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LARGE-EDDY SIMULATION OF FILM COOLING FLOW EJECTED IN A SHALLOW CAVITY

机译:浅腔中膜冷却流的大涡模拟

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In the present paper the flow field of a film cooling configuration with cylindrical holes embedded in a shallow cavity is investigated using large-eddy simulation (LES). The cooling jet is injected through a single row of inclined holes from a transverse cavity into a turbulent flat plate boundary layer at a temperature ratio of TR = 0.44. The mixing of the cooling fluid and the crossflow within the cavity is a highly unsteady process generating complex vortical structures. The impact of the boundary layer separation at the upstream cavity edge on the jet-crossflow interaction is studied in detail. The driving mechanisms of the momentum and heat exchange between the jet and the crossflow are identified and discussed. The flow field and the adiabatic cooling efficiency is compared to a standard cylindrical film cooling configuration without a cavity. The development of the counter-rotating vortex pair (CVP) downstream of the jet injection is investigated. An analysis of the vortex dynamics shows an impinging behavior of the jet fluid in this area. The Reynolds stress shows a more two-dimensional distribution compared to the anisotropic nature of the jet-in-a-crossflow (JICF) at standard cylindrical holes. Since the heat exchange is closely connected to the transport of momentum in the mixed boundary layer, this observation explains the enhanced lateral spreading of the cooling fluid.
机译:在本文中,使用大涡模拟(LES)研究了在浅腔中嵌入圆柱孔的薄膜冷却结构的流场。冷却射流通过单排倾斜孔从横向腔以TR = 0.44的温度比注入湍流的平板边界层。腔内冷却流体的混合和错流是非常不稳定的过程,会产生复杂的涡旋结构。详细研究了上游空腔边缘的边界层分离对射流与横流相互作用的影响。确定并讨论了射流与横流之间的动量和热交换的驱动机制。将流场和绝热冷却效率与不带腔的标准圆柱形薄膜冷却配置进行了比较。研究了射流喷射下游的反向旋转涡流对(CVP)的发展。对涡旋动力学的分析显示了在该区域中射流的撞击行为。与标准圆柱孔处的横流喷射(JICF)的各向异性相比,雷诺应力显示出更多的二维分布。由于热交换与混合边界层中的动量传输紧密相关,因此该观察结果说明了冷却液横向扩散的增强。

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