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A study on the heat and mass transfer properties of multiple pulsating impinging jets

机译:多脉冲撞击射流的传热传质特性研究

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In order to explore the potential effect of unsteady intermittent pulsations on the heat and mass transfer rate of multiple impinging jets, a numerical study is performed on a two-dimensional pulsating impinging jet array under large temperature differences between jet flows and impingement wall when the thermo-physical properties can change significantly in the flow domain. Computational fluid dynamic approach is used to simulate the flow and thermal fields of multiple pulsating impinging jets. The numerical results indicate a significant heat transfer enhancement due to intermittent pulsation over a wide range of conditions. The oscillatory flow periodically alters the flow patterns in contrast to steady jets, which can eliminate the formation of a static stagnation point and enhance the local Nusselt number along the impingement wall between adjacent jets. Examination of the velocity field shows that the instantaneous heat transfer rate on the target surface is highly dependent on the hydrodynamic and thermal boundary layer development with time.
机译:为了探索不稳定的间歇性脉动对多重撞击射流的传热和传质速率的潜在影响,对二维脉动撞击射流阵列进行了数值研究,当射流和撞击壁之间的温差很大时, -物理性质在流域中可能发生显着变化。计算流体动力学方法用于模拟多个脉冲撞击射流的流场和热场。数值结果表明,由于在宽范围的条件下出现间歇性脉动,传热效率显着提高。与稳定的射流相比,振荡流会周期性地改变流动模式,这可以消除静态停滞点的形成,并增加沿相邻射流之间的撞击壁的局部Nusselt数。对速度场的检查表明,目标表面上的瞬时传热速率高度依赖于流体动力和热边界层随时间的发展。

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