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A three-dimensional numerical study and comparison between the air side model and the air/water side model of a plain fin-and-tube heat exchanger

机译:平面翅片管式换热器的空气侧模型与空气/水侧模型的三维数值研究与比较

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摘要

CFD is becoming an important heat exchanger research technique. It constitutes an inexpensive prediction method, avoiding the need of testing numerous prototypes. Current work in this field is mostly based on air flow models assuming constant temperature of fin-and-tube surface. The purpose of this paper is to present an enhanced model, whose innovation lies in considering additionally the water flow in the tubes and the conduction heat transfer through the fin and tubes, to demonstrate that the neglect of these two phenomena causes a simulation result accuracy reduction. 3-D Numerical simulations were accomplished to compare both an air side and an air/water side model. The influence of Reynolds number, fin pitch, tube diameter, fin length and fin thickness was studied. The exchanger performance was evaluated through two non-dimensional parameters: the air side Nusselt number and a friction factor. It was found that the influence of the five parameters over the mechanical and thermal efficiencies can be well reported using these non-dimensional coefficients. The results from the improved model showed more real temperature contours, with regard to those of the simplified model. Therefore, a higher accuracy of the heat transfer was achieved, yielding better predictions on the exchanger performance.
机译:CFD正在成为重要的热交换器研究技术。它构成了一种廉价的预测方法,从而无需测试大量原型。该领域中的当前工作主要基于假设翅片和管子表面温度恒定的气流模型。本文的目的是提供一个增强的模型,其创新在于另外考虑管中的水流以及通过翅片和管的传导热传递,以证明忽略这两个现象会导致模拟结果精度降低。完成了3-D数值模拟,以比较空气侧模型和空气/水侧模型。研究了雷诺数,翅片间距,管径,翅片长度和翅片厚度的影响。交换器性能通过两个无量纲参数进行评估:空气侧努塞尔数和摩擦系数。发现使用这些无量纲系数可以很好地报告这五个参数对机械效率和热效率的影响。与简化模型相比,改进模型的结果显示了更多真实的温度轮廓。因此,可以实现更高的传热精度,从而可以更好地预测交换器的性能。

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