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Study of heat transfer enhancement/suppression for molten salt flows in a large diameter circular pipe Part I: Benchmarking

机译:大直径圆管中熔融盐流动的传热增强/抑制研究第一部分:基准测试

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Flow field and heat transfer measurement of turbulent pipe flow are carried out as a part of benchmark experiment for the flow and heat transfer measurement of electrically conducting fluid under magnetic field. The objective of this study is to clarify the effect of MHD force on the flow of molten salt simulant, potassium hydroxide-water solution in particular. At this first stage, water is used as working fluid to obtain reference data. The fully developed turbulent pipe flow at Re = 5300 is measured by using PIV technique and turbulent structure and turbulent statistics as well as averaged flow field are obtained. For heat transfer measurement, higher Reynolds number is chosen so as to reduce the effect of the buoyancy. For tests with water without the presence of the magnetic field, both heat transfer and flow field measurement results have good agreement with existing data and provide reference data of the apparatus.
机译:作为基准实验的一部分,进行了湍流管道流的流场和传热测量,以用于在磁场下测量导电流体的流场和传热。这项研究的目的是弄清MHD力对熔融盐模拟物(尤其是氢氧化钾水溶液)的流动的影响。在此第一阶段,将水用作工作流体以获得参考数据。利用PIV技术测量了Re = 5300时充分发展的湍流管道流量,并获得了湍流结构和湍流统计数据以及平均流场。对于传热测量,选择较高的雷诺数以减小浮力的影响。对于在没有磁场的情况下进行水的测试,传热和流场测量结果均与现有数据良好吻合,并提供了设备的参考数据。

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