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External natural convection heat transfer of liquid metal under the influence of the magnetic field

机译:磁场影响下液态金属的外部自然对流换热

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Liquid metal is an important heat exchange media in high-power industrial installations. In the fusion reactor, large temperature difference generating in the liquid metal of facing high temperature plasma leads to external natural convection on the first wall. The heat load on the first wall is carried away by the liquid metal which covers on the first wall. The cooling process of unforced liquid metal on large-sized plate is regarded as the external natural convection. A numerical simulation is employed to investigate the external natural convection heat transfer of liquid metal on the vertical plate under the different horizontal magnetic field which is perpendicular to the temperature gradient. The heated plate is placed on one side of the cavity, and two horizontal walls adjacent to it are thermally insulating. The remaining walls are stationary temperature. The results derived from velocity boundary layer and temperature boundary layer analysis are presented as the important investigation subject at different Grashof numbers under the influence of magnetic field. It can be observed that magnetic field will promote or inhibit the liquid metal flow and heat transfer, and the thickness of boundary layer different from internal natural convection, it presents diverse results at different magnetic field intensities and vertical height positions of the heated plate. Under the influence of magnetic field, the thickness of velocity boundary layer increases first and then decreases, while the thickness of thermal boundary layer generally increases. Three modes are found when there is a magnetic field exerting effects on the liquid metal external natural convection. When there is a weak magnetic field and small Grashof number, the magnetic field will enhance natural convection heat transfer, when increasing the Grashof number, magnetic field will inhibit convection heat transfer but will not suppress the flow, the flow changes from three-dimensional to quasi-two-dimensional in a moderate magnetic field. A strong magnetic field restrains convection heat transfer and flow significantly. (C) 2018 Elsevier Ltd. All rights reserved.
机译:液态金属是大功率工业装置中重要的热交换介质。在聚变反应堆中,面对高温等离子体的液态金属中产生的大温差导致第一壁上的外部自然对流。第一壁上的热负荷被覆盖在第一壁上的液态金属带走。大平板上非受力液态金属的冷却过程被认为是外部自然对流。通过数值模拟研究了在垂直于温度梯度的不同水平磁场下,液态金属在垂直板上的外部自然对流换热。将加热的板放置在腔体的一侧,与之相邻的两个水平壁是隔热的。其余的壁是固定温度。速度边界层和温度边界层分析得出的结果作为磁场作用下不同格拉斯霍夫数下的重要研究对象。可以看出,磁场将促进或抑制液态金属的流动和传热,并且边界层的厚度与内部自然对流不同,在不同的磁场强度和加热板的垂直高度位置,其呈现出不同的结果。在磁场的影响下,速度边界层的厚度先增大然后减小,而热边界层的厚度通常增大。当磁场对液态金属的外部自然对流产生影响时,会发现三种模式。当磁场弱且Grashof数较小时,磁场会增强自然对流传热,而当增加Grashof数时,磁场会抑制对流传热,但不会抑制流动,流动从三维变为在中等磁场中为准二维。强磁场会大大限制对流传热和流动。 (C)2018 Elsevier Ltd.保留所有权利。

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