Dynamic safety risk analysis of water plant chlorination using dynamic bow-tie approach / Nor Aqilah Muhamad Nasir
Chlorine is one of the hazardous materials and needs to be handled carefully. In water chlorination system at water treatment plant (WTP), there was potential hazard to the workers and the population nearby the water treatment plant. To identify this hazard, risk assessment is the one of the techniq...
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my.uitm.ir.382842022-10-25T07:57:18Z https://ir.uitm.edu.my/id/eprint/38284/ Dynamic safety risk analysis of water plant chlorination using dynamic bow-tie approach / Nor Aqilah Muhamad Nasir Muhamad Nasir, Nor Aqilah Physical and theoretical chemistry Chemical elements Self-assembly (Chemistry). Decomposition (Chemistry) Flocculation, precipitation, adsorption, etc. Coagulation Sewage disposal systems Treatment, purification, etc. Chlorine is one of the hazardous materials and needs to be handled carefully. In water chlorination system at water treatment plant (WTP), there was potential hazard to the workers and the population nearby the water treatment plant. To identify this hazard, risk assessment is the one of the techniques that can be used to eliminate the hazard and measure the risk other than to identify the hazard. But due to the limitation of being static of conventional risk assessment, many researchers were study to update the conventional risk assessment to the dynamic risk assessment. This paper was aimed to update the conventional bow-tie analysis to the dynamic one by mapping bow-tie (BT) into bayesian network (BN) using Genie software. Posterior probability was used to replace the prior probability in this study to update the conventional to the dynamic. Three time interval was mapping into BN to show the dynamic risk assessment by assuming no maintenance for three years. To conduct this study, Kelar water treatment plant was chosen as the case study. Failure mode effect analysis (FMEA) was used to determine the potential hazard in the water chlorination system. Chlorine leakage from drum was chosen as the worst-case accident for this study of the top event to map the BT and BN. Besides that, ALOHA modeling software was also being used to determine the area concentration of chlorine emission nearby the population of Kelar WTP if there was a chlorine leakage. The worst cases of the accident was a leaking from 5 mm hole of body drum that would affect about 15 villages nearby the Kelar WTP. By implementing this approach, the accident can be prevented as well as eliminated. 2020-09 Student Project NonPeerReviewed text en https://ir.uitm.edu.my/id/eprint/38284/1/38284.pdf Dynamic safety risk analysis of water plant chlorination using dynamic bow-tie approach / Nor Aqilah Muhamad Nasir. (2020) [Student Project] <http://terminalib.uitm.edu.my/38284.pdf> (Unpublished) |
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Physical and theoretical chemistry Chemical elements Self-assembly (Chemistry). Decomposition (Chemistry) Flocculation, precipitation, adsorption, etc. Coagulation Sewage disposal systems Treatment, purification, etc. Muhamad Nasir, Nor Aqilah Dynamic safety risk analysis of water plant chlorination using dynamic bow-tie approach / Nor Aqilah Muhamad Nasir |
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Chlorine is one of the hazardous materials and needs to be handled carefully. In water chlorination system at water treatment plant (WTP), there was potential hazard to the workers and the population nearby the water treatment plant. To identify this hazard, risk assessment is the one of the techniques that can be used to eliminate the hazard and measure the risk other than to identify the hazard. But due to the limitation of being static of conventional risk assessment, many researchers were study to update the conventional risk assessment to the dynamic risk assessment. This paper was aimed to update the conventional bow-tie analysis to the dynamic one by mapping bow-tie (BT) into bayesian network (BN) using Genie software. Posterior probability was used to replace the prior probability in this study to update the conventional to the dynamic. Three time interval was mapping into BN to show the dynamic risk assessment by assuming no maintenance for three years. To conduct this study, Kelar water treatment plant was chosen as the case study. Failure mode effect analysis (FMEA) was used to determine the potential hazard in the water chlorination system. Chlorine leakage from drum was chosen as the worst-case accident for this study of the top event to map the BT and BN. Besides that, ALOHA modeling software was also being used to determine the area concentration of chlorine emission nearby the population of Kelar WTP if there was a chlorine leakage. The worst cases of the accident was a leaking from 5 mm hole of body drum that would affect about 15 villages nearby the Kelar WTP. By implementing this approach, the accident can be prevented as well as eliminated. |
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Student Project |
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Muhamad Nasir, Nor Aqilah |
author_facet |
Muhamad Nasir, Nor Aqilah |
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Muhamad Nasir, Nor Aqilah |
title |
Dynamic safety risk analysis of water plant chlorination using dynamic bow-tie approach / Nor Aqilah Muhamad Nasir |
title_short |
Dynamic safety risk analysis of water plant chlorination using dynamic bow-tie approach / Nor Aqilah Muhamad Nasir |
title_full |
Dynamic safety risk analysis of water plant chlorination using dynamic bow-tie approach / Nor Aqilah Muhamad Nasir |
title_fullStr |
Dynamic safety risk analysis of water plant chlorination using dynamic bow-tie approach / Nor Aqilah Muhamad Nasir |
title_full_unstemmed |
Dynamic safety risk analysis of water plant chlorination using dynamic bow-tie approach / Nor Aqilah Muhamad Nasir |
title_sort |
dynamic safety risk analysis of water plant chlorination using dynamic bow-tie approach / nor aqilah muhamad nasir |
publishDate |
2020 |
url |
https://ir.uitm.edu.my/id/eprint/38284/1/38284.pdf https://ir.uitm.edu.my/id/eprint/38284/ |
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1748183837893984256 |
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13.214268 |