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LES study of contrasting behavior of pulsating plane impinging jets for heating and cooling applications

机译:脉动平面撞击喷射加热和冷却应用的对比度的研究

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Forced turbulent plane impinging jets at a frequency of 600 Hz, are studied using LES. The jets impinge on a curved surface for cooling and heating applications. The jets generate two free-shear layers releasing primary vortices moving with a sweeping effect above the target wall. The sweeping motion affects the convex wall boundary layer by generating secondary vortices and entraining air from both the jet and the surroundings. In both situations the fluid drawn in by the jet from the free entrainment boundary is cold, a condition considered realistic. The trajectories of the primary vortices exhibit a cyclic trend within a certain distance, in the streamwise direction. Forcing the jets leads to a decrease of the Nusselt number at the impingement region and away beyond four jet widths from the impingement point. The cooling jet is more efficient compared to the heating jet beyond four jet widths from the impingement point because it entrains cold surrounding air towards the wall which is desirable for cooling but undesirable for heating. The complex behavior of the cyclic groups of vortices cause the flow dynamics and heat transfer to be de-correlated intermittently.
机译:使用LES研究强制湍流平面以600Hz的频率冲击喷射器。喷气机撞击弯曲表面,用于冷却和加热应用。喷气机产生两个自由剪切层,释放初级涡流,在目标墙上的扫描效果上移动。通过产生次级涡流和从喷射器和周围环境夹带空气来影响凸壁边界层的扫描运动。在两种情况下,通过自由夹带边界的射流吸入的流体是寒冷的,条件被认为是现实的。主要涡流的轨迹在一定距离内具有循环趋势,在流动方向上。强迫喷射器导致冲击区域处的泡沫数量的减少,远离冲击点的四个喷射宽度。与来自撞击点的加热射流相比,冷却射流更有效,因为它从撞击点夹住朝向壁的冷围绕空气,这对于冷却但不希望的加热是期望的。循环涡流组的复杂行为导致流动动力学和热传递间歇地被断开相关。

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