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THE APPLICATION OF FAULT TREE METHOD IN SYSTEMATIC MULTIPLE SPURIOUS OPERATION ANALYSIS IN FIRE PSA

机译:故障树法在防火PSA中系统多种杂散运行分析中的应用

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Systematic multiple spurious operation review is the important basement of Fire PSA Component Selection and Fire Induced Risk Modeling. It is a task of systematically evaluation of all plant systems and identification of equipments susceptible to potential spurious actuation that may challenge safe shutdown capability via spurious operations, which can ensure that the fire PSA model addresses the impacts of single spurious operations (SSOs) and multiple spurious operations (MSOs). In this paper, different methodologies of systematic multiple spurious operation review are studied and it is found that two methodologies are given in literature published at home and abroad: one methodology is development of comprehensive plant specific MSO list by panel review. This methodology is based on generic list of MSOs combined with plant specific information review. This methodology proposes high requirements for the expert panel and hard to avoid missing of some scenarios. Another methodology is review of all plant systems and components to receive SSOs, and then using MSO matrix to evaluate and encode each unique pair to receive MSOs that disable the system function. This methodology can ensure the integrity of MSO list, but the matrixes are too complicated. In this paper, the fault tree method is employed to improve the matrix method in the MSO evaluation process of the latter methodology. Reactor Coolant System (RCS) is taken as an example to describe the application of this method to CAP1000. Engineering practice shows that the fault tree method can effectively avoid omissions of MSO scenarios, and it is more useful and simple for tertiary or quaternary MSO evaluation, as well as more convenient for further MSO evaluation due to cross system issues. Furthermore, MSO fault trees can be directly called by fire PSA model for evaluation, which can lay a foundation for the follow-up work of fire PSA.
机译:系统多误操作审查消防PSA组件选择和火灾致风险模型的重要基础。这是所有的植物系统和潜在的虚假激励设备容易识别,可能通过虚假业务挑战安全关机功能,可保证系统评估的任务,火灾PSA模型地址单虚假操作(标准制定组织)和多重的影响虚假操作商(MSO)。在本文中,研究了系统的多个错误操作审查不同的方法,并发现两种方法在文献中给出在国内外发表:一个方法是通过小组审查综合工厂的具体MSO列表的发展。这种方法是基于多业务运营商与工厂的具体信息审核相结合的泛型列表上。这种方法提出了专家小组,难以避免的一些场景失踪很高的要求。另一种方法是所有的植物系统和部件的审查接收的SSOs,然后使用MSO矩阵来评估和编码每个唯一的对,以接收禁用系统功能的MSO。这种方法可以确保MSO名单的完整性,但矩阵过于复杂。在本文中,采用故障树法,以改善后者的方法的MSO评价过程的矩阵方法。反应堆冷却剂系统(RCS)被作为一个例子来描述这种方法的CAP1000应用。工程实践表明,故障树的方法可以有效的避免的MSO场景遗漏,并对它是三级或四级MSO评价更加有用和简单,以及更方便的进一步MSO评估由于跨系统的问题。此外,MSO故障树,可以直接用火PSA模型进行评估,从而奠定了火灾PSA的后续工作奠定了基础调用。

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