凹坑式换热器通道内单相流体流动的数值分析与实验验证

Urban Močnik, B. Blagojevic, S. Muhič
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引用次数: 3

摘要

一种具有凹痕图案热板的板式换热器,具有大量的凹痕。凹窝的形状决定了板式换热器的特性。尽管这种换热器由于其有益的特性而越来越受欢迎,但对这种通道的流动特性的了解却很少。了解这种通道内部的流动情况对于新产品的成功和高效开发至关重要。本文采用计算流体力学和室内实验相结合的方法研究了波纹板式换热器内单相水流的流动。采用增强壁面处理功能的Realizable -和- SST两种湍流模型进行了数值分析。与实验室测量结果相比,第一个预测的压降略小,第二个预测的压降略大。我们的研究发现,尽管流体的速度相对较低,但由于其形状,通道内会发生湍流。我们还发现在微型板式换热器的通道中存在两种不同的流动形式。第一种状态是主导传热的状态,第二种状态是在钎焊点后面出现再循环区,这减少了传热的表面。第二个区域的大小不随所考虑的体积中流体的速度而显著改变。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Numerical Analysis with Experimental Validation of Single-Phase Fluid Flow in a Dimple Pattern Heat Exchanger Channel
A plate heat exchanger with a dimple pattern heat plate has a large number of dimples. The shape of dimples defines the characteristics of the plate heat exchanger. Although such heat exchangers have become increasingly popular due to their beneficial characteristics, knowledge of the flow characteristics in such kind of channel is poor. A good knowledge of the flow conditions inside of such channel is crucial for the successful and efficient development of new products. In this paper single-phase water flow in dimple pattern plate heat exchanger was investigated with application of computational fluid dynamics and laboratory experiments. Numerical analysis was performed with two turbulence models, Realizable - with enhanced wall treatment function and - SST. The first predicts a slightly smaller pressure drop and the second slightly larger compared to the results of laboratory measurements. Our research found that despite the relatively low velocity of the fluid, turbulent flow occurs in the channel due to its shape. We also found that there are two different flow regimes in the micro plate heat exchanger channel. The first regime is the regime that dominates the heat transfer, and the second is the regime where a recirculation zone appears behind the brazing point, which reduces the surface for heat transfer. The size of the second regime does not change significantly with the velocity of the fluid in the volume considered.
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