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It is assemed that you have some kind of understanding about Civil 3D corridors before you take on this course. Most of the content is this course is based on road design with Civil 3D, but the things you learn can be applied to any other areas that is modelled used AutoCAD Civil 3D.

The course is created using Civil 3D version 2020 and 2023. The exercise files are based on the CAD file version of 2018. Any Civil 3D version newer than Civil 3D 2018 can be used to follow this course with exercise files.

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It is assemed that you have some kind of understanding about Civil 3D corridors before you take on this course. Most of the content is this course is based on road design with Civil 3D, but the things you learn can be applied to any other areas that is modelled used AutoCAD Civil 3D.

The course is created using Civil 3D version 2020 and 2023. The exercise files are based on the CAD file version of 2018. Any Civil 3D version newer than Civil 3D 2018 can be used to follow this course with exercise files.

This course teaches you various tips and tricks for working with Civil 3D corridors.  The course content is as follows.

1. Introduction to Corridor

2. Understanding Assemblies & Subassemblies

3. Understanding Code Set Styles

4. Create First Corridor using aligment-profile & feature lines

5. Add shoulder and Daylight Subassemblies

6. Add Regions & Split Corridor & More works with corridor regions

7. Set Corridor frequency

8. Target Mapping - Width Targets

9. Corridor Section Editor

10. Target mapping-Slope or Elevation Targets

11. Conditional Cut-Fill Assemblies

12. Conditional Horizontal Target Subassembly

13. Match Parameters for Corridor

14. Create Corridor Surfaces

15. Extract Feature Lines from Corridor

16. Add material area fill styles

17. Add slope patterns

18. Extract Corridor Solids

19. Create Alignment, Profile from Corridor

20. Create Points from Corridor

21. Create Sample lines from Corridor

22. Corridor Reports

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What's inside

Syllabus

In this section you will find the exercise files that needs to used during the course.

Here you will find the exercise files that need to use during the course.

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Understanding the Corridors, Assemblies and Code set styles
1. Introduction to Corridors
2. Understanding Assemblies and Subassemblies
3. Understanding Code Set Styles
Creating Corridors
4. Create First Corridor
5. Add shoulder and Daylight Subassemblies
5-2. Create Corridor from feature lines
Work with Corridor regions and sections
6. Add Regions & Split Corridor
6-1 More works with Corridor Regions
7. Set Corridor frequency
8. Target Mapping - Width Targets
9. Corridor Section Editor
10. Target mapping-Slope or Elevation Targets
11. Conditional Cut-Fill Assembly
12. Conditional Horizontal Target Subassembly
13. Match Parameters for Corridor
14. Create Corridor Surfaces
Extract data from Corridors
15. Extract Feature Lines from Corridor
16. Add material area fill styles
17. Add Slope Patterns
18. Extract Corridor Solids
19. Create Alignment and Profile from the corridor
20. Create Points from Corridor
21. Create Sample lines from Corridor
22. Create Corridor Reports
23. Target Mapping for Civil 2022 or new versions
Conclusion

