Simulation Research on Thermal-Hydraulic Performance of a Natural Circulation Integrated Pressurized Water Reactor

Yanan Zhao, M. Peng, G. Xia, Lianxin Lv
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Abstract

As an effective measure to improve the reactor’s inherent safety feature, natural circulation is widely used in current integrated reactor design. The thermal-hydraulic performance of a flashing-driven nature circulation integrated pressurized water reactor (NC-IPWR) is studied, by taking IP100 reactor as reference. The simulation model of the reactor is established by RELAP5 code. A control system is designed based on the operation characteristics of the reactor. Both steady-state and dynamic performance of the reactor are analyzed and the rationality of the control strategy is verified in this work. The results demonstrate the operation characteristics of the IP100 reactor, and the dynamic performance of the reactor during power variation is discussed in detail. The control strategy that keeps the steam pressure and the core outlet temperature constant shows good performance under normal operation conditions. The obtained analysis results are significant for deeper understanding and improving the operation characteristics of the IP100 reactor.
自然循环一体化压水堆热工性能仿真研究
自然循环作为提高反应堆固有安全性的有效措施,在目前的一体化反应堆设计中得到了广泛的应用。以IP100反应器为参照,研究了闪速驱动自然循环一体化压水堆(NC-IPWR)的热工性能。利用RELAP5软件建立了反应器的仿真模型。根据反应器的运行特点,设计了控制系统。对反应器的稳态和动态性能进行了分析,验证了控制策略的合理性。实验结果验证了IP100反应器的运行特性,并详细讨论了功率变化时反应器的动态性能。在正常运行条件下,保持蒸汽压力和堆芯出口温度恒定的控制策略具有良好的性能。所得分析结果对深入了解和改进IP100反应器的运行特性具有重要意义。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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