Settlement prediction of soil at closed dumping area using power creep function and simulated by monte Carlo simulation method

In Malaysia total dumping sites are 73 sites, controlled dumping sites are 71 sites and sanitary landfill are 11 sites. These disposal sites will increase over time because population in Malaysia has been increased at a rate of 2.4% per annum or about 600,000 per annum since 1994. The increase in po...

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Main Authors: Pauzi N.I.M., Omar H., Misran H., Othman S.Z., Manap A.
Other Authors: 26536518100
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Published: E-Journal of Geotechnical Engineering 2023
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spelling my.uniten.dspace-219642023-05-16T10:46:19Z Settlement prediction of soil at closed dumping area using power creep function and simulated by monte Carlo simulation method Pauzi N.I.M. Omar H. Misran H. Othman S.Z. Manap A. 26536518100 7006098814 6506899840 55548997100 57200642155 In Malaysia total dumping sites are 73 sites, controlled dumping sites are 71 sites and sanitary landfill are 11 sites. These disposal sites will increase over time because population in Malaysia has been increased at a rate of 2.4% per annum or about 600,000 per annum since 1994. The increase in population would increase the amount of waste generated. Thus, it will increase the number of dumping sites. The dumping area which has a full capacity of waste will eventually closed. These closed dumping area which are to be developed for new development are prone to settlement. The settlement at dumping area are to be predicted and simulated using Power Creep Function and Monte Carlo simulation method. The heterogeneous content of waste soil from dumping area are complicated to characterize and classified. The content of waste dumped at the dumping area is important to analyse because the degradation process change with time. The degradation process are called power creep function. Power Creep Function (PCF) is time dependent deformation which is under constant stress. The two constant variables which are M' and N'. M' is the compressibility constant and N' is rate of compression varies with age placement condition. The input parameters for PCF are H0, ??, t, Tr, M' and N'. These parameters are simulated based on two cases whereby, case 1 where M' and N' are kept constant and time (t) increases from 25 days to 75 days. Tr is kept constant at 1 day. Case 2 is where M', N' and Tr are kept constant and time (t) increases from 240 days to 730 days. The total settlement prediction (?H) for these two cases are simulated by Monte Carlo simulation method. The settlement prediction at the dumping area for two years duration gave the highest total settlement (?H) as 0.13 meters. © 2014 ejge. Final 2023-05-16T02:46:19Z 2023-05-16T02:46:19Z 2014 Article 2-s2.0-84956620769 https://www.scopus.com/inward/record.uri?eid=2-s2.0-84956620769&partnerID=40&md5=0904d0f5479daba764a9f95086e0bdc2 https://irepository.uniten.edu.my/handle/123456789/21964 19 Z1 9829 9839 E-Journal of Geotechnical Engineering Scopus
institution Universiti Tenaga Nasional
building UNITEN Library
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continent Asia
country Malaysia
content_provider Universiti Tenaga Nasional
content_source UNITEN Institutional Repository
url_provider http://dspace.uniten.edu.my/
description In Malaysia total dumping sites are 73 sites, controlled dumping sites are 71 sites and sanitary landfill are 11 sites. These disposal sites will increase over time because population in Malaysia has been increased at a rate of 2.4% per annum or about 600,000 per annum since 1994. The increase in population would increase the amount of waste generated. Thus, it will increase the number of dumping sites. The dumping area which has a full capacity of waste will eventually closed. These closed dumping area which are to be developed for new development are prone to settlement. The settlement at dumping area are to be predicted and simulated using Power Creep Function and Monte Carlo simulation method. The heterogeneous content of waste soil from dumping area are complicated to characterize and classified. The content of waste dumped at the dumping area is important to analyse because the degradation process change with time. The degradation process are called power creep function. Power Creep Function (PCF) is time dependent deformation which is under constant stress. The two constant variables which are M' and N'. M' is the compressibility constant and N' is rate of compression varies with age placement condition. The input parameters for PCF are H0, ??, t, Tr, M' and N'. These parameters are simulated based on two cases whereby, case 1 where M' and N' are kept constant and time (t) increases from 25 days to 75 days. Tr is kept constant at 1 day. Case 2 is where M', N' and Tr are kept constant and time (t) increases from 240 days to 730 days. The total settlement prediction (?H) for these two cases are simulated by Monte Carlo simulation method. The settlement prediction at the dumping area for two years duration gave the highest total settlement (?H) as 0.13 meters. © 2014 ejge.
author2 26536518100
author_facet 26536518100
Pauzi N.I.M.
Omar H.
Misran H.
Othman S.Z.
Manap A.
format Article
author Pauzi N.I.M.
Omar H.
Misran H.
Othman S.Z.
Manap A.
spellingShingle Pauzi N.I.M.
Omar H.
Misran H.
Othman S.Z.
Manap A.
Settlement prediction of soil at closed dumping area using power creep function and simulated by monte Carlo simulation method
author_sort Pauzi N.I.M.
title Settlement prediction of soil at closed dumping area using power creep function and simulated by monte Carlo simulation method
title_short Settlement prediction of soil at closed dumping area using power creep function and simulated by monte Carlo simulation method
title_full Settlement prediction of soil at closed dumping area using power creep function and simulated by monte Carlo simulation method
title_fullStr Settlement prediction of soil at closed dumping area using power creep function and simulated by monte Carlo simulation method
title_full_unstemmed Settlement prediction of soil at closed dumping area using power creep function and simulated by monte Carlo simulation method
title_sort settlement prediction of soil at closed dumping area using power creep function and simulated by monte carlo simulation method
publisher E-Journal of Geotechnical Engineering
publishDate 2023
_version_ 1806425728223281152
score 13.214268