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Jet impinging onto a laser drilled tapered hole: Influence of tapper location on heat transfer and skin friction at hole surface

机译:射流撞击到激光钻孔的锥形孔上:攻丝位置对传热和孔表面蒙皮摩擦的影响

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摘要

Jet emerging from a conical nozzle and impinging onto a tapered hole in relation to laser drilling is investigated and the influence taper location on the heat transfer and skin friction at the hole wall surface is examined. The study is extended to include four different gases as working fluid. The Reynolds stress model is incorporated to account for the turbulence effect in the flow field. The hole wall surface temperature is kept at 1500 K to resemble the laser drilled hole. It is found that the location of tapering in the hole influences the heat transfer rates and skin friction at the hole wall surface. The maximum skin friction coefficient increases for taper location of 0.25 H, where H is the thickness of the workpiece, while Nusselt number is higher in the hole for taper location of 0.75 H.
机译:研究了与激光钻孔有关的从圆锥形喷嘴喷出并撞击锥形孔的射流,并研究了锥度位置对热传递和孔壁表面皮肤摩擦的影响。研究扩展到包括四种不同的气体作为工作流体。并入了雷诺应力模型以说明流场中的湍流效应。孔壁表面温度保持在1500 K,类似于激光钻孔。发现在孔中逐渐变细的位置影响孔壁表面处的传热速率和皮肤摩擦。锥度为0.25 H时,最大皮肤摩擦系数增加,其中H为工件的厚度;锥度为0.75 H时,孔中的努塞尔数更高。

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