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首页> 外文期刊>Journal of Fluid Mechanics >Concave-wall turbulent boundary layers without and with free-stream turbulence
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Concave-wall turbulent boundary layers without and with free-stream turbulence

机译:凹陷壁湍流边界层没有和自由流湍流

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摘要

Direct numerical simulations are performed to contrast turbulent boundary layers over a concave wall without and with free-stream turbulence. An adverse pressure gradient near the onset of curvature leads to a sharp decrease in skin friction and intermittent separation. The presence of free-stream turbulence reduces the probability of reverse flow, accelerates the recovery of the boundary layer in the downstream zero-pressure-gradient region, and leads to a sustained and appreciable increase in the skin friction. The forcing also promotes the amplification of coherent Gortler structures in the logarithmic layer of the curved-wall boundary layer. Statistically, the spanwise and wall-normal Reynolds stresses intensify and the radial distance between their peaks increases downstream as the Gortler structures expand. The Reynolds shear stress coefficient also increases in the logarithmic layer, in contrast to a decrease when a flat-plate boundary layer is exposed to free-stream turbulence. In addition, the more coherent and energetic roll motions in the forced flow promote mixing of free-stream and boundary-layer fluids, where the former is seen more often deep within the buffer layer.
机译:通过直接数值模拟对比了无自由流湍流和有自由流湍流时凹壁上的湍流边界层。曲率开始附近的不利压力梯度会导致表面摩擦和间歇性分离的急剧减少。自由流紊流的存在降低了逆流的概率,加速了下游零压力梯度区域边界层的恢复,并导致表面摩擦持续且显著增加。这种强迫还促进了曲壁边界层对数层中相干Gortler结构的放大。从统计上看,随着Gortler结构的扩展,翼展方向和壁面法向雷诺应力加剧,其峰值之间的径向距离在下游增加。雷诺剪应力系数在对数层中也会增加,与平板边界层暴露于自由流湍流时的减少相反。此外,强迫流中更连贯、能量更大的横摇运动促进了自由流和边界层流体的混合,前者更常见于缓冲层深处。

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