首页> 外文会议>IMECE2008;ASME international mechanical engineering congress and exposition >EFFECT OF UPSTREAM SHEAR ON FLOW AND HEAT (MASS) TRANSFER OVER A FLAT PLATE
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EFFECT OF UPSTREAM SHEAR ON FLOW AND HEAT (MASS) TRANSFER OVER A FLAT PLATE

机译:上游剪切对平板上流动和热(质量)传递的影响

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A parametric study is conducted to investigate the effect of wall shear on a two-dimensional turbulent boundary layer. The shear is imparted by a moving belt, flush with the wall, translating in the flow direction. Velocity and mass transfer experiments have been performed for four surface-to-freestream velocity ratios (0, 0.38, 0.52, 0.65) with a Reynolds number based on the momentum thickness between 770 and 1776. The velocity data indicate that the location of the 'virtual origin' of the turbulent boundary layer 'moves' downstream towards the trailing edge of the belt with increasing surface velocity. The highest velocity ratio represents a case which is responsible for the removal of the inner region of the boundary layer. Mass transfer measurements downstream of the belt show the presence of a local minimum in the variation of the Stanton vs. Reynolds number for the highest velocity ratio. Downstream of this minimum, approximately 1 cm from the leading edge of the mass transfer plate, the characteristics of the turbulent boundary layer are restored and the data fall back on the empirical variation of the Stanton number with Reynolds number. Keyword: turbulent flow, wall shear, Clauser technique, boundary layer, mass transfer, naphthalene sublimation.
机译:进行了参数研究,以研究壁面剪切对二维湍流边界层的影响。剪切力是由与壁齐平并沿流动方向平移的移动皮带施加的。速度和传质实验已针对四种表面自由流速度比(0、0.38、0.52、0.65)进行了研究,其雷诺数基于770和1776之间的动量厚度。湍流边界层的“虚拟原点”随着表面速度的增加而向下游“移动”到带的后缘。最高速度比表示负责去除边界层内部区域的情况。传送带下游的传质测量结果显示,在最高速度比的情况下,斯坦顿对雷诺数的变化存在局部最小值。在此最小值的下游,距传质板前缘约1 cm,恢复了湍流边界层的特性,并且数据依赖于Stanton数随雷诺数的经验变化。关键词:湍流,壁剪,Clausler技术,边界层,传质,萘升华。

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