
AutoCAD Civil 3D Course
Master AutoCAD Civil 3D and gain the technical skills to design roads, drainage systems, and graded sites like a professional. This course takes you from interface basics to full corridor models, pipe networks, and construction-ready plan sets. If you work in civil engineering or land development, this is the tool that gets projects built.
What you will learn:
You will learn to import and manage survey data, build accurate terrain surfaces, and design horizontal and vertical alignments that meet engineering standards. The course covers corridor modelling, grading, and pipe network design from layout through annotation. You will produce earthwork volume reports, cross-section views, and complete drainage schedules. Plan production tools will let you generate full sheet sets ready for agency submittal. You will also work with LiDAR data, BIM collaboration workflows, and custom subassembly creation to handle real-world project demands.
How you study practically AutoCAD Civil 3D Course
How you practise AutoCAD Civil 3D Course
For companies looking to train their teams
With Dedika for businesses, the course includes exercises and examples tailored to your own business and the way your company needs.
Course content
8 Chapters • 35 LessonsDuration between 4 and 360 hours (you decide)
Chapter 1HideHide detailsSee detailsIntroduction to Civil 3D Interface
Introduction to Civil 3D Interface
Lesson 1 • Layers and Drawing Standards
Establishes layer naming conventions and CAD standards compliance. Structured layers support team collaboration and deliverable consistency.
Lesson 2 • Civil 3D Workspace Overview
Covers the ribbon, toolspace panels, and drawing area layout. Establishes spatial awareness of the interface as the basis for all subsequent workflows.
Lesson 3 • Project Setup and File Management
Configures drawing templates, units, and coordinate systems. Proper setup prevents errors in all downstream design tasks.
Lesson 4 • Object Styles and Settings
Defines how Civil 3D objects display through styles and label sets. Consistent styling is essential for professional plan production.
Chapter 2HideHide detailsSee detailsSurvey Data and Point Management
Survey Data and Point Management
Lesson 1 • Importing Survey Data
Brings external survey files into Civil 3D using standard import formats. Accurate import is the foundation of reliable design geometry.
Lesson 2 • Point Editing and Quality Control
Reviews and corrects point data for elevation errors and duplicates. Clean data ensures surface accuracy and reduces design rework.
Lesson 3 • Survey Database and Figure Linework
Uses the survey database to manage field observations and figure linework. Structured survey data supports automated surface breakline creation.
Lesson 4 • Point Groups and Point Databases
Organises raw survey points into logical groups for display and analysis. Point groups drive surface creation and quantity reporting.
Chapter 3HideHide detailsSee detailsSurface Creation and Analysis
Surface Creation and Analysis
Lesson 1 • Creating TIN Surfaces
Generates triangulated irregular network surfaces from points and breaklines. TIN surfaces are the primary terrain model used throughout Civil 3D design.
Lesson 2 • Surface Analysis Tools
Applies slope, elevation, and watershed analyses to evaluate terrain conditions. Analysis results inform grading decisions and drainage design.
Lesson 3 • Contour Display and Labeling
Controls contour interval, style, and label placement for plan sheets. Properly styled contours communicate terrain clearly to reviewers and contractors.
Lesson 4 • Volume Calculations Between Surfaces
Computes cut and fill volumes by comparing existing and proposed surfaces. Accurate volumes support earthwork cost estimation and bid preparation.
Lesson 5 • Surface Editing Techniques
Refines surface triangulation by swapping edges, adding lines, and deleting points. Editing corrects artefacts that distort volume and drainage calculations.
Chapter 4HideHide detailsSee detailsAlignment Design and Geometry
Alignment Design and Geometry
Lesson 1 • Alignment Labels and Tables
Annotates alignments with station labels, curve data, and line tables. Complete annotation satisfies plan review requirements and contractor needs.
Lesson 2 • Horizontal Curve Design
Applies circular curves and spiral transitions to meet design speed criteria. Curve geometry directly controls sight distance and vehicle tracking.
Lesson 3 • Alignment Editing and Constraints
Modifies alignment geometry using grip editing and the geometry editor. Constraint-based editing preserves tangency and curve relationships.
