Inherent safety index module (ISIM) to assess inherent safety level during preliminary design stage

One of the acceptable methods to quantify the level of inherent safety is based on the inherent safety index. This paper reviews presently available techniques for quantification of inherent safety level in a design and addresses the shortcoming of current techniques by proposing direct integration...

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Main Authors: A.M., Shariff, C.T., Leong
Format: Article
Language:English
Published: 2008
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Online Access:http://scholars.utp.edu.my/id/eprint/2874/1/Inherent-safety-index-module-%28ISIM%29-to-assess-inherent-safety-level-during-preliminary-design-stage_2008_Process-Safety-and-Environmental-Protection.pdf
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spelling oai:scholars.utp.edu.my:28742023-04-11T04:30:17Z http://scholars.utp.edu.my/id/eprint/2874/ Inherent safety index module (ISIM) to assess inherent safety level during preliminary design stage A.M., Shariff C.T., Leong TP Chemical technology One of the acceptable methods to quantify the level of inherent safety is based on the inherent safety index. This paper reviews presently available techniques for quantification of inherent safety level in a design and addresses the shortcoming of current techniques by proposing direct integration of process design simulator with inherent safety index. This integrated index is known as inherent safety index module (ISIM) and it is one of the modules developed in a newly proposed framework to determine inherent safety level in the preliminary design stage. This framework is an enhancement of the framework developed earlier by Mohd Shariff et al. [Mohd Shariff, A., Rusli, R., Chan, T.L., Radhakrishnan, V.R. and Buang, A., 2006, Inherent safety tool for explosion consequences study, J Loss Prev Process Ind, 19: 409-418]. This new framework allows process information from process design simulator to be extracted and analyzed for the determination of inherent safety level (ISL), consequences and probability of unwanted incidences. The availability of such information at earlier stage of design will help process designers to obtain ISL that will assist them in producing safer designs by the application of inherent safety principles in a more efficient and cost effective manner. This paper also discusses the overall concept of the proposed framework to produce an inherent safety tool. A case study is provided to illustrate the benefit of having inherent safety index known to process designers during preliminary design stage. With the right information, modification to process conditions can be carried out and this is likely to produce a safer process plant. © 2007 The Institution of Chemical Engineers. 2008 Article PeerReviewed application/pdf en http://scholars.utp.edu.my/id/eprint/2874/1/Inherent-safety-index-module-%28ISIM%29-to-assess-inherent-safety-level-during-preliminary-design-stage_2008_Process-Safety-and-Environmental-Protection.pdf A.M., Shariff and C.T., Leong (2008) Inherent safety index module (ISIM) to assess inherent safety level during preliminary design stage. Process Safety and Environmental Protection, 86 (2 B). pp. 113-119. ISSN 9575820 http://www.scopus.com/inward/record.url?eid=2-s2.0-42549159633&partnerID=40&md5=797a557241f2778c826ec93634c4b3e2 10.1016/j.psep.2007.10.016 10.1016/j.psep.2007.10.016 10.1016/j.psep.2007.10.016
institution Universiti Teknologi Petronas
building UTP Resource Centre
collection Institutional Repository
continent Asia
country Malaysia
content_provider Universiti Teknologi Petronas
content_source UTP Institutional Repository
url_provider http://eprints.utp.edu.my/
language English
topic TP Chemical technology
spellingShingle TP Chemical technology
A.M., Shariff
C.T., Leong
Inherent safety index module (ISIM) to assess inherent safety level during preliminary design stage
description One of the acceptable methods to quantify the level of inherent safety is based on the inherent safety index. This paper reviews presently available techniques for quantification of inherent safety level in a design and addresses the shortcoming of current techniques by proposing direct integration of process design simulator with inherent safety index. This integrated index is known as inherent safety index module (ISIM) and it is one of the modules developed in a newly proposed framework to determine inherent safety level in the preliminary design stage. This framework is an enhancement of the framework developed earlier by Mohd Shariff et al. [Mohd Shariff, A., Rusli, R., Chan, T.L., Radhakrishnan, V.R. and Buang, A., 2006, Inherent safety tool for explosion consequences study, J Loss Prev Process Ind, 19: 409-418]. This new framework allows process information from process design simulator to be extracted and analyzed for the determination of inherent safety level (ISL), consequences and probability of unwanted incidences. The availability of such information at earlier stage of design will help process designers to obtain ISL that will assist them in producing safer designs by the application of inherent safety principles in a more efficient and cost effective manner. This paper also discusses the overall concept of the proposed framework to produce an inherent safety tool. A case study is provided to illustrate the benefit of having inherent safety index known to process designers during preliminary design stage. With the right information, modification to process conditions can be carried out and this is likely to produce a safer process plant. © 2007 The Institution of Chemical Engineers.
format Article
author A.M., Shariff
C.T., Leong
author_facet A.M., Shariff
C.T., Leong
author_sort A.M., Shariff
title Inherent safety index module (ISIM) to assess inherent safety level during preliminary design stage
title_short Inherent safety index module (ISIM) to assess inherent safety level during preliminary design stage
title_full Inherent safety index module (ISIM) to assess inherent safety level during preliminary design stage
title_fullStr Inherent safety index module (ISIM) to assess inherent safety level during preliminary design stage
title_full_unstemmed Inherent safety index module (ISIM) to assess inherent safety level during preliminary design stage
title_sort inherent safety index module (isim) to assess inherent safety level during preliminary design stage
publishDate 2008
url http://scholars.utp.edu.my/id/eprint/2874/1/Inherent-safety-index-module-%28ISIM%29-to-assess-inherent-safety-level-during-preliminary-design-stage_2008_Process-Safety-and-Environmental-Protection.pdf
http://scholars.utp.edu.my/id/eprint/2874/
http://www.scopus.com/inward/record.url?eid=2-s2.0-42549159633&partnerID=40&md5=797a557241f2778c826ec93634c4b3e2
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score 13.214268