首页> 外文会议>International annual conference of the American Society for Engineering Management >RISK ASSESSMENT OF OIL AND NATURAL GAS DRILLING PROCESS BY EMPLOYING FUZZY SETS AND ANALYTICAL HIERARCHY PROCESS (AHP)
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RISK ASSESSMENT OF OIL AND NATURAL GAS DRILLING PROCESS BY EMPLOYING FUZZY SETS AND ANALYTICAL HIERARCHY PROCESS (AHP)

机译:采用模糊套和分析层次处理(AHP)石油和天然气钻井过程的风险评估

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Risk evaluation of oil and natural gas drilling process is a challenging task, due to high uncertainty and ambiguity in the available data, as well as the complexity of technical processes. A systematic approach is required to handle both quantitative and qualitative data. Lack of data for calculating the failure rate of components is a common obstacle in the drilling industry. A proposed model using Fuzzy Risk Assessment (FRA) and AHP is presented for determining and prioritizing the aggregate risk for the scenario of Loss Of Circulation (LOC). A Fuzzy Analytical Hierarchy Process (FAHP) methodology is designed to deal with an alternative selection and justification problem by integrating the concept of fuzzy set theory and AHP. Risk Factors (RFs) in a hierarchical framework are expressed as fuzzy numbers which is a combination of the likelihood of a failure event and the associated failure consequence. AHP is used to estimate weights required for grouping non-commensurate risk sources. Probability and the severity of risk factors are expressed by multiple levels, qualitative scaling scheme using linguistic variables which are calculated through fuzzy numbers to reflect the subjective nature of risk definition. The risk mapping of risk factors on the fuzzy scale can help to figure out the dependency of each risk factor to the risk levels. By employing this model the critical risk factors in LOC are identified. As a result, the research can provide theoretical and practical contributions to drilling process safety and environmental protection.
机译:由于可用数据中的高不确定性和歧义,以及技术过程的复杂性,石油和天然气钻井过程的风险评估是一个具有挑战性的任务,以及技术过程的复杂性。需要一种系统方法来处理定量和定性数据。计算组件失败率的数据缺乏数据是钻井行业的常见障碍。提出了一种使用模糊风险评估(FRA)和AHP的建议模型,用于确定和优先考虑循环损失情况的总体风险(LOC)。模糊分析层次过程(FAHP)方法旨在通过集模糊集理论和AHP的概念来处理替代选择和理由问题。分层框架中的风险因素(RFS)表示为模糊数,这是故障事件的可能性和相关的失败后果的组合。 AHP用于估计分组非相应风险源所需的权重。危险因素的概率和严重程度由使用模糊数计算的语言变量来表示多个层次,定性缩放方案,以反映风险定义的主观性质。模糊量表的风险因素的风险映射有助于弄清楚每个风险因素对风险水平的依赖。通过采用这种模型,识别LOC中的临界风险因素。因此,该研究可以为钻井过程安全和环境保护提供理论和实践贡献。

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