基于SFV技术和CFD分析的法向三角形管阵流动结构比较

D. M. Rocha, F. Kanizawa, Kosuke Hayashi, S. Hosokawa, A. Tomiyama, G. Ribatski
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引用次数: 0

摘要

本文介绍了空间滤波测速(SFV)技术的性能分析,该技术应用于跨管束的外部流动,以评估在复杂几何结构中使用低颗粒浓度的好处。实验矢量速度场是在亚克力管束试验截面上得到的,管束为20排,直径为20mm的4根管,以正三角形形式安装,横向节径比为1.25。通过将实验矢量速度场计算的体积流量与流量计测量的体积流量进行比较,对SFV结果的可靠性进行了评价,结果吻合较好。并利用实验结果验证了CFD模拟所得数值结果的有效性。在雷诺数为909、1842和3902时进行了实验。通过SFV技术得到的速度分布与CFD模拟结果一致,两者的分析结果一致。因此,数值和实验结果表明,SFV技术提供了准确的速度数据,适用于复杂几何形状,特别是在远离试验段壁的区域,由于低颗粒浓度提供了良好的能见度。
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A Comparison of the Flow Structure in a Normal Triangular Tube Array Obtained Based on the SFV Technique and on a CFD Analysis
This paper presents an analysis of the performance of the Spatial Filter Velocimetry (SFV) technique applied to external flows across tube bundles to evaluate the benefits of using low particle concentration in a complex geometry. The experimental vector velocity fields were obtained in a tube bundle test section made of acrylic with 20 rows of 4 tubes of 20mm O.D. mounted in a normal triangular configuration and transversal pitch per diameter ratio of 1.25. The SFV results reliability was evaluated by comparing the volumetric flow rates estimated by the experimental vector velocity fields with the volumetric flow rates measured by the flowmeter, showing good agreement. Additionally, the experimental results are used to check the validity of numerical results obtained through CFD simulation. The experiments were conducted for Reynolds numbers of 909, 1842 and 3902. The velocity profiles obtained through the SFV technique agree with the CFD simulations results, which indicate consistent results for both analyzes. Therefore, the numerical and experimental results indicate that the SFV technique provides accurate velocity data and is suitable to be applied to complex geometries, especially in regions away of the test section wall due to the good visibility provided by low particle concentration.
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