压水堆核电厂虚假安全注入的风险监测

Yu Huang, Zhenying Jiao, Zhen-Ying Wang, Taike Wang, Kaihe Kong, Min Li, Jian-wen Zhang
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摘要

典型的第三代压水堆核电站是根据一次回路热腿内冷却剂的饱和裕度,即热腿内的ΔPsat,即热腿内饱和压力与实际压力之差,触发安全注入信号,启动应急堆芯冷却系统。为了识别二次侧发生不需要安全注入的事故后,隔离蒸汽发生器后将反应堆降至安全停堆状态时存在虚假安全注入的风险,本文对隔离蒸汽发生器热腿内的热水力现象进行了分析。通过选择合理的监测参数,根据安全注射的驱动逻辑绘制出虚假安全注射的风险监测曲线,从而明确了虚假安全注射的风险区域。该曲线已集成到事故后一次回路的运行状态监测和跟踪系统中,并通过全范围模拟器进行了验证和验证。结果表明,二次侧事故发生后,可以动态有效地监测虚假安全注入风险,以便操作人员及时采取相应措施,避免虚假安全注入,使反应堆顺利回到安全停堆状态。
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Risk Monitoring of Spurious Safety Injection in Pressurized Water Reactor Nuclear Power Plants
The typical third generation pressurized water reactor nuclear power plants trigger safety injection signal to actuate the emergency core cooling system based on the saturation margin of coolant in hot legs of primary circuit, i.e. ΔPsat in hot legs, which represents the difference between saturation pressure and actual pressure in hot legs. In order to identify the risk of spurious safety injection during falling the reactor back to safety shutdown state after steam generator isolation following an accident on secondary side for which safety injection is unnecessary, this paper analyzes thermo hydraulic phenomenon in the hot legs where the steam generators are isolated. By selecting reasonable monitoring parameters, the risk monitoring curve of spurious safety injection, which clearly marks off the risk zone of spurious safety injection, is plotted based on the actuation logic of safety injection. The curve has been integrated into the post-accident operating state monitoring and tracing system for primary circuit, and has been verified and validated thanks to the full scope simulator. It is concluded that the risk of spurious safety injection can be dynamically and effectively monitored following the accidents on secondary side, so that operators can timely take appropriate measures to avoiding spurious safety injection and fall the reactor back to safety shutdown state smoothly.
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