
In this course, you will learn a basic and straight forward workflow to model driveways in Civil 3D along a corridor with curb and gutter. Modeling and showing driveway detail in Civil 3D corridors can be an arduous task, and oftentimes amount to more effort than what it is worth. The workflow presented in this course will leverage a custom driveway assembly that is versatile and includes many targets to override default subassembly dimensions. You will learn how to create and grade the driveway geometry using Civil 3D grading tools, which are helpful for initial grading and for refinements. Although this workflow focuses on driveway modeling, you can also apply this same workflow to curb ramps at pedestrian crossings.
In this course, you will learn a simple and straight forward approach to grading drainage ponds. Civil 3D includes a number of grading tools that you can leverage to model ponds for your infrastructure projects. Depending upon the requirements for your pond design, there are different approaches you can take. In this course you’ll learn how to use a single pond feature line and custom berm assembly to create a pond surface. Use this workflow as a template, or framework, to create dynamic pond models that you can easily adjust to meet your design requirements.
In this course, you will learn how to use the Intersection Wizard in Civil 3D to grade out a T-Intersection. Intersection objects are created at the intersection of two design alignments. Additional target alignments are created for the lane offset and curb return alignments, along with lane slope and curb return profiles to set grades through the intersection. To create the intersection model, multiple Assemblies are used to build out a complex corridor object that includes multiple baselines and regions. To get the final grade surfaces for the intersection, Corridor Surfaces are created.
n this course you will learn how to grade a 4-Way Intersection in Civil 3D, using the Intersection Wizard. The Intersection Wizard provides an intuitive and comprehensive approach to grading intersections. You will first need to understand the prerequisites that are required to use the Intersection Wizard, then determine which Intersection Assemblies are needed to grade your intersection. Once you have those details squared away you can step through the procedural dialog box to create the intersection object, create target alignments and profiles, and build the corridor model. After the initial design has been completed, you can leverage the contextual tools to update the Intersection model, as necessary. When you are finished with the design, you can create the corridor surfaces and consolidate your Corridor models.
In this course, you will learn how to design and grade a Roundabout intersection in Civil 3D. Autodesk's Vehicle Tracking tools and libraries are available in Civil 3D to design Roundabouts on your design projects. This course will discuss the prerequisites for Roundabout Design, get into designing a Roundabout using a Design Standard, using the Roundabout Properties to edit a Roundabout Design, and creating a Roundabout Corridor and Surface. The videos presented in this course follow the general workflow for Roundabout Design in Civil 3D.
In this course, you will learn how to design and grade a Culdesac in Civil 3D. There are different types of Culdesacs and approaches that you can use to design and grade a Culdesac. This course covers how to design and grade a bulb Culdesac using a single Corridor, with two Baselines. The corridor is based on the Main Road baseline, and the second baseline will be made up of the Culdesac design alignment, design profile, and assembly. When combined into a single Corridor, you'll end up with an accurate and detailed Corridor surface. If your design changes, you'll learn how to apply these updates to your Culdesac design.
In this course, you will learn how to leverage a setup surface to grade parking features. Setup surfaces are auxiliary surfaces used to aid in the grading of proposed design features. They can be used in a variety of grading applications, including to elevate feature lines and perform interactive edits. This course will use a setup surface to establish a grading plane for a parking design. The setup surface will be created from a single feature and gradings, then be used to elevate the proposed design features. This is just one basic example of how a setup surface can be leveraged in your Civil 3D projects.
This Learning Path contains courses that will teach you design and grade intersections using Autodesk Civil 3D. Intersection grading creates complex Corridor objects that include multiple Baselines, Regions, and Assemblies. Civil 3D automates this process, however, basic knowledge about alignments, profiles, and corridor targets is the foundation for Intersection Design. The topics covered in this Learning Path address the most common intersection grading design, and also includes a course on Culdesacs.
n this course, you will learn how to use the Intersection Wizard in Civil 3D to grade out a T-Intersection. Intersection objects are created at the intersection of two design alignments. Additional target alignments are created for the lane offset and curb return alignments, along with lane slope and curb return profiles to set grades through the intersection. To create the intersection model, multiple Assemblies are used to build out a complex corridor object that includes multiple baselines and regions. To get the final grade surfaces for the intersection, Corridor Surfaces are created
In this course you will learn how to grade a 4-Way Intersection in Civil 3D, using the Intersection Wizard. The Intersection Wizard provides an intuitive and comprehensive approach to grading intersections. You will first need to understand the prerequisites that are required to use the Intersection Wizard, then determine which Intersection Assemblies are needed to grade your intersection. Once you have those details squared away you can step through the procedural dialog box to create the intersection object, create target alignments and profiles, and build the corridor model. After the initial design has been completed, you can leverage the contextual tools to update the Intersection model, as necessary. When you are finished with the design, you can create the corridor surfaces and consolidate your Corridor models.