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A T-H Model For Residual Heat Removal System Reliability Analysis

机译:残余散热系统可靠性分析的T-H模型

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Passive system is widely used in new generation nuclear power plant (NPP) such as AP1000 and high-temperature gas-cooled reactor in order to improve the safety of NPP. Since system operation relies on natural force, and both the driven force and resistance are influenced by many uncertain factors, physical process failure becomes one of the significant contributors to the system operation failure, which need to be considered in system reliability. For system physical process failure analysis, the thermal-hydraulic (T-H) model should be established to describe the system performance, namely the system can operate successfully or not. And the T-H model should be fast enough to be used in the system reliability analysis, In this paper, the T-H model of passive residual heat removal system (PRHR) in the AP1000 for analysing the system reliability is described. The accuracy and the validity of the model have been proved by comparing the results with the requirements of AP1000 design. Finally, the connection between residual power and flow rate in AP1000 PRHRS is analysed.
机译:被动系统广泛用于新一代核电厂(NPP),如AP1000和高温气体冷却反应器,以提高NPP的安全性。由于系统操作依赖于天然力,并且驱动力和电阻都受到许多不确定因素的影响,因此物理过程故障成为系统操作故障的重要贡献之一,这需要考虑系统可靠性。对于系统物理处理故障分析,应建立热液压(T-H)模型来描述系统性能,即系统可以成功运行。并且T-H型号应该足够快,以便在系统可靠性分析中使用,本文描述了AP1000中的用于分析系统可靠性的AP1000中的被动残余散热系统(PRHR)的T-H模型。通过将结果与AP1000设计的要求进行比较,已经证明了模型的准确性和有效性。最后,分析了AP1000 PRHRS中的残余功率和流速之间的连接。

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