Slope risk assessment using GIS technique: study area - section U10 Shah Alam, Selangor / Shamiruddin Mahammad Azami

There are many factors that cause slope failures such as rock mass discontinuities, weathering, mass stratification, water seepage, surface cover and erosion. The existing legislations and guidelines on residential development either on or near hilly terrain are defective to produce an acceptable an...

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Main Author: Mahammad Azami, Shamiruddin
Format: Thesis
Language:English
Published: 2009
Subjects:
Online Access:http://ir.uitm.edu.my/id/eprint/27516/
http://ir.uitm.edu.my/id/eprint/27516/1/TM_SHAMIRUDDIN%20MAHAMMAD%20AZAMI%20EC%2009_5.pdf
id uitm-27516
recordtype eprints
spelling uitm-275162020-01-21T02:39:02Z http://ir.uitm.edu.my/id/eprint/27516/ Slope risk assessment using GIS technique: study area - section U10 Shah Alam, Selangor / Shamiruddin Mahammad Azami Mahammad Azami, Shamiruddin Engineering geology. Rock mechanics. Soil mechanics. There are many factors that cause slope failures such as rock mass discontinuities, weathering, mass stratification, water seepage, surface cover and erosion. The existing legislations and guidelines on residential development either on or near hilly terrain are defective to produce an acceptable and reasonable safety measures. The aim of this study is to innovate a georisk management system which is capable of mitigating risk to life and economic loss due to slope failures. The main objectives of this research are, firstly to identify and determine slope risk rating parameters. Secondly to produce georisk map for the selected site as case study and finally produce Real Time Georisk Slope Management System (RTG-SMS) using GIS technique. Most practitioners still prefer and are accustomed to conventional approach of slope stability analysis which is inadequate to guarantee zero risk to slope failure. A comprehensive literature study concluded that none of the previous studies in Malaysia focused on the consequences of the risk elements due to slope hazards such as residential areas and public roads. Therefore, this study proceed the alternative solution through three phases of methodologies: (i) literature review, (ii) produce georisk map, (iii) develop Real Time Georisk Slope Management System (RTG-SMS). This study focuses on the general physical of sedimentary ground formation and slope rating system approach modified from Slope Management and Risk Tracking (SMART). However, comparison studies with other slope rating systems do not constrain with this study. This study has also revealed that residents in Section UID, Shah Alam were almost exposed to slope failures. Through RTG-SMS, Section UID, Shah Alam requires further monitoring and proper slopes management bound to the residential area in the near future to prevent any loss of life and property damages. This study successfully proved that RTG-SMS is a useful system to be used for slope maintenance and suitable for engineers, planners, geologist and local authorities to determine the safety level of the slope. The system created also can be used to monitor the existing, current or future hilly terrain development areas which absolutely will benefit the local authorities as a decision maker supporter to approve any future hilly terrain developments that have been proposed. 2009 Thesis NonPeerReviewed text en http://ir.uitm.edu.my/id/eprint/27516/1/TM_SHAMIRUDDIN%20MAHAMMAD%20AZAMI%20EC%2009_5.pdf Mahammad Azami, Shamiruddin (2009) Slope risk assessment using GIS technique: study area - section U10 Shah Alam, Selangor / Shamiruddin Mahammad Azami. Masters thesis, Universiti Teknologi MARA.
repository_type Digital Repository
institution_category Local University
institution Universiti Teknologi MARA
building UiTM Institutional Repository
collection Online Access
language English
topic Engineering geology. Rock mechanics. Soil mechanics.
spellingShingle Engineering geology. Rock mechanics. Soil mechanics.
Mahammad Azami, Shamiruddin
Slope risk assessment using GIS technique: study area - section U10 Shah Alam, Selangor / Shamiruddin Mahammad Azami
description There are many factors that cause slope failures such as rock mass discontinuities, weathering, mass stratification, water seepage, surface cover and erosion. The existing legislations and guidelines on residential development either on or near hilly terrain are defective to produce an acceptable and reasonable safety measures. The aim of this study is to innovate a georisk management system which is capable of mitigating risk to life and economic loss due to slope failures. The main objectives of this research are, firstly to identify and determine slope risk rating parameters. Secondly to produce georisk map for the selected site as case study and finally produce Real Time Georisk Slope Management System (RTG-SMS) using GIS technique. Most practitioners still prefer and are accustomed to conventional approach of slope stability analysis which is inadequate to guarantee zero risk to slope failure. A comprehensive literature study concluded that none of the previous studies in Malaysia focused on the consequences of the risk elements due to slope hazards such as residential areas and public roads. Therefore, this study proceed the alternative solution through three phases of methodologies: (i) literature review, (ii) produce georisk map, (iii) develop Real Time Georisk Slope Management System (RTG-SMS). This study focuses on the general physical of sedimentary ground formation and slope rating system approach modified from Slope Management and Risk Tracking (SMART). However, comparison studies with other slope rating systems do not constrain with this study. This study has also revealed that residents in Section UID, Shah Alam were almost exposed to slope failures. Through RTG-SMS, Section UID, Shah Alam requires further monitoring and proper slopes management bound to the residential area in the near future to prevent any loss of life and property damages. This study successfully proved that RTG-SMS is a useful system to be used for slope maintenance and suitable for engineers, planners, geologist and local authorities to determine the safety level of the slope. The system created also can be used to monitor the existing, current or future hilly terrain development areas which absolutely will benefit the local authorities as a decision maker supporter to approve any future hilly terrain developments that have been proposed.
format Thesis
author Mahammad Azami, Shamiruddin
author_facet Mahammad Azami, Shamiruddin
author_sort Mahammad Azami, Shamiruddin
title Slope risk assessment using GIS technique: study area - section U10 Shah Alam, Selangor / Shamiruddin Mahammad Azami
title_short Slope risk assessment using GIS technique: study area - section U10 Shah Alam, Selangor / Shamiruddin Mahammad Azami
title_full Slope risk assessment using GIS technique: study area - section U10 Shah Alam, Selangor / Shamiruddin Mahammad Azami
title_fullStr Slope risk assessment using GIS technique: study area - section U10 Shah Alam, Selangor / Shamiruddin Mahammad Azami
title_full_unstemmed Slope risk assessment using GIS technique: study area - section U10 Shah Alam, Selangor / Shamiruddin Mahammad Azami
title_sort slope risk assessment using gis technique: study area - section u10 shah alam, selangor / shamiruddin mahammad azami
publishDate 2009
url http://ir.uitm.edu.my/id/eprint/27516/
http://ir.uitm.edu.my/id/eprint/27516/1/TM_SHAMIRUDDIN%20MAHAMMAD%20AZAMI%20EC%2009_5.pdf
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