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SEISMIC SAFETY DESIGN AND RISK ASSESSMENT

机译:地震安全设计与风险评估

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The adequacy and sufficiency of NPP seismic safety design are confirmed by the defense-in-depth safetyperformance and the risk profile. Seismic safety design and risk assessment are now inseparable for safetyassurance of nuclear facilities. Applying the defense-in-depth principle to NPP seismic safety is a difficult issuewith respect to the current seismic design philosophy in Japan. The defense-in-depth seismic safety of NPPrequires not only resisting seismic events but also assuring safety when safety measures do not function asdesigned in the seismic events. The current deterministic design practice is not appropriate for thedefense-in-depth principle when earthquake shaking demand increases because of new knowledge. Probabilisticrisk assessment allows application of the defense-in-depth principle to NPP seismic safety design in these cases.The probability of failure, the maximum conditional probability of failure and the ground motion at the conditionderived with the relationship between the realistic seismic load and seismic capacity are the three importantindexes for safety design. Performing the safety performance analyses considering maximum conditionalprobability of failure and the risk assessment complying the probability of failure is essential to satisfy thenecessary and sufficiently conditions for the defense-in-depth safety requirements of NPPs.
机译:深度防御安全性证明了核电厂抗震安全设计的充分性和充分性 绩效和风险状况。地震安全设计和风险评估现在已经离不开安全 核设施的保证。将纵深防御原则应用于核电厂的地震安全是一个难题 关于日本目前的抗震设计理念。核电厂的纵深防御地震安全 不仅需要抵抗地震事件,而且还需要在安全措施无法发挥作用时确保安全 设计在地震事件中。当前的确定性设计实践不适用于 由于新知识的增加,在地震动摇需求增加时的纵深防御原则。概率论 在这种情况下,风险评估允许将纵深防御原则应用于NPP地震安全设计。 失效概率,最大条件失效概率和该条件下的地面运动 推导与实际地震荷载和抗震能力之间的关系是三个重要的 安全设计指标。考虑最大条件进行安全性能分析 失败概率和符合失败概率的风险评估对于满足以下要求至关重要 核电厂纵深防御安全要求的必要和充分条件。

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