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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 Work With Civil 3D Corridors with these activities:
Review Civil 3D Fundamentals
Refresh your understanding of Civil 3D fundamentals to ensure a solid foundation for working with corridors.
Show steps
  • Review basic Civil 3D interface and tools.
  • Practice creating alignments, profiles, and surfaces.
  • Familiarize yourself with Civil 3D terminology.
Study Highway Engineering Principles
Gain a deeper understanding of the engineering principles behind corridor design by studying a highway engineering textbook.
Show steps
  • Read the chapters related to geometric design and traffic analysis.
  • Focus on the principles that influence corridor alignment and cross-section design.
  • Relate the concepts to the Civil 3D tools and techniques covered in the course.
Review Civil 3D Tutorials
Deepen your understanding of Civil 3D concepts and workflows by studying a comprehensive guide.
Show steps
  • Read the chapters related to corridor design and editing.
  • Work through the examples and exercises provided in the book.
  • Take notes on key concepts and techniques.
Four other activities
Expand to see all activities and additional details
Show all seven activities
Corridor Modeling Exercises
Reinforce your corridor modeling skills by completing a series of practical exercises.
Show steps
  • Create corridors using different methods (alignment/profile, feature lines).
  • Modify corridor regions and frequencies.
  • Apply target mapping for width, slope, and elevation.
  • Extract feature lines and create surfaces from corridors.
Create a Corridor Design Presentation
Enhance your communication skills by creating a presentation showcasing your corridor design expertise.
Show steps
  • Select a corridor design project (either real or hypothetical).
  • Prepare a presentation outlining the design objectives, challenges, and solutions.
  • Include visualizations, such as corridor models, cross-sections, and surfaces.
  • Practice delivering the presentation to a small audience.
Document a Corridor Design Workflow
Solidify your understanding by documenting a complete corridor design workflow, from initial setup to final deliverables.
Show steps
  • Choose a specific corridor design scenario (e.g., road widening, intersection improvement).
  • Document each step of the design process, including Civil 3D commands and settings.
  • Create screenshots and diagrams to illustrate the workflow.
  • Write a clear and concise explanation of each step.
Design a Complex Intersection
Apply your corridor design skills to a challenging real-world project by designing a complex intersection.
Show steps
  • Obtain survey data or create a hypothetical site plan.
  • Design the intersection geometry, including alignments, profiles, and superelevation.
  • Create corridors to model the roadways and intersection features.
  • Generate surfaces, feature lines, and reports to evaluate the design.

