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Local hydrodynamic investigation by PIV and CFD within a Dynamic filtration unit under laminar flow

机译:流动下动态过滤装置内PIV和CFD的局部流体动力学研究

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摘要

To better understand the hydrodynamics in a Dynamic Filtration module (DF), a local investigation within a complex and confined module named Rotating and Vibrating Filtration (RVF) was scrutinized under laminar flow with viscous Newtonian fluid (Re-mixing = 45). RVF consists of two filtration cells in series, in which a three-blade impeller rotates between two membranes. Particle Image Velocimetry (PIV) measurements were conducted in different operating conditions and synchronized with an optical trigger. In parallel, a simulation approach by Computational Fluid Dynamics (CFD) was developed and compared to PIV. On one hand, PIV measurements indicated that velocity fields and profiles were highly organized and stable within the filtration cell, and mainly governed by the impeller shape. Different feeding flowrate had no significant influence on velocity profile. Considering velocity magnitude, the angular velocity was the dominant contribution compared to radial velocity. However, a particular oscillation of radial velocity component was demonstrated. On the other hand, CFD simulation was in good agreement with PIV regarding on velocity fields and profiles. Results showed that maximum velocity and shear stress appeared at the leading edge of the impeller. A dead-zone (around the surrounding wall of the filtration cell) and a short-cut (close to the central shaft) were confirmed by CFD streamlines under different operating conditions. Moreover, velocity coefficient of the RVF module was 0.31 (mean value) from PIV while 0.35 from CFD, and it was compared to the similar devices in the literature. (C) 2017 Elsevier B.V. All rights reserved.
机译:为了更好地理解动态过滤模块(DF)中的流体动力学,在具有粘性牛油液(重新混合= 45)的层流下仔细仔细仔细仔细地在命名旋转和振动过滤(RVF)内的局部调查(重新混合= 45)。 RVF由两个串联的过滤细胞组成,其中三叶片叶轮在两个膜之间旋转。在不同的操作条件下进行粒子图像速度(PIV)测量并与光学触发同步。并行地,通过计算流体动力学(CFD)进行模拟方法,并与PIV进行比较。一方面,PIV测量表明,在过滤细胞内高度有机化和稳定性,并且主要由叶轮形状控制。不同的喂养流量对速度曲线没有显着影响。考虑速度幅度,角速度是与径向速度相比的主导贡献。然而,证明了径向速度分量的特定振荡。另一方面,CFD仿真与关于速度场和配置文件的PIV同意。结果表明,叶轮的前缘出现了最大速度和剪切应力。在不同的操作条件下,CFD流线证实了死区(过滤电池的周围壁)和短切(靠近中心轴)。此外,RVF模块的速度系数是来自PIV的0.31(平均值),而来自CFD的0.35,并将其与文献中的类似装置进行比较。 (c)2017 Elsevier B.v.保留所有权利。

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