Safety and Environmental Risk, Reliability Systems
Uitgelicht
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59,99 |
Naar shop
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65,60 |
Naar shop
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Beschrijving
Bol
The marine and inland waterway sectors are at a critical turning point. Increasing traffic density, environmental sensitivity, and infrastructure expansion require advanced, risk-informed engineering approaches to ensure safety, sustainability, and long-term operational reliability.Marine Safety, Environmental Risk and Reliability Systems presents a comprehensive framework for modeling, analyzing, and managing complex marine risks. The book integrates formal safety assessment (FSA), probabilistic modeling, stochastic simulation, reliability validation, and cost-benefit evaluation into a unified Safety and Environmental Risk Model (SERM).Key topics include:¿ Inland waterway collision frequency modeling¿ Environmental consequence and ALARP-based decision analysis¿ Sustainable dredging risk frameworks¿ Deep-water system hazard operability processes¿ LNG and gas carrier environmental compliance¿ Hybrid renewable marine energy reliability¿ Offshore aquaculture risk and reliability analysis¿ Safe mooring and berthing system design¿ Propeller cavitation CFD optimizationExtensive case studies-including detailed modeling of Malaysia's Langat River-demonstrate how hybrid risk methodologies can compensate for limited accident data.
The marine and inland waterway sectors are at a critical turning point. Increasing traffic density, environmental sensitivity, and infrastructure expansion require advanced, risk-informed engineering approaches to ensure safety, sustainability, and long-term operational reliability.Marine Safety, Environmental Risk and Reliability Systems presents a comprehensive framework for modeling, analyzing, and managing complex marine risks. The book integrates formal safety assessment (FSA), probabilistic modeling, stochastic simulation, reliability validation, and cost-benefit evaluation into a unified Safety and Environmental Risk Model (SERM).Key topics include:¿ Inland waterway collision frequency modeling¿ Environmental consequence and ALARP-based decision analysis¿ Sustainable dredging risk frameworks¿ Deep-water system hazard operability processes¿ LNG and gas carrier environmental compliance¿ Hybrid renewable marine energy reliability¿ Offshore aquaculture risk and reliability analysis¿ Safe mooring and berthing system design¿ Propeller cavitation CFD optimizationExtensive case studies-including detailed modeling of Malaysia's Langat River-demonstrate how hybrid risk methodologies can compensate for limited accident data.
AmazonPages: 234, Paperback, Eliva Press