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RISK ANALYSIS OF THE RESIDUAL HEAT REMOVAL SYSTEM AT SOUTH TEXAS PROJECT WITH A SPECIAL FOCUS ON BREACH OF CONTAINMENT

机译:南德克萨斯州剩余散热系统的风险分析,特别关注违约

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摘要

A unique feature in the design of the reactors at South Texas Project (STP) is that each unit's Residual Heat Removal System (RHRS) is located within containment. The aim of this work is to identify the potential failure modes of the Residual Heat Removal System that could lead to a breach of containment during reactor operation and thereby may increase Core Damage Frequency (CDF). The analysis began with a Failure Modes and Effects Analysis (FMEA) of the RHRS based on a Piping and Instrumentation Diagram. The two motor operated valves that isolate the RHRS from the Reactor Coolant System (RCS) were assumed to fail with an internal leak, exposing downstream components to reactor coolant. Pathways for coolant to exit containment were identified and analyzed for severity, occurrence, and detectability of the failure modes. The analyses of these factors lead to the determination of a criticality rating, which assisted in the ultimate findings. The results of the FMEA were used to construct an event tree of the failure modes of interest and the composite probability of each failure. The highest probability failure mode of interest was a breach of containment by a tube of the heat exchanger leaking into the Component Cooling Water (CCW) with a failure probability of 2.5E-10 per reactor year. The insights gained in this analysis will be used by the South Texas Project for future risk analysis and decision-making regarding the RHRS.
机译:南德克萨斯州项目(STP)的反应器设计中的独特功能是每个单元的剩余散热系统(RHR)位于遏制范围内。这项工作的目的是识别残留散热系统的潜在故障模式,其可能导致在反应器操作期间突破遏制,从而可以增加核心损伤频率(CDF)。该分析基于管道和仪表图开始使用RHR的失效模式和效果分析(FMEA)。假设从反应器冷却剂系统(RCS)的两个电动机操作阀被假定用内部泄漏,将下游组分暴露于反应器冷却剂。鉴定了冷却剂的冷却剂的途径,并分析了故障模式的严重程度,发生和可检测性。这些因素的分析导致确定临界评级,这有助于终极调查结果。 FMEA的结果用于构建失败的兴趣模式的事件树和每个故障的复合概率。感兴趣的最高概率失效模式是通过泄漏到组分冷却水(CCW)的热交换器管的漏洞,其每个反应器年度为2.5e-10的失效概率。在该分析中获得的见解将由南德克萨斯州南德克萨斯州项目用于未来的风险分析和关于RHR的决策。

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