首页> 外文会议>ASME Joint US-European Fluids Engineering Division summer meeting;FEDSM2010 >FLOW OF MOVING WALL JET NEAR CHANNEL EXIT AT MODERATE REYNOLDS NUMBER
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FLOW OF MOVING WALL JET NEAR CHANNEL EXIT AT MODERATE REYNOLDS NUMBER

机译:在中等雷诺数下通道出口附近流动壁流的流动

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The two-dimensional jet flow of a Newtonian fluid at moderate Reynolds Number emerging from a channel where the upper plate is moving is examined theoretically in this study. In this case, the equations of motion are reduced by expanding the flow field about the basic Couette flow. Inertia is assumed to be large enough, allowing asymptotic development in terms of the inverse Reynolds number. A boundary layer forms adjacent to the free surface, and a classical boundary-layer analysis is applied to find the flow in the free surface and the moving wall. The influence of this boundary layer is investigated with the aid of the method of matched asymptotic expansions. The flow and stress fields are obtained as composite expansions by matching the flow in the boundary-layer region near the free surface and the flow both in the inner (boundary-layer) region and in the outer region of the core. The influence of wall velocity on the shape of the free surface, the velocity and stress is emphasized. The formulation allows for the determination of the steady state flow and free surface profiles analytically. The present work provides the conditions near exit, with the help of Higher-order boundary-layer effects (i.e. the cubic term of the inverse Reynolds number), to determine the jet structure further downstream.
机译:在这项研究中,从理论上研究了从上板运动的通道中出来的中等雷诺数的牛顿流体的二维射流。在这种情况下,通过扩大围绕基本库埃特流的流场来简化运动方程。假设惯性足够大,允许根据雷诺数倒数渐近发展。边界层形成在自由表面附近,并且应用经典边界层分析来找到自由表面和活动壁中的流动。借助于匹配渐近展开法研究了该边界层的影响。通过使自由表面附近的边界层区域中的流动与芯的内部(边界层)区域中和外部区域中的流动相匹配来获得作为复合膨胀的流场和应力场。强调了壁速度对自由表面形状,速度和应力的影响。该配方允许通过分析确定稳态流量和自由表面轮廓。本工作借助高阶边界层效应(即雷诺数逆的立方项)确定了出口附近的条件,从而确定了更下游的射流结构。

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