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Risk-Based Integrity and Inspection Modeling (RBIIM) of Process Components/System

机译:过程组件/系统的基于风险的完整性和检查建模(RBIIM)

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Process plants deal with hazardous (highly flammable and toxic) chemicals at extreme conditions of temperature and pressure. Proper inspection and maintenance of these facilities is paramount for the maintenance of safe and continuous operation. This article proposes a risk-based methodology for integrity and inspection modeling (RBIIM) to ensure safe and fault-free operation of the facility. This methodology uses a gamma distribution to model the material degradation and a Bayesian updating method to improve the distribution based on actual inspection results. The method deals with the two cases of perfect and imperfect inspections. The measurement error resulting from imperfect inspections is modeled as a zero-mean, normally distributed random process. The risk is calculated using the probability of failure and the consequence is assessed in terms of cost as a function of time. The risk function is used to determine an optimal inspection and replacement interval. The calculated inspection and replacement interval is subsequently used in the design of an integrity inspection plan. Two case studies are presented: the maintenance of an autoclave and the maintenance of a pipeline segment. For the autoclave, the interval between two successive inspections is found to be 19 years. For the pipeline, the next inspection is due after 5 years from now. Measurements taken at inspections are used in estimating a new degradation rate that can then be used to update the failure distribution function.
机译:加工厂在极端温度和压力条件下处理危险(高度易燃和有毒)化学品。对这些设施进行正确的检查和维护对于维持安全和连续运行至关重要。本文提出了一种基于风险的完整性和检查建模(RBIIM)方法,以确保设施的安全和无故障运行。该方法使用伽马分布来模拟材料降解,并使用贝叶斯更新方法根据实际检查结果来改善分布。该方法处理完美和不完善检查的两种情况。由于检查不完善而导致的测量误差被建模为零均值,正态分布的随机过程。使用故障概率计算风险,并根据成本作为时间的函数评估后果。风险函数用于确定最佳检查和更换间隔。随后将计算出的检查和更换间隔用于完整性检查计划的设计中。介绍了两个案例研究:高压釜的维护和管道段的维护。对于高压釜,两次连续检查之间的间隔为19年。对于管道,下一次检查应在距现在5年后进行。在检查时进行的测量可用于估计新的退化率,然后可以使用该退化率来更新故障分布函数。

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