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首页> 外文期刊>Journal of Mechanical Science and Technology >Effect of guide wall on jet impingement cooling in blade leading edge channel
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Effect of guide wall on jet impingement cooling in blade leading edge channel

机译:导向壁对叶片前缘通道中射流冲击冷却的影响

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摘要

The characteristics of fluid flow and heat transfer, which are affected by the guide wall in a jet impinged leading edge channel, have been investigated numerically using three-dimensional Reynolds-averaged Navier-Stokes analysis via the shear stress transport turbulence model and gamma theta transitional turbulence model. A constant wall heat flux condition has been applied to the leading edge surface. The jet-to-surface distance is constant, which is three times that of the jet diameter. The arrangement of the guide wall near the jet hole is set as a variable. Results presented in this study include the Nusselt number contour, velocity vector, streamline with velocity, and local Nusselt number distribution along the central line on the leading edge surface. The average Nusselt number and average pressure loss between jet nozzle and channel exit are calculated to assess the thermal performance. The application of the guide wall is aimed at improving heat transfer uniformity on the leading edge surface. Results indicated that the streamwise guide wall ensures the vertical jet impingement flow intensity and prevents the flow after impingement to reflux into jet flow. Thus, a combined rectangular guide wall benefits the average heat transfer, thermal performance and heat transfer distribution uniformity.
机译:利用三维雷诺平均Navier-Stokes分析,通过剪切应力传输湍流模型和伽马θ过渡,对射流撞击的前缘通道中的导流壁影响的流体流动和传热特性进行了数值研究。湍流模型。恒定的壁热通量条件已应用于前边缘表面。射流到表面的距离是恒定的,是射流直径的三倍。引导壁在喷射孔附近的布置被设置为可变的。在这项研究中提出的结果包括Nusselt轮廓,速度矢量,带有速度的流线以及沿前缘表面中心线的局部Nusselt分布。计算喷嘴和通道出口之间的平均努塞尔数和平均压力损失,以评估热性能。引导壁的应用旨在改善前缘表面上的传热均匀性。结果表明,沿流向的导流壁确保了垂直的射流撞击流强度,并防止了撞击后的气流回流成射流。因此,组合的矩形引导壁有利于平均传热,热性能和传热分布均匀性。

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