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Heat Transfer Resulting From the Interaction of a Vortex Pair With a Heated Wall

机译:涡流对与加热壁相互作用产生的热传递

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The motion of a two-dimensional vortex pair moving toward a wall is studied numerically. The case for which the wall is heated is analyzed. The equations of momentum and energy conservation are solved using a finite volume scheme. In this manner, the instantaneous heat transfer from the wall is obtained and is related to the dynamics of the fluid vortex interacting with the wall. It was found that, as expected, when the fluid vortex approaches the wall, the heat transfer increases significantly. The heat transfer changes in a nonmonotonic manner as a function of time: When the vortex first reaches the wall, a volume of heated fluid is convected from the wall; this fluid volume circulates in the vicinity of the wall, causing the rate of heat transfer to decrease slightly, to then increase again. A wide range of Prandtl and Reynolds numbers were tested. A measure of the effective heat transfer coefficient, or Nusselt number, is proposed.
机译:对二维涡流对壁的运动进行了数值研究。分析壁被加热的情况。动量和能量守恒方程使用有限体积法求解。以这种方式,获得了从壁的瞬时热传递,并且与与壁相互作用的流体涡旋的动力学有关。发现,正如预期的那样,当流体涡旋接近壁时,热传递显着增加。传热以非单调方式随时间变化:当涡流首先到达壁时,一定量的加热流体从壁上对流;该流体量在壁附近循环,导致传热速率略有下降,然后又增加。测试了各种Prandtl和Reynolds数。提出了有效传热系数或努塞尔数的度量。

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