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Thermal-hydraulic passive system reliability-based design approach

机译:基于热工被动系统可靠性的设计方法

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In order to enhance the safety of new advanced reactors, optimization of the design of the implemented passive systems is required. Therefore, a reliability-based approach to the design of a thermal-hydraulic passive system is being considered, and a limit state function (LSF)-based approach elicited from mechanical reliability is developed. The concept of functional failure, i.e., the possibility that the load will exceed the capacity in a reliability physics framework, in terms of performance parameter is introduced here for the reliability evaluation of a natural circulation passive system, designed for decay heat removal of innovative light water reactors. Water flow rate circulating through the system is selected as passive system performance characteristic parameter and the related limit state or performance function is defined. The probability of failure of the system is assessed in terms of safety margin, corresponding to the LSF. Results help the designer to determine the allowable limits or set the safety margin for the system operation parameters, to meet the safety and reliability requirements.
机译:为了提高新型先进反应堆的安全性,需要对已实现的无源系统的设计进行优化。因此,正在考虑一种基于可靠性的热工液压被动系统设计方法,并且开发了一种基于机械可靠性的基于极限状态函数(LSF)的方法。在此引入功能故障的概念,即在性能参数方面,负载将超过可靠性物理框架中的容量的可能性,用于自然循环被动系统的可靠性评估,该系统设计用于衰减创新光的散热水反应堆。选择通过系统循环的水流量作为被动系统性能特征参数,并定义相关的极限状态或性能函数。根据与LSF相对应的安全裕度来评估系统的故障概率。结果可帮助设计人员确定系统操作参数的允许极限或设置安全裕度,以满足安全性和可靠性要求。

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