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INFLUENCE OF REYNOLDS NUMBERS ON THE FLOW AND HEAT TRANSFER AROUND ROW OF MAGNETIC OBSTACLES

机译:雷诺数对磁障绕围绕流量和热传递的影响

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An incompressible electrically conducting viscous fluid flow influenced by a local external magnetic field may develop vortical structures and eventually instabilities similar to those observed in flows around bluff bodies (such as circular cylinder), denominated magnetic obstacle. The present investigation analyses numerically the three-dimensional flow and heat transfer around row of magnetic obstacles. The vortex structures of magnetic obstacles, heat transfer behaviors in the wake of magnetic obstacles and flow resistance are analyzed at different Reynolds numbers. It shows that the flow behind magnetic obstacles contains four different regimes: (1) one pair of magnetic vortices, (2) three pairs namely, magnetic, connecting, and attached vortices, (3) smaller vortex shedding from the in-between magnetic obstacles, i.e. quasi-static and (4) regular vortex shedding from the row of magnetic obstacles. Furthermore, downstream cross-stream mixing induced by the unstable wakes can enhance wall-heat transfer, and the maximum value of percentage heat transfer increment (HI) is equal to about 35%. In this case, the thermal performance factor is more than one.
机译:受到局部外部磁场影响的不可压缩的导电粘性流体流动可能会产生涡流结构,并且最终的不稳定性类似于在虚张声体(例如圆柱形)周围的流动中观察到的那些,以指定的磁障碍物。本发明的调查在数值上分析了围绕磁障碍行的三维流动和热传递。在不同的雷诺数分析了磁障壁的涡流结构,传热行为和流动阻力。它表明,磁障碍物背后的流量包含四个不同的制度:(1)一对磁涡旋,(2)三对即,磁,连接和连接的涡流,(3)从磁障碍之间较小的涡旋脱落,即准静态和(4)常规涡旋从磁障碍行中脱落。此外,由不稳定奶唤醒引起的下游交叉流混合可以增强壁传热,并且百分比传热增量(HI)的最大值等于约35%。在这种情况下,热性能因子多于一个。

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