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Risk Evaluation of Explosion in FPSO Based on Failure Model and Effect Analysis

机译:基于失效模型和影响分析的FPSO爆炸危险性评估

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As large offshore drilling facility, Floating Production Storage and Offloading (FPSO) faces with the risk of oil & gas leakage and subsequent effects (e.g. fire and explosion). In order to assess FPSO gas leakage and subsequent chain effects risk scientifically, a FPSO topsides is analyzed, and Failure Model and Effect Analysis (FMEA) method is applied to find out which equipment has high Risk Priority Number (RPN). The results show that gas washing pry of FPSO in operation phase has high RPN and needs significant attention. In this paper, CFD-model of FPSO topsides is established based on computational fluid dynamics (CFD) theory. The leak rate of gas with specified hole diameter is calculated based on appropriate leak source model according to the actual operating conditions of gas washing pry. Then based on the simulation results diffusion behavior is analyzed, as well as distribution law of gas and the hazardous area of gas of gas washing pry under the leakage conditions. Furthermore, one explosion model is selected, and then damaging over-pressure of explosion on each equipment surface and the variation trend and influence scope of explosion over-pressure are derived to evaluate personnel and equipment risk. Targeted technical measures will be put forward to reduce risk.
机译:作为大型海上钻井设施,浮式生产储油和卸油(FPSO)面临着油气泄漏和后续影响(例如火灾和爆炸)的风险。为了科学地评估FPSO气体泄漏和随后的连锁效应风险,分析了FPSO的顶部,并应用了故障模型和效应分析(FMEA)方法来找出哪种设备具有较高的风险优先级数(RPN)。结果表明,FPSO的气洗操作阶段RPN较高,需要引起高度重视。本文基于计算流体动力学(CFD)理论,建立了FPSO顶侧的CFD模型。根据气洗撬的实际运行条件,根据适当的泄漏源模型,计算出具有指定孔径的气体的泄漏率。然后,基于模拟结果,分析了泄漏条件下气体的扩散行为,气体的分布规律以及气体洗涤撬的危险区域。此外,选择一种爆炸模型,然后破坏每个设备表面上的爆炸超压,并推导爆炸超压的变化趋势和影响范围,以评估人员和设备风险。将提出有针对性的技术措施以降低风险。

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