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Turbulent spot flow topology and mechanisms for surface heat transfer

机译:湍流点流拓扑和表面传热机理

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摘要

The properties of artificially initiated turbulent spots over a heated plate were investigated in a water channel. The instantaneous velocity field and surface Stanton number were simultaneously established using a technique that combines particle image velocimetry and thermochromic liquid crystal thermography. Several characteristics of a spot are found to be similar to those of a turbulent boundary layer. The spacing of the surface heat transfer streak patterns within the middle or 'body' of a turbulent spot are comparable to the low-speed streak spacing within a turbulent boundary layer. Additionally, the surface shear stress in the same region of a spot is also found to be comparable to a turbulent boundary layer. However, despite these similarities, the heat transfer within the spot body is found to be markedly less than the heat transfer for a turbulent boundary layer. In fact, the highest surface heat transfer occurs at the trailing or calmed region of a turbulent spot, regardless of maturity. Using a modified set of similarity coordinates, instantaneous two-dimensional streamlines suggest that turbulent spots entrain and subsequently recirculate warm surface fluid, thereby reducing the effective heat transfer within the majority of the spot. It is proposed that energetic vortices next to the wall, near the trailing edge of the spot body, are able to generate the highest surface heat transfer because they have the nearest access to cooler free-stream fluid.
机译:在水通道中研究了加热板上人工引发的湍流斑的性质。使用结合了颗粒图像测速和热致变色液晶热成像技术的技术同时建立了瞬时速度场和表面斯坦顿数。发现斑点的几个特征与湍流边界层的特征相似。在湍流点的中间或“主体”内的表面传热条纹图案的间距与湍流边界层内的低速条纹间距相当。另外,还发现在斑点的相同区域中的表面剪切应力与湍流边界层相当。然而,尽管有这些相似之处,但发现点状体内的传热明显少于湍流边界层的传热。实际上,最高的表面热传递发生在湍流点的尾部或平静区域,而不管其成熟程度如何。使用一组经过修改的相似坐标,瞬时二维流线表明湍流点会夹带并随后再循环温暖的地表流体,从而降低了大部分点内的有效热传递。有人提出,在壁壁附近,点状体后缘附近的高能量涡流能够产生最高的表面热传递,因为它们最接近较冷的自由流流体。

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