首页> 外文期刊>Journal of Heat Transfer >Convective Heat Transfer Investigation of a Confined Air Slot-Jet Impingement Cooling on Corrugated Surfaces With Different Wave Shapes
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Convective Heat Transfer Investigation of a Confined Air Slot-Jet Impingement Cooling on Corrugated Surfaces With Different Wave Shapes

机译:不同波形波纹表面上密闭空气槽-射流冲击冷却的对流传热研究

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摘要

In this study, air jet impingement on flat, triangular-corrugated, and sinusoidal-corrugated surfaces was numerically investigated. Bottom surface was subjected to constant surface temperature. Air was the working fluid. The air exited from a rectangular shaped slot and impinged on the bottom surface. The Reynolds number was changed between 125 and 500. The continuity, momentum, and energy equations were solved using the finite volume method. The effect of the shape of bottom surface on heat and flow characteristics was investigated in detail. Average and local Nusselt number were calculated for each case. It was found out that Nusselt number increases by increasing the Reynolds number. The optimum conditions were established to get much more enhancement in terms of performance evaluation criterion (PEC). It was revealed that the shape of the cooling surface (bottom wall) influences the heat transfer substantially.
机译:在这项研究中,数值研究了在平坦,三角形波纹和正弦波纹表面上的空气喷射冲击。底表面经受恒定的表面温度。空气是工作流体。空气从矩形槽中排出,并撞击在底面上。雷诺数在125到500之间变化。使用有限体积法求解了连续性,动量和能量方程。详细研究了底面形状对热和流动特性的影响。计算每种情况的平均和本地Nusselt数。已经发现,通过增加雷诺数,努塞尔数增加。建立最佳条件是为了在性能评估标准(PEC)方面获得更多的增强。揭示了冷却表面(底壁)的形状基本上影响了热传递。

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