CFD ANALYSIS FOR HEAT TRANSFER AND PRESSURE DROP IN TUBE BUNDLE OF CROSS-FLOW HEAT EXCHANGER

Shrinjoy Sen
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Abstract

In the present work, the preliminary finding of possibilities of heat transfer and pressure drop is reported across the shell and tube arrangement cross-flow heat exchanger. The heat exchanger consists of cold-water flows through the bundle of circular tubes and hot air across the shell. Like in the conventional arrangement, the flow in adjacent rows of tubes is normal to the fluid flow in the shell in the cross-flow arrangement. The three-dimensional turbulent flow region is modelled by employing ANSYS FLUENT 21.0. The standard k-ε model is used to model the turbulence flow. A SIMPLE algorithm scheme is applied to link the pressure and velocity fields inside the domain for air fluids. The heat transfer in the water inside the tubes is represented by a convective boundary condition. The tube flow Reynolds number was fixed at 2200 and the shell flow Reynolds number was varied from 6000 to 10000 in the turbulent zone. The purpose of this paper is to determine temperature reduction and pressure drop across the tube bundle. The simulation will predict the temperature of the airstream at the heat exchanger exit and the pressure drop. The results indicated that there is a significant amount of temperature drop in the air that releases the heat due to forced convection and temperature drop continues in the turbulent region of the incoming fluid.
交叉流换热器管束传热与压降的CFD分析
本文对管壳式交叉流换热器的传热和压降的可能性进行了初步研究。热交换器由流经环形管束的冷水流和穿过外壳的热空气组成。与常规布置一样,横流布置中相邻排管内的流动与壳体内流体的流动是垂直的。采用ANSYS FLUENT 21.0软件对三维湍流区域进行建模。采用标准的k-ε模型来模拟湍流流动。采用一种简单的算法方案来连接空气流体的压力场和速度场。管内水的换热用对流边界条件表示。湍流区管流雷诺数固定为2200,壳流雷诺数在6000 ~ 10000之间变化。本文的目的是确定整个管束的温度降低和压降。模拟将预测换热器出口气流的温度和压降。结果表明,在强制对流释放热量的空气中存在大量的温度下降,并且在进入流体的湍流区温度下降持续。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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