Study on Reactor Vessel Water Level Measurement Method for Emergency Decision-Making of Nuclear Power Plant

Yanming Shi, Zhen-Ying Wang
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Abstract

After a nuclear accident, the nuclear power plant will monitor and analyze the unit status, environmental characteristics and accident process, determine the emergency state classification under the nuclear accident conditions, and respond to the emergency state hierarchically, to reduce the impact of the accident and ensure the safety of personnel. For determining emergency state classification of nuclear power plant cold shutdown and refueling shutdown operation mode, reactor vessel water level is an important basis for judging. The Three Mile Island nuclear accident made the industry realize the necessity of monitoring the primary water load, especially the water level in the Reactor vessel. Reactor vessel water level provides an essential basis for monitoring the core cooling state after an accident, to ensure that the core cooling state can be diagnosed correctly in time, accurately and conveniently, thus providing a criterion for determining the emergency state level, and then selecting the appropriate accident operation strategy. Based on the demand analysis of emergency state classification based on reactor vessel water level, combined with the current situation of reactor vessel measurement in Reactor vessel and the setting of peripheral dose rate monitoring channels, this paper supplements the water level measurement method under potential water loss conditions, realizes the full-range measurement of Validity water level in Reactor vessel, evaluates Validity water level Validity in Validity, and then efficiently determines the emergency state classification, providing Validity basis for emergency response.
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核电厂应急决策中反应堆容器水位测量方法研究
核事故发生后,核电站对机组状态、环境特征和事故过程进行监测分析,确定核事故条件下的应急状态分类,并对应急状态进行分级响应,以减少事故影响,保障人员安全。在确定核电站冷停堆和换料停堆运行方式的应急状态分类时,反应堆容器水位是重要的判断依据。三里岛核事故使工业界认识到监测一次水负荷,特别是反应堆容器水位的必要性。反应堆容器水位为事故发生后监测堆芯冷却状态提供了必不可少的依据,保证能够及时、准确、便捷地正确诊断堆芯冷却状态,从而为确定应急状态级别,进而选择合适的事故运行策略提供了依据。本文在对基于反应堆容器水位的应急状态分类需求分析的基础上,结合反应堆容器中反应堆容器测量的现状和周边剂量率监测通道的设置,补充了潜在失水条件下的水位测量方法,实现了反应堆容器中有效水位的全范围测量,在效度中对有效水位进行了效度评价。进而有效地确定应急状态分类,为应急响应提供有效性依据。
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