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首页> 外文期刊>Journal of nuclear science and technology >An Application of a Variable Overpower Trip Function with Multiple Ceilings into an Advanced Integral Reactor
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An Application of a Variable Overpower Trip Function with Multiple Ceilings into an Advanced Integral Reactor

机译:具有多个天花板的可变超功率跳闸功能在高级整体反应堆中的应用

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摘要

A series of evaluations for an inadvertent control rod withdrawal event has been performed to identify the appropriateness of the reactor protection system of a 65 MWt advanced integral reactor by using the Transients And Setpoint Simulation/System-integrated Modular Reactor (TASS/SMR) code. Evaluation results show that, if considering only a high core power trip function as the reactor protection system for the limitation of a core power increase, the occurrence of an inadvertent control rod withdrawal event at the lower core power levels under a high speed mode of a main coolant pump (MCP) results in a significant deterioration in the safety margin. Specially, a violation of a safety limit is possible under the MCP middle and low speed modes due to an unsuitable setpoint of the high core power trip function. To enhance the safety margin, a variable overpower trip (VOPT) function having multiple ceilings according to the MCP speed mode has been implemented into the reactor protection system for the 65 MWt advanced integral reactor. Reassessments by considering the VOPT function with multiple ceilings show that a safety enhancement in the case of an inadvertent control rod withdrawal event is obtained by a timely initiation of a reactor trip.
机译:通过使用瞬变和设定点模拟/系统集成模块化反应堆(TASS / SMR)代码,对无意中发生的控制棒撤回事件进行了一系列评估,以确定65 MWt先进整体反应堆的反应堆保护系统是否适当。评估结果表明,如果仅考虑高铁心跳闸功能作为限制铁心功率增加的电抗器保护系统,则在较低的铁心功率水平下,在高速运行模式下会发生无意的控制棒退出事件。主冷却液泵(MCP)会严重降低安全系数。特别是,由于高核心功率跳闸功能的设定值不合适,在MCP中速和低速模式下可能会违反安全限制。为了提高安全裕度,已将根据MCP速度模式具有多个上限的可变过功率跳闸(VOPT)功能应用于65 MWt先进整体反应堆的反应堆保护系统中。通过考虑具有多个天花板的VOPT功能进行的重新评估表明,通过及时启动反应堆行程,可以在控制杆意外撤出的情况下提高安全性。

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