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Enhancement of Heat Transfer in Fuel Assemblies of High Performance Light Water Reactors

机译:增强高性能轻水反应堆燃料组件中的传热

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Heat transfer in fuel assemblies for a High Performance Light Water Reactor can be achieved either with artificial surface roughness of the fuel claddings or by a spiral cross flow between the fuel pins, for which purpose a staircase type grid spacer has been designed. An application of earlier test results with rough claddings for gas cooled reactors to supercritical water conditions, together with new heat transfer estimates for a spiral flow, indicates that the heat transfer coefficient of the coolant at the cladding surface can be increased by more than a factor of two, which will reduce the peak cladding temperature by at least 50℃. This improvement shall allow either to increase the core outlet temperature at a given cladding temperature or to reduce the peak temperature at the envisaged core outlet temperature. The paper includes analyses and design details for realization of such enhancement of heat transfer.
机译:高性能轻水反应堆的燃料组件中的传热可以通过燃料包壳的人造表面粗糙度或通过燃料销之间的螺旋错流来实现,为此目的,设计了阶梯式格栅隔板。将气冷反应堆的粗糙包壳用于超临界水条件的早期测试结果以及螺旋流的新传热估计值的应用表明,包壳表面冷却剂的传热系数可以增加一个以上因子。 ,将使峰值熔覆温度降低至少50℃。这种改进应允许在给定的包层温度下提高纤芯出口温度,或降低设想的纤芯出口温度下的峰值温度。本文包括分析和设计细节,以实现这种传热的增强。

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