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ANALYSIS OF LOSS-OF-FLOW ACCIDENTS IN PRE-COOLER AND INTER-COOLER OF HTR-10GT

机译:HTR-10GT预冷却器和中间冷却器中流失事故的分析

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Closed Brayton cycle (CBC) coupled with High Temperature Gas-cooled Reactor (HTGR) has potential application due to its compact configuration, high power generation efficiency and inherent safety. It is also one of the major power conversion methods for Generation Ⅳ advanced nuclear power systems. The typical CBC has several helium-water heat exchangers, including pre-cooler and inter-cooler. These helium-water heat exchangers have important influence on the performance of power conversion system, especially in loss-of-flow accidents (LOFAs). A system model including the reactor and the energy conversion system was established in this paper. The 10MW High Temperature Gas-cooled reactor-test Module helium Gas Turbine (HTR-10GT) was taken as the example to show the consequences of LOFAs. The results showed that LOFAs led to the rising of water temperature out of heat exchangers. With the reduction of water flow rate, the maximum water temperature would increase sharply, and the water temperature in pre-cooler was higher than that in inter-cooler. At low water flow rate, the water temperature would exceed the boiling point. LOFAs also made the rising of helium temperature. It had impacts on the performance of helium compressors. The elevated inlet temperature of helium compressors changed the corrected speed and corrected flow rate, therefore caused the deterioration of compressor's performance. Furthermore, the LOFAs caused the reactor inlet temperature increasing. In low water flow rate, it would make the reactor inlet temperature beyond the temperature limitation of reactor pressure vessel and influence the safety of reactor. And the LOFAs also reduced the output work of cycle. This paper provides insights of features of CBC in LOFAs and will be helpful to the design and safety operation of closed Brayton cycle coupled with HTGR.
机译:封闭式布雷顿循环(CBC)与高温气冷堆(HTGR)结合使用,由于其紧凑的结构,高的发电效率和固有的安全性而具有潜在的应用前景。它也是Ⅳ代先进核电系统的主要功率转换方法之一。典型的CBC具有多个氦水热交换器,包括预冷器和中冷器。这些氦-水热交换器对功率转换系统的性能有重要影响,尤其是在流量损失事故(LOFA)中。建立了包括反应堆和能量转换系统的系统模型。以10MW高温气冷堆测试模块氦气涡轮机(HTR-10GT)为例,显示了LOFA的后果。结果表明,LOFA导致热交换器中水温的升高。随着水流量的减小,最高水温将急剧上升,预冷器中的水温高于中冷器中的水温。在低水流量下,水温将超过沸点。 LOFA也使氦气温度升高。它对氦气压缩机的性能产生了影响。氦气压缩机进口温度的升高改变了校正后的速度和校正后的流量,因此导致了压缩机性能的下降。此外,LOFA导致反应器入口温度升高。在低水流量下,会使反应堆入口温度超过反应堆压力容器的温度极限,影响反应堆的安全。 LOFA还减少了周期的输出工作。本文提供了LOFA中CBC功能的见解,将有助于结合HTGR的密闭布雷顿循环的设计和安全操作。

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