F
Faisal Khan
Researcher at Memorial University of Newfoundland
Publications - 785
Citations - 28657
Faisal Khan is an academic researcher from Memorial University of Newfoundland. The author has contributed to research in topics: Risk assessment & Risk analysis. The author has an hindex of 70, co-authored 705 publications receiving 21281 citations. Previous affiliations of Faisal Khan include Royal Hobart Hospital & Australian Maritime College.
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An inherent safety–based incident investigation methodology
TL;DR: In this article, a methodology has been developed to enable the explicit use of the principles of inherent safety in an incident investigation protocol and the usefulness of this approach is demonstrated by application to the Westray coal mine explosion that occurred in Nova Scotia in 1992.
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A network based approach to envisage potential accidents in offshore process facilities
TL;DR: The proposed method is able to differentiate the consequence of specific events and predict probabilities for such events along with continual updating of consequence probabilities of fire and explosion scenarios taking into account.
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Risk analysis of offshore transportation accident in arctic waters
Rouzbeh Abbassi,Rouzbeh Abbassi,Faisal Khan,Faisal Khan,Nima Khakzad,Brian Veitch,Sören Ehlers +6 more
TL;DR: In this article, a methodology for risk analysis applicable to shipping in arctic waters is introduced and applied to a case of an oil-tanker navigating on the Northern Sea Route (NSR).
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Process design and probabilistic economic risk analysis of bio-diesel production
TL;DR: In this paper, process design and economic risk analysis were performed for a biodiesel production plant having an annual production capacity of 45,000 tonne of biodiesel using inedible Jatropha oil as the biomass feedstock.
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Iron and aluminum powder explosibility in 20-L and 1-m3 chambers
Martin P. Clouthier,Jérôme Taveau,Ashok G. Dastidar,Luke S. Morrison,Robert Zalosh,Robert C. Ripley,Faisal Khan,Paul R. Amyotte +7 more
TL;DR: In this paper, a comprehensive experimental campaign involving selected iron and aluminum powders of varying specific surface area was conducted, and preliminary results and preliminary analysis stemming from a comprehensive test campaign were presented.