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Direct numerical simulation of a plane turbulent wall-jet including scalar mixing

机译:包含标量混合的平面湍流壁射流的直接数值模拟

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Direct numerical simulation is used to study a turbulent plane wall-jet including the mixing of a passive scalar. The Reynolds and Mach numbers at the inlet are Re=2000 and M=0.5, respectively, and a constant coflow of 10% of the inlet jet velocity is used. The passive scalar is added at the inlet enabling an investigation of the wall-jet mixing. The self-similarity of the inner and outer shear layers is studied by applying inner and outer scaling. The characteristics of the wall-jet are compared to what is reported for other canonical shear flows. In the inner part, the wall-jet is found to closely resemble a zero pressure gradient boundary layer, and the outer layer is found to resemble a free plane jet. The downstream growth rate of the scalar is approximately equal to that of the streamwise velocity in terms of the growth rate of the half-widths. The scalar fluxes in the streamwise and wall-normal direction are found to be of comparable magnitude. The scalar mixing situation is further studied by evaluating the scalar dissipation rate and the mechanical to mixing time scale ratio. (c) 2007 American Institute of Physics.
机译:直接数值模拟用于研究湍流平面壁射流,其中包括无源标量的混合。入口处的雷诺数和马赫数分别为Re = 2000和M = 0.5,并使用入口射流速度的10%的恒定同流。在入口处添加了无源标量,从而可以研究壁射流混合。通过应用内部和外部缩放比例来研究内部和外部剪切层的自相似性。将壁式射流的特性与其他典型剪切流所报告的特性进行了比较。在内部,发现壁射流非常类似于零压力梯度边界层,而发现外层则类似于自由平面射流。就半角的增长率而言,标量的下游增长率大约等于流向速度的增长率。发现沿水流方向和壁法线方向的标量通量具有可比较的大小。通过评估标量耗散率和机械混合时标比,可以进一步研究标量混合情况。 (c)2007年美国物理研究所。

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