The Simulation of Seepage Through the Foundations: Hilla Canal Main Regulator as Case Study

This abstract describes a study on the Hilla Canal regulator using the SEEP/W program. The study aims to simulate and validate hydraulic head values obtained from the field. It provides information about the soil properties and mesh sizes used in the simulation and the governing equation used in the...

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Main Authors: Mahdi Ruaa, AI-Hadidi Maysam Th.
Format: Article
Language:English
Published: EDP Sciences 2023-01-01
Series:E3S Web of Conferences
Subjects:
Online Access:https://www.e3s-conferences.org/articles/e3sconf/pdf/2023/64/e3sconf_icgee2023_01007.pdf
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author Mahdi Ruaa
AI-Hadidi Maysam Th.
author_facet Mahdi Ruaa
AI-Hadidi Maysam Th.
author_sort Mahdi Ruaa
collection DOAJ
description This abstract describes a study on the Hilla Canal regulator using the SEEP/W program. The study aims to simulate and validate hydraulic head values obtained from the field. It provides information about the soil properties and mesh sizes used in the simulation and the governing equation used in the SEEP/W program. The simulation results are presented in the form of observed and simulated hydraulic head statistical and computational data, including RMSE, ME, and Maximum Relative Error. The study concludes that the model's performance is good, with an efficiency of 99.999%, and that the comparison of observed and simulated hydraulic head values confirms the model's validity. Overall, the study demonstrates the accuracy and applicability of the SEEP/W program for modeling hydraulic systems.
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spelling doaj.art-fd7e9bb4f33b4c74b2d9b33cb0d37ae52023-09-26T10:11:59ZengEDP SciencesE3S Web of Conferences2267-12422023-01-014270100710.1051/e3sconf/202342701007e3sconf_icgee2023_01007The Simulation of Seepage Through the Foundations: Hilla Canal Main Regulator as Case StudyMahdi Ruaa0AI-Hadidi Maysam Th.1Civil Engineering Department, University of BaghdadWater Resources Engineering Department, University of BaghdadThis abstract describes a study on the Hilla Canal regulator using the SEEP/W program. The study aims to simulate and validate hydraulic head values obtained from the field. It provides information about the soil properties and mesh sizes used in the simulation and the governing equation used in the SEEP/W program. The simulation results are presented in the form of observed and simulated hydraulic head statistical and computational data, including RMSE, ME, and Maximum Relative Error. The study concludes that the model's performance is good, with an efficiency of 99.999%, and that the comparison of observed and simulated hydraulic head values confirms the model's validity. Overall, the study demonstrates the accuracy and applicability of the SEEP/W program for modeling hydraulic systems.https://www.e3s-conferences.org/articles/e3sconf/pdf/2023/64/e3sconf_icgee2023_01007.pdfseepageseep/w programnumerical analysishydraulic headhilla canal
spellingShingle Mahdi Ruaa
AI-Hadidi Maysam Th.
The Simulation of Seepage Through the Foundations: Hilla Canal Main Regulator as Case Study
E3S Web of Conferences
seepage
seep/w program
numerical analysis
hydraulic head
hilla canal
title The Simulation of Seepage Through the Foundations: Hilla Canal Main Regulator as Case Study
title_full The Simulation of Seepage Through the Foundations: Hilla Canal Main Regulator as Case Study
title_fullStr The Simulation of Seepage Through the Foundations: Hilla Canal Main Regulator as Case Study
title_full_unstemmed The Simulation of Seepage Through the Foundations: Hilla Canal Main Regulator as Case Study
title_short The Simulation of Seepage Through the Foundations: Hilla Canal Main Regulator as Case Study
title_sort simulation of seepage through the foundations hilla canal main regulator as case study
topic seepage
seep/w program
numerical analysis
hydraulic head
hilla canal
url https://www.e3s-conferences.org/articles/e3sconf/pdf/2023/64/e3sconf_icgee2023_01007.pdf
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