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Direct numerical simulation of a turbulent 90° bend pipe flow

机译:90°弯管湍流的直接数值模拟

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Direct numerical simulation (DNS) has been performed for a spatially developing 90 bend pipe flow to investigate the unsteady flow motions downstream of the bend. A recycling method is implemented to generate a fully-developed turbulent inflow condition. The Reynolds number of the pipe flow is Re-D = 5300 and the bend curvature is gamma = 0.4. A long straight pipe section (40D) is attached in the downstream of the bend to allow the flow to develop. Flow oscillations downstream of the bend are measured using several methods, and the corresponding oscillation frequencies are estimated. It is found that different characteristic frequencies are obtained from various flow measurements. The stagnation point movement and single-point velocity measurements may not be good measures to determine the swirl-switching frequency. The oscillations of the lateral pressure force on the pipe wall and half-sided mass flow rate are proposed to be a more unambiguous measure of the unsteady flow motions downstream of the bend.
机译:已对空间发展的90个弯管流动进行了直接数值模拟(DNS),以研究弯管下游的非定常流动。实施了一种回收方法以产生充分发展的湍流条件。管道的雷诺数为Re-D = 5300,弯曲曲率为gamma = 0.4。长的直管段(40D)连接在弯头的下游,以允许流动发展。使用多种方法测量弯头下游的流动振荡,并估计相应的振荡频率。发现从各种流量测量中获得了不同的特征频率。停滞点移动和单点速度测量可能不是确定旋流切换频率的好方法。建议将管壁上的侧向压力和半边质量流率的振荡作为弯道下游非定常流动的更加明确的度量。

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