful in understanding how to simulate reality with the Model Builder and manage complex designs.
Transportation Planner
A Transportation Planner develops plans and policies for transportation systems. This role requires a deep understanding of road design, traffic analysis, and infrastructure modeling. A course on BIM applications for roads, highways, and transportation design helps build a foundation in these areas. The course's focus on road design criteria according to AASHTO, horizontal and vertical geometry design, and intersection modeling directly applies to the work of a Transportation Planner. Studying traffic analysis and simulation, as covered in the course, provides valuable insights for optimizing transportation networks.
BIM Modeler
BIM Modelers create and manage building information models for various construction projects. A course on BIM applications for roads, highways, and transportation design offers training in this area. The course's emphasis on using InfraWorks to model roads, intersections, and other transportation infrastructure components directly translates in performing the duties of a BIM Modeler. The course may also be helpful in customizing the design models or managing the project.
Traffic Engineer
Traffic Engineers focus on optimizing traffic flow, improving road safety, and designing efficient transportation systems. A course on BIM applications for roads, highways, and transportation design aids Traffic Engineers in performing simulations. The course's module on traffic analysis and simulation will be directly applicable to the work of a traffic engineer. The skills learned in this course may be useful in designing intersections, roundabouts, and traffic management systems.
CAD Technician
CAD Technicians use computer-aided design software to create technical drawings and plans. A course on BIM applications for roads, highways, and transportation design helps CAD Technicians expand their skill set into BIM. The course focuses on using InfraWorks, which is directly relevant to creating detailed road designs and infrastructure models. The course's coverage of road design elements, such as horizontal and vertical alignments, can be useful for creating precise technical drawings.
Civil Engineer
Civil Engineers design, construct, and maintain infrastructure projects, including roads and transportation systems. A course on BIM applications for roads, highways, and transportation design may be useful for Civil Engineers working on transportation-related projects. The course's coverage of road design criteria, horizontal and vertical geometry, and intersection modeling provides practical skills. The course's treatment of quantity calculations will be useful for project management and cost estimation.
Transportation Engineering Technician
Transportation Engineering Technicians assist engineers in the design, planning, and construction of transportation projects. The BIM applications for roads, highways, and transportation design course may be helpful for gaining practical skills in this field. The course's focus on using BIM software for road design and modeling intersections is applicable in this role. The course's coverage of quantity calculations for cutting and filling can support project management tasks.
Construction Project Manager
Construction Project Managers oversee the planning, execution, and completion of construction projects. A course on BIM applications for roads, highways, and transportation design helps Construction Project Managers understand the design aspects of road projects. The course's emphasis on modeling and design of intersections, interchanges, and other road elements helps with visualizing and coordinating project activities. The course's treatment of quantity calculations may be useful for cost estimation and resource allocation.
Bridge Engineer
Bridge Engineers specialize in the design, construction, and maintenance of bridges. This job typically requires an advanced degree. A course on BIM applications for roads, highways, and transportation design provides relevant skills despite not focusing on bridges. The course's intersection and interchange modeling module, including the design and modeling of ramps, loops, and acceleration lanes, extends to bridge approaches and related infrastructure. Exposure to infrastructure modeling practices may be beneficial for bridge engineers using similar techniques.
Geospatial Analyst
Geospatial Analysts use geographic information systems to analyze spatial data and create maps and visualizations. The BIM applications for roads, highways, and transportation design course may be useful for gaining insight into how BIM software integrates with geospatial data. The course's coverage of surface analysis, contour studies, and modeling infrastructure features in a digital environment provides context for geospatial data applications in transportation projects. A Geospatial Analyst will be interested in a visually rich design environment.
Urban Planner
Urban Planners develop plans and programs for land use, transportation, and community development. An Urban Planner may find a course on BIM applications for roads, highways, and transportation design useful for understanding transportation infrastructure design. The course's design content on road networks, intersection design, and traffic management offers practical skills for urban planning projects. The ability to visualize and design transportation elements may inform broader urban development strategies.
Surveyor
Surveyors measure and map land surfaces to provide data for construction and engineering projects. Although surveyors mainly work with physical measurements, a course on BIM applications for roads, highways, and transportation design may broaden their understanding of how survey data is used in BIM models. The course's coverage of surface analysis and contour studies provides context for how survey data is integrated into road design. This provides important insight for a successful project.
Geotechnical Engineer
Geotechnical Engineers investigate soil and rock conditions to assess the safety and stability of structures. The Geotechnical Engineer may find value in a course on BIM applications for roads, highways, and transportation design. Although Geotechnical Engineers focus on subsurface conditions, the modeling and design aspects of roads and highways may be helpful for understanding how their data integrates into the overall project. This provides important insight for a successful project.

Reading list

We've selected two books that we think will supplement your learning. Use these to develop background knowledge, enrich your coursework, and gain a deeper understanding of the topics covered in BIM applications for Roads, Highways & Transportation design.
Provides a comprehensive overview of highway geometric design principles, covering topics such as horizontal and vertical alignment, sight distance, and intersection design. It serves as an excellent reference for understanding the theoretical basis behind the AASHTO guidelines. Reading this book will provide a deeper understanding of the concepts covered in the course. It is commonly used as a textbook in civil engineering programs.

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