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Modeling and load follow simulation of CPR1000 Nuclear Power Plant implementing Mechanical Shim control strategy

机译:实施机械垫片控制策略的CPR1000核电站的建模和负荷跟踪仿真

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Load follow operation without changing soluble boron concentration is desirable for reasons of economic efficiency, automatic control capability and effluent reduction. Many researchers have investigated the implementations of Mechanical Shim (MSHIM) strategy to different types of Pressurized Water Reactors (PWRs) to achieve this goal. However, their studies mainly focused on reactor core calculations. This paper presents the modeling and load follow simulation of the CPR1000 Nuclear Power Plant (NPP) implementing MSHIM operation and control strategy in MATLAB/Simulink environment. The whole plant model consists of the Nuclear Steam Supply System (NSSS) and the Balance of Plant (BOP) system. The NSSS model consisting of the one-dimensional nodal reactor core model, nonequilibrium three-region pressurizer model and nonlinear, time-dependent lumped parameters U-Tube Steam Generator (UTSG) model was first developed. The BOP system model including dynamic models of key components, piping lines and valves was also developed. These models were then integrated in MATLAB/Simulink according to their coupled relationships with relevant control systems built to obtain the whole plant simulation model. Based on this model, the typical 12-3-6-3/100-50-100 daily load follow maneuvers with constant soluble boron concentrations at the Beginning of Cycle (BOC) and End of Cycle (EOC) were simulated under the MSHIM control strategy. The simulation results have demonstrated the feasibility and safety of the CPR1000 NPP implementing MSHIM control strategy to achieve daily load follow operations at both BOC and EOC. This study could offer a reference to the engineering application of MSHIM control strategy as well as whole plant simulations of PWRs.
机译:由于经济效率,自动控制能力和减少废水的原因,需要在不改变可溶性硼浓度的情况下进行负荷跟随操作。许多研究人员研究了机械垫片(MSHIM)策略对不同类型的压水堆(PWR)的实现方式,以实现此目标。但是,他们的研究主要集中在反应堆堆芯的计算上。本文介绍了在MATLAB / Simulink环境中实施MSHIM操作和控制策略的CPR1000核电站(NPP)的建模和负荷跟踪仿真。整个工厂模型包括核蒸汽供应系统(NSSS)和工厂平衡(BOP)系统。首先建立了由一维节点反应堆堆芯模型,非平衡三区域增压器模型和非线性,随时间变化的集总参数U型管蒸汽发生器(UTSG)模型组成的NSSS模型。还开发了BOP系统模型,其中包括关键组件,管道和阀门的动态模型。然后根据它们与相关控制系统的耦合关系,将这些模型集成到MATLAB / Simulink中,以获得完整的工厂仿真模型。在此模型的基础上,在MSHIM控制下模拟了典型的12-3-6-3 / 100-50-100日负荷跟踪操作,在循环开始(BOC)和循环结束(EOC)时具有恒定的可溶性硼浓度战略。仿真结果证明了采用MSHIM控制策略的CPR1000 NPP在BOC和EOC上实现日常负荷跟踪操作的可行性和安全性。该研究可为MSHIM控制策略的工程应用以及压水堆的全厂模拟提供参考。

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