用结构设计方法对强制对流作用下的四交错柱阵进行几何评价

Ana Paula Del Aghenese, F. Teixeira, L. Rocha, L. Isoldi, J. F. P. Filho, E. D. Santos
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引用次数: 0

摘要

这项工作提出了四圆柱交错排列的强制对流流动的几何评估的数值研究。强迫对流被认为是不可压缩的、二维的、层流的和非定常的。几何形状根据构造设计方法的不同而不同。目标是最大的努塞尔数(NuD)和最小的阻力系数(CD)之间的柱体和周围的流动。分别考虑雷诺数ReD = 10、40和150,工作流体为空气,即假设普朗特数Pr = 0.71。该问题提出了三个自由度:ST/D(中间气缸横向节距与气缸直径之比)、SL1/D(前、中间气缸纵向节距与气缸直径之比)和SL2/D(中间、后气缸纵向节距与气缸直径之比)。然而,SL1/D和SL2/D测量值保持在1.5,ST/D在1.5≤ST/D≤5.0范围内变化。用有限体积法求解了质量守恒方程、动量守恒方程和能量守恒方程。在所有ReD病例中,最佳的流体动力学研究结果出现在ST/D值最低时,即(ST/D) 0,f = 1.5。在热分析中,对NuD行为进行了评估,当ReD = 10和40时,最佳结果出现在ST/D的最大值上,而当ReD = 150时,最佳结果出现在ST/D的中间值= 4.0上。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
GEOMETRIC EVALUATION OF FOUR STAGGERED CYLINDERS ARRAY SUBJECTED TO FORCED CONVECTIVE FLOWS BY MEANS OF CONSTRUCTAL DESIGN
This work presents a numerical study on the geometric evaluation of forced convective flows over four staggered arrangement of four cylinders. The forced convective flow is considered incompressible, two-dimensional, laminar and unsteady. Geometry varies according to Constructal Design method. The objectives are the maximization of Nusselt number (NuD) and minimization of drag coefficient (CD) between the cylinders and the surrounding flow. Simulations were performed considering Reynolds numbers of ReD = 10, 40 and 150 and air as working fluid, i.e., Prandtl number is assumed Pr = 0.71. The problem presents three degrees of freedom: ST/D (ratio between transversal pitch of the intermediate cylinders and the cylinders diameter), SL1/D (ratio between the frontal and intermediate cylinders longitudinal pitch and the cylinders diameter) and SL2/D (ratio between the intermediate and posterior cylinders longitudinal pitch and the cylinders diameter). However, SL1/D and SL2/D measures were kept fixed at 1.5 and ST/D varies in the range 1.5 ≤ ST/D ≤ 5.0. The conservation equations of mass, momentum and energy conservation are solved with the Finite Volume Method (FVM). Optimal results for fluid-dynamic study in all ReD cases occurred for the lowest values of ST/D, i.e., (ST/D)o,f = 1.5. For thermal analysis, NuD behavior was assessed, where optimal results for ReD = 10 and 40 occurred for the highest values of ST/D, whilst, for ReD = 150, the optimal value was achieved for the intermediate ratio of ST/D = 4.0.
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