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Experimental investigation of liquid-metal flows through a sudden expansion at fusion-relevant Hartmann numbers

机译:熔融相关哈特曼数突然膨胀引起的液态金属流实验研究

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The available experimental database for three-dimensional magnetohydrodynamic flows in strong magnetic fields, as required for applications to nuclear fusion blankets, is very limited. In order to broaden the knowledge at relevant parameters, experiments have been performed to investigate such flows through a sudden expansion of rectangular ducts at high Hartmann numbers. In accordance with the design for helium cooled lithium lead blankets the duct walls are electrically conducting. Experimental results for pressure distribution along the duct walls have been recorded and compared with results from asymptotic theory. More than 300 electric potential probes have been used to measure the potential distribution on the surface of the ducts. At the expansion the additional pressure drop due to 3D effects caused by the flow redistribution and by the occurrence of recirculating additional electric currents has been identified. The measurements of surface potential confirm the theoretical predictions that at the expansion a large fraction of the flow bypasses the core by flowing in thin layers along the side walls.
机译:应用于核聚变毯所需的用于强磁场中的三维磁流体动力流动的可用实验数据库非常有限。为了拓宽相关参数的知识,已进行实验以研究在高Hartmann数下矩形管道突然膨胀引起的这种流动。根据用于氦冷却的锂铅毯的设计,导管壁是导电的。记录了沿管道壁的压力分布的实验结果,并将其与渐近理论的结果进行了比较。已经使用了300多个电势探针来测量管道表面上的电势分布。在膨胀处,已经识别出由于流量再分配和再循环附加电流的出现而引起的3D效应引起的附加压降。表面电势的测量证实了理论上的预测,即在膨胀时,很大一部分流体会沿侧壁以薄层流动的方式绕过岩心。

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