Career center

Learners who complete Work With Civil 3D Corridors will develop knowledge and skills that may be useful to these careers:
Roadway Design Engineer
Roadway Design Engineers specialize in the design and construction of roadways, focusing on geometric design, pavement design, and traffic flow. Given that Roadway Design Engineering is centered around road infrastructure, expertise in Civil 3D corridor modeling is crucial. This course is directly applicable to this role, providing in-depth training on creating and manipulating Civil 3D corridors. Knowledge of assemblies, subassemblies, target mapping, and corridor section editing specifically enables a Roadway Design Engineer to design efficient and safe roadways.
Civil Designer
Civil Designers are responsible for creating detailed designs and plans for civil engineering projects, often working under the supervision of a civil engineer. The Civil Designer uses specialized software, such as Civil 3D, to produce these designs. This course, focused on Civil 3D corridors, provides the practical training needed to create and manipulate road designs within Civil 3D. Learning how to create corridor surfaces, extract feature lines, and generate reports directly translates to the daily tasks of a Civil Designer.
Site Civil Engineer
Site Civil Engineers focus on land development projects, including designing roads, grading, and drainage systems. This requires expertise in Civil 3D to create and manage site models. This course, with its focus on Civil 3D corridors, provides essential skills for designing roads within a site plan. The course's modules on corridor surfaces, feature line extraction, and material area fill styles help a Site Civil Engineer create comprehensive and accurate site designs.
Highway Engineer
Highway Engineers specialize in the design, construction, and maintenance of highways and roads. This career path requires a deep understanding of road design principles and software tools. This course, centered around Civil 3D corridors, is directly applicable to the creation of detailed road models. The course's modules on assemblies, subassemblies, and corridor section editing specifically help a Highway Engineer manage complex road designs and ensure their constructability.
Infrastructure Design Engineer
Infrastructure Design Engineers focus on the design and development of various infrastructure projects, including roads, highways, and transportation systems. Proficiency with Civil 3D is essential for visualizing and implementing these designs. This course, centered on Civil 3D corridors, offers critical skills in creating detailed road models, managing assemblies and subassemblies, and extracting design data. This helps an Infrastructure Design Engineer create efficient and constructible road designs.
CAD Technician
CAD Technicians create technical drawings and plans using computer-aided design software. This encompasses many areas of engineering. Given the course's emphasis on Civil 3D and corridor modeling, this course is directly relevant to someone seeking a CAD Technician role in civil engineering. The training on assemblies, subassemblies, and corridor editing helps a CAD Technician develop the skills to produce accurate and detailed road design drawings and models in Civil 3D.
Civil Engineering Technician
A Civil Engineering Technician supports civil engineers in the planning, design, and construction of infrastructure projects. This often includes roads. In this role, one may need to draft and design layouts using computer-aided design software. This course, with its focus on Civil 3D corridors, directly helps you design and manipulate road models. The comprehensive coverage of assemblies, subassemblies, and target mapping helps build proficiency in creating accurate and efficient designs as a Civil Engineering Technician.
Transportation Engineering Technician
Transportation Engineering Technicians assist engineers in planning, designing, and maintaining transportation systems. This often includes using CAD software to draft plans and analyze data. This course, with its hands-on approach to Civil 3D corridors, offers practical skills in creating and modifying road designs. The course's modules on corridor frequency, target mapping, and feature line extraction help a Transportation Engineering Technician develop the technical skills to support transportation engineering projects effectively.
Civil Engineering Specialist
Civil Engineering Specialists work on specific aspects of civil engineering projects, such as road design, structural analysis, or environmental impact assessment. Given this role involves specialized knowledge in a particular area of civil engineering, this course, focused on Civil 3D corridors, provides targeted training in road design and modeling. The skills acquired in creating assemblies, manipulating corridor regions, and extracting data help a Civil Engineering Specialist excel in road design and construction projects.
Municipal Engineer
Municipal Engineers plan, design, and oversee the construction and maintenance of infrastructure within a city or town. Given this work involves road design and management, skills in Civil 3D corridor modeling are highly relevant. This course provides training in creating and manipulating road corridors, adding regions, setting frequencies, and target mapping, all essential skills for a Municipal Engineer. The knowledge gained directly applies to designing and managing municipal road networks efficiently.
Transportation Planner
Transportation Planners develop plans and policies for transportation systems to improve the movement of people and goods. As a Transportation Planner, understanding the technical aspects of road design is crucial for making informed decisions. This course, which teaches how to create and manipulate Civil 3D corridors, provides a solid foundation for evaluating the feasibility and impact of different road designs. Skills in corridor surface creation and data extraction can be directly applied to analyze and optimize transportation networks as a Transportation Planner.
Land Surveyor
Land Surveyors establish official land, air space, and water boundaries. While not directly focused on building design, they collaborate with civil engineers on infrastructure projects. This course on Civil 3D corridors may be useful because it provides insights into how road designs are implemented and how survey data integrates into the design process. The course's coverage of corridor surfaces and feature line extraction helps a Land Surveyor understand how their survey data is used within Civil 3D models, facilitating better collaboration and accuracy on projects.
Drainage Engineer
Drainage Engineers design and manage systems for controlling water flow and preventing flooding, often working closely with road design projects to ensure proper drainage. A Drainage Engineer benefits from understanding how road designs impact drainage patterns and how to integrate drainage systems effectively. This course on Civil 3D corridors, particularly its modules on corridor surfaces and slope patterns, may prove useful. It offers insights into how road geometry affects water runoff and how to design drainage solutions that align with road construction.
Geotechnical Engineer
Geotechnical Engineers investigate subsurface conditions and materials to assess the suitability for construction projects. This engineering role requires an understanding of how road designs interact with the surrounding soil and geology. This course, which covers Civil 3D corridor modeling, particularly the creation of corridor surfaces and the use of conditional cut-fill assemblies, may be useful. It provides a Geotechnical Engineer with insights into how road designs are optimized for different terrain conditions.
Construction Project Manager
Construction Project Managers oversee the planning, coordination, and execution of construction projects. While a Construction Project Manager may not directly design roads, understanding the design process is beneficial for effective project management. This course, teaching Civil 3D corridor creation, may be useful as it provides insight into the complexities of road design and how design decisions impact construction. The course can help Project Managers better understand design constraints, anticipate potential issues, and communicate effectively with design teams.

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 Work With Civil 3D Corridors.
Provides a comprehensive guide to Civil 3D, covering a wide range of topics including corridors. It serves as an excellent reference for understanding the underlying principles and advanced techniques. It is commonly used as a textbook in Civil Engineering courses and by industry professionals. This book adds more depth to the course by providing detailed explanations and real-world examples.
Provides a solid foundation in highway engineering principles, which are essential for effective corridor design. It covers topics such as geometric design, traffic analysis, and pavement design. While not directly focused on Civil 3D, it provides the theoretical background necessary to make informed design decisions. This book is valuable as additional reading to supplement the course material.

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