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A Numerical Study of Heat Transfer and Fluid Flow Over an In-line Tube Bank

机译:直列管束内传热和流体流动的数值研究

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Heat transfer and fluid flow over an in-line tube bank using computational fluid dynamic prediction is presented in this study. The study considers steady laminar two-dimensional incompressible flow over in-line tube bundles used in heat exchanger applications. The effect of various independent parameters, such as Reynolds number (Re), length aspect ratio (L/D = 2.5, 2, 1.5, 1.0, 0.5, and 0.0), and fluid flow on the pressure drop and heat transfer, is studied. A computer code (CFD-Fluent) is generally used to predict the heat transfer and pressure drop characteristics of flows around or through rigid complex geometry, namely, domains whose boundaries do not coincide with coordinate lines of a Cartesian or any simple coordinate system. A comparison is made between the present computational fluid dynamic predictions and reference measurements [Iwaki, C., Cheong, K. H., Monji, H., and Matsui, G. 2004. PIV measurement of vertical cross flow structure over tube bundles. Experiments in Fluids 37:350-363] for the velocity vector as fluid flow over a cylinder in cross flow for the selected values of Reynolds numbers Rep. Therefore, the comparison is made between the present computational fluid dynamic results and Martin empirical correlation of in-line circular tube for the variation of Nu with Re_D. A reasonable agreement is observed. The results of the present study provide sufficient confidence in using empirical correlations to undertake initial sizing of tube bank heat exchanger design, with thermo-fluid performance subsequently predicted by computational fluid dynamic analysis for specific requirements applications.
机译:这项研究提出了使用计算流体动力学预测的在​​线管束上的热传递和流体流动。该研究考虑了用于热交换器应用的直列管束上的稳定层流二维不可压缩流。研究了雷诺数(Re),长度纵横比(L / D = 2.5、2、1.5、1.0、0.5和0.0)和流体流量对压降和传热等各种独立参数的影响。通常使用计算机代码(CFD-Fluent)来预测围绕或流经刚性复杂几何体(即边界与笛卡尔坐标系或任何简单坐标系不重合的区域)的传热和压降特性。在当前的计算流体动力学预测和参考测量之间进行了比较[Iwaki,C.,Cheong,K. H.,Monji,H.和Matsui,G. 2004.管束上垂直横流结构的PIV测量。在流体[37:350-363中进行的实验]中,对于雷诺数Rep的选定值,作为横向流过圆柱体的流体的速度矢量。因此,将当前的计算流体动力学结果与in的马丁经验相关性进行比较。圆管用于Nu随Re_D的变化。遵守合理的协议。本研究的结果为使用经验相关性进行管束换热器设计的初始尺寸提供了足够的信心,随后通过针对特定需求应用的计算流体动力学分析预测了热流体性能。

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