Road Design with Civil 3D and Global Mapper - Information, Fee, Syllabus.

Value Addition Course Offline

Duration: 6 days


Road Design with Civil 3D and Global Mapper Information

Course Title: Road Design with Civil 3D and Global Mapper
Duration: 6 days
Training Modes: Offline | Full Time
Timing: 8 hours/day

Road Design with Civil 3D and Global Mapper Eligibility

  • Civil Engineers with knowledge road design fundamentals
  • Knowledge of surveying instruments like Total Station, engineering drawing fundamentals will benefit
  • Must have basic AutoCAD skills

Road Design with Civil 3D and Global Mapper Overview

This intensive course is designed to provide practical skills in road design using industry-standard tools like Autodesk Civil 3D, Global Mapper, and Google Earth. The course covers the complete workflow—from data collection and terrain modeling to alignment design, profile creation, corridor modeling, and final output generation. Participants will learn how to integrate satellite imagery and elevation data, perform route planning, and analyze terrain for efficient road design.

Through hands-on sessions, learners will gain experience in creating surfaces, designing horizontal and vertical alignments, generating cross-sections, and producing construction drawings. The course also emphasizes real-world applications such as highway planning, rural road development, and infrastructure projects.

By the end of the program, participants will be able to independently plan, design, and visualize road projects using modern geospatial and civil engineering software tools.

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Learning Objectives of Road Design with Civil 3D and Global Mapper

    Google Earth Pro & Google Earth Studio
  1. Get familiar with GEP interface
  2. Add existing GIS, CAD and overlay it
  3. Add/edit point, line and polygon layers, digitize and export it as kml/kmz format
  4. Measure length and area, view historical data of your AOI/road alignments
  5. Draw elevation profile for road alignment
  6. Use slope maps to validate alignments
  7. Get familiar with Google earth Studio
  8. Loading datasets and creating animation videos
  9. Global Mapper
  10. Understand what is GIS, how it works, spatial data models, GIS analysis
  11. Understand and get familiar with Global mapper Interface
  12. Use inbuilt online data sources, add custom data sources from Survey of India and ISRO
  13. Importing & Managing GIS Data (Raster, Vector, Elevation Models)
  14. Downloading DEM, satellite image, topo maps for offline uses
  15. Visualize terrain, use default and custom shader
  16. Generate contour as per desire interval for road design
  17. Creating & editing road alignment, extracting elevation from DEM
  18. Perform terrain analysis, watershed, viewshed and hillshed to fine-tune road design
  19. Using viewshed and hillshed to tune alignment invisible area
  20. Create watershed & drainage analysis for road design
  21. Generating path profiles from road alignment, generate cross-sections, calculate cut-fill volumes
  22. Exporting data for CAD & other GIS/CAD software
  23. Customizing map layers & thematic mapping
  24. Exporting data for reconnaissance survey
  25. Printing & generating reports DPR preparation
  26. Civil 3D
  27. Explain Civil 3D Setting up project templates and workspace customization understanding tool space object styles. label styles
  28. Understand the way civil 3D handle road design life cycle with complete workflow
  29. Importing and managing survey data from surveying and GIS sources
  30. Create and manage with descriptions keys and point groups
  31. Create point manually, on vertex, on road alignment
  32. Export points for demarcation or stakeout by Total Station or DGPS
  33. Create, edit and interpolate point on surface
  34. Create surface from various sources like contour data, DEM, survey points, CAD objects, texts, lidar point cloud
  35. Analyses surfaces, generate contour, terrain modeling, terrain analysis, slope, watershed
  36. Visualize the surface in 3D, add surface labels, annotate with dynamic surface legends tables
  37. Edit surface, add/remove break lines, rise/lower surface, define boundaries
  38. Generating and modify profiles of existing ground, apply and edit profile view styles
  39. Create existing and design horizontal and vertical alignments based on IRC standards as per design speed
  40. Create best-fit alignment, offset alignment with appropriate annotations
  41. Apply super elevation to horizontal alignment
  42. Using cross-section assembly as per IRC standard, modify pavement thickness and material.
  43. Creating cross-section assembly from polyline, integrating IIT Pave results for design validation
  44. Do corridor modeling, cross section assembly design using IRC standards
  45. Create sample line at desire chainage and offsets, sample sections using different source surfaces
  46. Generate cross-sections, apply and edit cross section view styles, add volume table in section view
  47. Create road corridors with frequency settings, build corridor surfaces, add regions, visualize corridor in 3D
  48. Extract existing alignment from survey data, draw alignment for road widening
  49. Using hydrology data to manage water flow
  50. Design drainage & permanent structures, drainage systems including culverts. ditches, and cross drain
  51. Integrating bridges, tunnels, and retaining walls
  52. Perform earthwork calculation & quantity estimation cut & fill analysis for cost estimation, produce earthwork calculation reports and plot maps
  53. Understand quantity takeoffs and material volumes terminology
  54. Generate material takeoff reports and BOQ preparation
  55. Creating plan sheets and generating construction documentation for DPR preparation
  56. Exporting data, printing design sheets for DPR preparation
  57. Prepare DPR with alignment plans, profile views, sections and quantity takeoffs
  58. Project work