Dynamic safety risk analysis of offshore drilling
Tóm tắt
Từ khóa
Tài liệu tham khảo
Adams, 1985
Anderson, 1998, Stochastic modeling for the analysis of blowout risk in exploration drilling, Reliability Engineering and System Safety, 68, 53, 10.1016/S0951-8320(97)00067-7
Arnold, 2014
Bedford, 2001
Bennion, 1998, Underbalanced drilling and completion operations to minimize formation damage – reservoir screening criteria for optimum application, The Journal of Canadian Petroleum Technology, 9, 36
Bennion, 1998, Underbalanced drilling – praises and perils, SPE Drilling and Completion, 214, 10.2118/52889-PA
Bercha, 1978
Bourgoyne, 1986
Cohen, 2008, Dual-gradient drilling, 181
Crowl, 2002
Ebeling, 1997
Engevik, 2007
Eslinger, 2004, Risk management and analysis of driving hazard using bow tie model, SPE International Conference
Fredericks, 2008, Constant bottom-hole pressure with pressure as a primary control, 81
Ferdous, 2013, Analyzing system safety and risks under uncertainty using a bow-tie diagram: an innovative approach, Process Safety and Environmental Protection, 91, 1, 10.1016/j.psep.2011.08.010
Fowler, 1994, System safety analysis of well-control equipment, Drilling and Completion, 193, 10.2118/26844-PA
Gough, 2008
Haghshenas, 2008, The why and basic principles of managed well-bore pressure, 1
Hannegan, 2003
Holland, 1991, Subsea blowout-preventer systems: reliability and testing, SPE Drilling Engineering, 6, 293, 10.2118/17083-PA
Holland, 2001, Reliability of deepwater subsea blowout preventers, Drilling and Completion, 12, 10.2118/70129-PA
Kalantarnia, 2009, Dynamic risk assessment using failure assessment and Bayesian theory, Loss Prevention in the Process Industries, 22, 600, 10.1016/j.jlp.2009.04.006
Kalantarnia, 2010, Modeling of BP Texas City refinery accident using dynamic risk assessment approach, Process Safety and Environmental Protection, 89, 75
Kato, 1991, 10
Khan, 2001, Use of maximum credible accident scenarios for realistic and reliable risk assessment, Chemical Engineering Progress, 11, 56
Khakzad, 2014, Probabilistic risk assessment of major accidents: application to offshore blowouts in the Gulf of Mexico, Natural Hazards, 10.1007/s11069-014-1271-8
Khakzad, 2012, Dynamic risk analysis using bow-tie approach, Reliability Engineering and System Safety, 104, 36, 10.1016/j.ress.2012.04.003
Khakzad, 2013, Quantitative risk analysis of offshore drilling operations: a Bayesian approach, Safety Science, 57, 108, 10.1016/j.ssci.2013.01.022
Khakzad, 2014, On the application of near accident data to risk analysis of major accidents, Reliability Engineering and System Safety, 126, 116, 10.1016/j.ress.2014.01.015
Leading Edge Advantage, 2002
Markowski, 2011, “Bow-tie” model in layer of protection analysis, Process Safety and Environmental Protection, 89, 205, 10.1016/j.psep.2011.04.005
Meel, 2006, Plant-specific dynamic failure assessment using Bayesian theory, Chemical Engineering Science, 61, 7036, 10.1016/j.ces.2006.07.007
Minerals Management Service, 2008
OREDA, 2002
Rathnayaka, 2011, SHIPP methodology: predictive accident modeling approach. Part II. Validation with case study, Process Safety and Environmental Protection, 89, 75, 10.1016/j.psep.2010.12.002
Rathnayaka, 2013, Accident modeling and risk assessment framework for safety critical decision-making: application to deepwater drilling operation, Proceedings of the Institution of Mechanical Engineers, Part O: Journal of Risk and Reliability, 227, 86
Rehm, 2012, Introduction, 1
Shalev, 2007, Conditioned-based fault tree analysis (CBTFA): a new method for improved fault tree analysis (FTA), reliability and safety calculations, Reliability and System Safety, 92, 1231, 10.1016/j.ress.2006.05.015
Skogdalen, 2012, Quantitative risk analysis of oil and gas drilling, using deepwater horizon as a case study, Reliability Engineering and System Safety, 100, 58, 10.1016/j.ress.2011.12.002
Smith, 2012, A proposed method for planning the best initial response to kicks during managed-pressure drilling operations, SPE Drilling & Completion, 194, 10.2118/143101-PA
Vogel, 2008, Continuous circulation system, 127