Estimating permeability function of soil from mini-disk infiltrometer tests
Current in-situ methods to investigate infiltration such at the single ring and double ring permeameters and disc infiltrometer are bulky and takes a lot of effort to transport and apply. Therefore, the mini-disc infiltrometer fills the need of a portable and easy to execute equipment to estimate th...
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2021
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sg-ntu-dr.10356-1503162021-05-25T08:03:53Z Estimating permeability function of soil from mini-disk infiltrometer tests Muhammad Amirul Haziq Yahya Leong Eng Choon School of Civil and Environmental Engineering CECLEONG@ntu.edu.sg Engineering::Civil engineering::Geotechnical Current in-situ methods to investigate infiltration such at the single ring and double ring permeameters and disc infiltrometer are bulky and takes a lot of effort to transport and apply. Therefore, the mini-disc infiltrometer fills the need of a portable and easy to execute equipment to estimate the permeability function of soil. The aim of this report is to determine the reliability of infiltration results from the mini-disc infiltrometer, in conjunction with inverse regression software DISC to estimate the a and n parameters of soil. Test locations around Nanyang Technological University (NTU) having slopes were chosen as test locations. To determine the reliability of results, laboratory test such as the falling-head permeability test and the pressure plate test were conducted and compared to the mini-disc and DISC results. The data obtained shows that infiltration data is consistent with the results from falling-head test. However, the SWCC generated from the DISC program and pressure plate test vary significantly from one another. Bachelor of Engineering (Civil) 2021-05-25T08:03:53Z 2021-05-25T08:03:53Z 2021 Final Year Project (FYP) Muhammad Amirul Haziq Yahya (2021). Estimating permeability function of soil from mini-disk infiltrometer tests. Final Year Project (FYP), Nanyang Technological University, Singapore. https://hdl.handle.net/10356/150316 https://hdl.handle.net/10356/150316 en application/pdf Nanyang Technological University |
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Engineering::Civil engineering::Geotechnical Muhammad Amirul Haziq Yahya Estimating permeability function of soil from mini-disk infiltrometer tests |
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Current in-situ methods to investigate infiltration such at the single ring and double ring permeameters and disc infiltrometer are bulky and takes a lot of effort to transport and apply. Therefore, the mini-disc infiltrometer fills the need of a portable and easy to execute equipment to estimate the permeability function of soil. The aim of this report is to determine the reliability of infiltration results from the mini-disc infiltrometer, in conjunction with inverse regression software DISC to estimate the a and n parameters of soil. Test locations around Nanyang Technological University (NTU) having slopes were chosen as test locations. To determine the reliability of results, laboratory test such as the falling-head permeability test and the pressure plate test were conducted and compared to the mini-disc and DISC results. The data obtained shows that infiltration data is consistent with the results from falling-head test. However, the SWCC generated from the DISC program and pressure plate test vary significantly from one another. |
author2 |
Leong Eng Choon |
author_facet |
Leong Eng Choon Muhammad Amirul Haziq Yahya |
format |
Final Year Project |
author |
Muhammad Amirul Haziq Yahya |
author_sort |
Muhammad Amirul Haziq Yahya |
title |
Estimating permeability function of soil from mini-disk infiltrometer tests |
title_short |
Estimating permeability function of soil from mini-disk infiltrometer tests |
title_full |
Estimating permeability function of soil from mini-disk infiltrometer tests |
title_fullStr |
Estimating permeability function of soil from mini-disk infiltrometer tests |
title_full_unstemmed |
Estimating permeability function of soil from mini-disk infiltrometer tests |
title_sort |
estimating permeability function of soil from mini-disk infiltrometer tests |
publisher |
Nanyang Technological University |
publishDate |
2021 |
url |
https://hdl.handle.net/10356/150316 |
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1701270612859682816 |