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Experimental and computational investigation of a natural circulation system in Regional Energy Reactor-10 MW_th

机译:区域能源反应堆10 MW_th自然循环系统的实验和计算研究

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A small- and medium-sized nuclear reactor (SMR) has drawn attention because it is used for multipurpose applications and the SMR has the virtue of being safer than a large-sized nuclear reactor. According to this tendency, the Regional Energy Research Institute for Next Generation (RERI) has been designing a Regional Energy Reactor-10MWth (REX-10). REX-10 is an integral type pressurized water reactor (PWR), and is designed to remove heat by natural circulation to improve safety. To investigate the natural circulation characteristics of REX-10, we designed a REX-10 Test Facility (RTF) using the scaling law and carried out experiments in two parameters: heater power and primary pressure. The experimental results have shown that the heater power is the most important parameter of the natural circulation behavior. On the other hand, the primary pressure does not show remarkable effect on natural circulation. In addition, MARS code simulation has been conducted to compare the experimental results and its results show good agreement with the experimental data. Finally, evaluation of the capability of natural circulation was conducted. The result of the evaluation shows that the RTF is sufficiently capable of removing the thermal power of this system.
机译:中小型核反应堆(SMR)因为用于多用途应用而备受关注,并且SMR具有比大型核反应堆更安全的优点。根据这种趋势,下一代区域能源研究所(RERI)一直在设计一种10MWth区域能源反应堆(REX-10)。 REX-10是一体式压水堆(PWR),旨在通过自然循环散热以提高安全性。为了研究REX-10的自然循环特性,我们使用比例定律设计了REX-10测试设施(RTF),并在两个参数上进行了实验:加热器功率和一次压力。实验结果表明,加热器功率是自然循环行为的最重要参数。另一方面,初级压力对自然循环没有显着影响。此外,还进行了MARS代码仿真以比较实验结果,其结果与实验数据吻合良好。最后,对自然循环能力进行了评估。评估结果表明,RTF有足够的能力消除该系统的热能。

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