Road Drainage Engineering - From SewerGEMS to ICM Integration

  • Category Other
  • Type Tutorials
  • Language English
  • Total size 3.2 GB
  • Uploaded By freecoursewb
  • Downloads 41
  • Last checked 2 weeks ago
  • Date uploaded 2 weeks ago
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Infohash : 80E7E07CD1BA04A6A12D3179BC529F3E2EDFB519



Road Drainage Engineering: From SewerGEMS to ICM Integration

https://WebToolTip.com

Published 12/2025
Created by Mohammad Mohsin
MP4 | Video: h264, 1920x1080 | Audio: AAC, 44.1 KHz, 2 Ch
Level: Intermediate | Genre: eLearning | Language: English | Duration: 20 Lectures ( 3h 0m ) | Size: 3.2 GB

Design and Simulation of Road Drainage Systems Using SewerGEMS and Integrated with Infoworks ICM

What you'll learn
Understand the fundamentals of road surface drainage systems, including runoff generation, inlet capture, and conveyance using 1D modeling concepts
Build a complete 1D road surface drainage network in SewerGEMS, including catchments, inlets, conduits, junctions, and outfalls.
Apply appropriate rainfall data and hydrologic methods to estimate surface runoff for urban road drainage analysis.
Integrate SewerGEMS drainage models with InfoWorks ICM, enabling advanced urban drainage and flood assessment workflows.

Requirements
Basic understanding of civil or water engineering concepts such as drainage, flow, and pipelines is helpful but not mandatory.
Familiarity with basic computer operations (file handling, installing software, navigating Windows) is required.
No prior experience with SewerGEMS or InfoWorks ICM is required — the course starts from the fundamentals and progresses step by step.
A Windows-based computer capable of running hydraulic modeling software (SewerGEMS / InfoWorks ICM).

Files:

[ WebToolTip.com ] Road Drainage Engineering - From SewerGEMS to ICM Integration
  • Get Bonus Downloads Here.url (0.2 KB)
  • ~Get Your Files Here ! 1 - Introduction
    • 1. Introduction.mp4 (45.5 MB)
    2 - Define the Study Area
    • 2. Create the boundary lines of Road Geometry.mp4 (149.1 MB)
    • 3. Import the Data in Autodesk Civil 3D.mp4 (97.4 MB)
    • 4. Find the maximum Spacing of Inlets in Hydraulic Toolbox.mp4 (61.5 MB)
    • 5. Define the locations of Inlets and Manhole in Autodesk Civil 3D.mp4 (113.3 MB)
    • 6. Create the Catchments of Road Paved Median in Civil 3D.mp4 (127.5 MB)
    • 7. Export the data from Civil3D.mp4 (219.3 MB)
    3 - Process The Data in QGIS
    • 10. Download the terrain using Open Topography Plugin in QGIS.mp4 (49.6 MB)
    • 11. Modified the terrain in HEC RAS.mp4 (190.5 MB)
    • 8. Convert Polylines to Polygon in QGIS.mp4 (184.3 MB)
    • 9. Assign the Outfall Element to the Catchments in QGIS.mp4 (161.3 MB)
    4 - ModelBuilder
    • 12. Import the Data in SewerGEMS through ModelBuilder.mp4 (137.4 MB)
    • 13. Create Main Pipe and Connect Inlet with Manhole.mp4 (107.6 MB)
    • 14. Create The Catalogue and set the Model components.mp4 (241.6 MB)
    • 15. Create The Storm Data and Validate The Model.mp4 (171.8 MB)
    • 16. GVF Rational (StormCAD) Design the Network.mp4 (293.3 MB)
    • 17. Analysis the Network Implicit SCS.mp4 (166.1 MB)
    • 18. Results Review and Labelling the Network Elements.mp4 (120.5 MB)
    5 - Import SewerGEMS Model to Infoworks ICM
    • 19. Import The SewerGEMS Model in ICM.mp4 (289.1 MB)
    • 20. Validate The Model and Run Simulation and Results Review.mp4 (302.2 MB)
    • Bonus Resources.txt (0.1 KB)

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