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Magnetothermal force on heated or cooled pipe flow

机译:加热或冷却管道上的磁热力

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The effects of the magnetothermal force on the flows of heat and fluid through a pipe are investigated numerically when the pipe wall is either heated or cooled at constant heat flux. The flow is laminar and a paramagnetic fluid is presumed as the working fluid. Because the magnetic susceptibility of a paramagnetic fluid depends on the inverse of its temperature, the magnetothermal force is induced by coupling of the temperature field and magnetic induction. First, the effects are discussed using the case of a magnetic field induced by a single-turn concentrically placed electric coil. It is found that the effects of the magnetothermal force differ according to whether the pipe is cooled or heated. When cooled, the heat and fluid flows are affected behind the coil; the flow is repelled from the wall to the center and the thermal boundary layer thickens. By decomposing the force into the radial and axial directions in the heated and cooled cases, it is clarified that the axial force changes from positive to negative depending on the coil location in the heated case. Therefore, it can be concluded that the effects are not simply oppositional in the heated and cooled cases. In relation to the heat transfer, only when the coil is placed at the threshold of the heating/cooling zone do the effects on the local heat transfer become the opposite of each other. At other coil locations, the suppression of heat transfer is dominant ahead of the coil in the heated case, as indicated in previous work by our group. However, in the cooled case, this effect occurs behind the coil. For a more practical case, a solenoid coil is employed in the simulation. It is then found that the effect on the heat transfer becomes remarkable at the solenoid edges, especially for the heat-transfer suppression in both the heated and cooled cases.
机译:当以恒定的热通量加热或冷却管壁时,通过数值研究了磁热力对通过管的热和流体流动的影响。该流动是层流的,并且将顺磁性流体假定为工作流体。因为顺磁性流体的磁化率取决于其温度的倒数,所以磁热力是通过温度场和磁感应的耦合来感应的。首先,在单匝同心放置的电线圈感应磁场的情况下讨论这些影响。已经发现,根据管子是冷却还是加热,磁热力的作用是不同的。冷却后,热量和流体流动会受到盘管的影响;流动从壁到中心被排斥,热边界层变厚。通过在加热和冷却的壳体中沿径向和轴向分解力,可以清楚地看出,轴向力根据加热壳体中的线圈位置从正向变为负。因此,可以得出结论,在加热和冷却的情况下,效果不只是相反的。关于热传递,仅当盘管置于加热/冷却区的阈值时,对局部热传递的影响才变得相反。在其他盘管位置,在加热情况下,抑制热传递在盘管之前占主导地位,正如我们小组先前的研究表明的那样。但是,在冷却的情况下,这种效果会在线圈后面产生。对于更实际的情况,在仿真中使用电磁线圈。然后发现,在螺线管边缘处,对热传递的影响变得显着,特别是对于在加热和冷却情况下的热传递抑制。

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