Lesson 4 • Alignment Creation Methods
Draws alignments from polylines, layout tools, and best-fit routines. Choosing the correct method ensures geometric accuracy from the start.
Chapter 5HideHide detailsSee detailsProfile Design and Vertical Geometry
Profile Design and Vertical Geometry
Lesson 1 • Sampling and Displaying Profiles
Extracts surface elevations along an alignment to create existing ground profiles. The sampled profile is the baseline for all vertical design decisions.
Lesson 2 • Crest and Sag Curve Design
Applies K-value and sight distance criteria to crest and sag vertical curves. Proper curve design ensures stopping sight distance compliance.
Lesson 3 • Vertical Alignment Layout
Draws proposed vertical alignments using tangents and parabolic curves. Vertical geometry controls earthwork balance and drainage grade.
Lesson 4 • Profile Labels and Annotation
Annotates profiles with grade labels, curve data, and elevation callouts. Clear profile annotation is required for construction plan submittals.
Chapter 6HideHide detailsSee detailsCorridor Modelling and Assembly Design
Corridor Modelling and Assembly Design
Lesson 1 • Section Views and Material Quantities
Generates cross-section views and computes material volumes from corridor data. Section-based quantities are the standard method for earthwork reporting.
Lesson 2 • Corridor Creation and Parameters
Combines alignment, profile, and assembly into a corridor object. Corridor parameters control station range, frequency, and target assignments.
Lesson 3 • Corridor Editing and Troubleshooting
Resolves corridor errors using overrides, targets, and region adjustments. Efficient troubleshooting reduces design iteration time on complex projects.
Lesson 4 • Corridor Surface Extraction
Extracts top and datum surfaces from the corridor for volume and grading use. Corridor surfaces feed directly into earthwork and drainage calculations.
Lesson 5 • Assembly and Subassembly Basics
Constructs road cross-section assemblies from subassembly components. Assemblies define the geometric rules applied at every corridor station.
Chapter 7HideHide detailsSee detailsGrading and Site Design
Grading and Site Design
Lesson 1 • Feature Lines and Grading Tools
Creates feature lines as 3D breaklines that define site geometry edges. Feature lines are the primary input for grading object creation.
Lesson 2 • Pad and Parking Lot Grading
Designs graded building pads and parking areas with drainage slopes. Proper pad grading prevents ponding and satisfies accessibility requirements.
Lesson 3 • Grading Object Creation
Projects grading from feature lines to a surface or daylight target. Grading objects automate slope projection and update dynamically with edits.
Lesson 4 • Grading Surface and Volume Analysis
Builds a composite grading surface and computes cut-fill volumes. Volume analysis confirms earthwork balance before construction documents are issued.
Chapter 8HideHide detailsSee detailsPipe Networks and Drainage Design
Pipe Networks and Drainage Design
Lesson 1 • Pressure Network Design
Lays out pressurised water and force main networks with fittings and appurtenances. Pressure networks require different part rules than gravity systems.
Lesson 2 • Pipe Network Creation
Builds pipe networks by placing pipes and structures in plan and profile views. Network creation establishes the connectivity required for hydraulic analysis.
Lesson 3 • Pipe Network Labels and Schedules
Annotates pipes and structures with size, slope, and invert labels. Structure schedules provide contractors with fabrication and installation data.
Lesson 4 • Pipe and Structure Editing
Modifies pipe inverts, slopes, and structure rim elevations after initial layout. Precise editing ensures gravity flow and minimum cover compliance.
Lesson 5 • Hydrology and Hydraulic Analysis Integration
Connects Civil 3D pipe networks to hydrology tools for flow and capacity checks. Analysis results validate pipe sizing before plan submittal.
Your valid completion certificate
This course is for you:
Civil engineering technician: ready to move beyond basic drafting into 3D design.
Junior civil engineer: needs hands-on tool proficiency to support project delivery.
Land development drafter: wants to handle full site design workflows independently.
Survey technician: looking to extend skills from data collection into design modelling.
Career changer from architecture or construction: bringing spatial skills into civil design.
GIS analyst: seeking to add infrastructure design capability to geospatial expertise.
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