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Large-eddy simulation of a round jet in a cross-flow

机译:横流中圆形射流的大涡模拟

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A large-eddy simulation (LES) of a round jet penetrating normally into a cross-flow is described. The jet-to-cross-flow velocity ratio is 2.3 at a Reynolds number of 46,700, based on the jet bulk velocity and the jet diameter. The simulations are performed with steady and unsteady boundary conditions. A passive scalar is discretized either with a central or a TVD discretization. The results are compared with each other and the experimental measurements of Crabb, Durao and Whitelaw. The computation reproduced many phenomena present in such a flow, like the shear layer ring vortices and a counter-rotating vortex pair. In general, a reasonable agreement with the measurements was obtained. However, the calculation predicts an intense backflow low near the flat wall. As the measured points do not reach this area it is possible that such a recirculation exists but in any case the LES predicts it too high above the wall and probably too intense. The unsteady boundary condition increases the spreading of the jet slightly.
机译:描述了圆形射流的大涡模拟(LES),该射流通常会进入横流。基于射流体积速度和射流直径,射流与横流的速度比为雷诺数46,700时为2.3。在稳态和非稳态边界条件下进行模拟。被动标量可以通过中央离散或TVD离散来离散。将结果相互比较,并比较Crabb,Durao和Whitelaw的实验测量结果。该计算再现了这种流动中存在的许多现象,例如剪切层环涡旋和反向旋转涡旋对。通常,获得与测量值的合理协议。然而,该计算预测在平坦壁附近的强烈回流低。由于测得的点未到达该区域,因此可能存在这种再循环,但是无论如何,LES都会预测其在壁面上方过高并且可能过于强烈。不稳定的边界条件会稍微增加射流的扩散。

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