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Heat Transfer on Flat Surface Impinged by an Underexpanded Sonic Jet

机译:膨胀不足的声波射流撞击在平面上的传热

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Underexpanded impinging jets include complicated flow phenomena such as shock structure, sonic surface, and recirculation zone in a central impingement region, and the local heat transfer on an impinged surface has a different characteristic than a subsonic impinging jet. Studying this can be helpful in understanding the relation between supersonic flow characteristics and heat transfer on a surface. It can also provide a proper design factor for the impingement cooling technique by a high-speed jet. The convective heat transfer coefficients have been measured on a flat surface impinged by an underexpanded sonic jet. In addition, the visualization of shock structures and surface pressure measurements have been conducted to support the heat transfer measurement results. From the results, the distribution of the heat transfer coefficient on the central impingement region due to the interaction between the sonic surface and recirculation flow has been obtained. It has also been observed that the turbulence diffusion from the shear layers around the jet edge and the sonic surface into a jet core induce high heat transfer on a surface.
机译:膨胀不足的冲击射流包括复杂的流动现象,例如激波结构,声波表面和中央冲击区域中的回流区,并且在冲击表面上的局部传热具有与亚音速冲击射流不同的特性。对此进行研究有助于理解超声速流动特性与表面传热之间的关系。它还可以为高速射流的冲击冷却技术提供适当的设计因素。对流传热系数已在由膨胀不足的声波射流撞击的平坦表面上测量。另外,已经进行了冲击结构和表面压力测量的可视化以支持传热测量结果。从结果中,获得了由于声表面和再循环流之间的相互作用而在中心撞击区域上的传热系数的分布。还已经观察到,湍流从围绕射流边缘和声波表面的剪切层扩散到射流芯中,引起表面上的高热传递。

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