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首页> 外文期刊>International Journal of Multiphase Flow >Detailed experimental and numerical investigation of fluid-particle interactions of a fixed train of spherical particles inside a square duct
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Detailed experimental and numerical investigation of fluid-particle interactions of a fixed train of spherical particles inside a square duct

机译:正方形管道内球形颗粒固定系流体颗粒相互作用的详细实验和数值研究

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In this work, a detailed comparison of velocity fields obtained from Particle Image Velocimetry (PIV) experimental measurement and Particle-Resolved Direct Numerical Simulation (PR-DNS) of flow inside a square duct around a train of five spherical particles at a Reynolds number of 100 based on the particle diameter D-p for two different particle separation distances of I/D-p (I is the center to center distance between two neighboring particles) of 1.38 and 2.19 was performed. The PR-DNS numerical results were validated with PIV experimental data. It is argued that validations using point-wise flow measurement (such as drag on particle) are potentially unreliable for simulation verification and hence, field comparisons are needed. In addition, conclusions are drawn about the interaction of flow with spherical particles in the arrangement depending on the distance over diameter ratio and drag coefficient on the spheres were calculated. (C) 2018 Elsevier Ltd. All rights reserved.
机译:在这项工作中,从雷诺数的五个球形粒子的火车周围的粒子图像VELOCIMETRY(PIV)实验测量和粒子分辨直接数值模拟(PR-DNS)的速度场进行详细比较。 100基于粒径DP用于两个不同的颗粒分离距离I / DP(i是两个相邻颗粒之间的中心距离的中心,进行1.38和2.19。 PIV实验数据验证了PR-DNS数值结果。 有人认为,对于模拟验证,使用点VIES流量测量(例如拖动粒子)的验证可能是不可靠的,因此需要场比较。 此外,根据在布置中与球形颗粒的相互作用的结论取决于通过直径比率的距离,并计算球体上的拖曳系数。 (c)2018年elestvier有限公司保留所有权利。

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