首页> 外文期刊>International Journal of Heat and Mass Transfer >An experimental, computational and flow visualization study on the air-side thermal and hydraulic performance of louvered fin and round tube heat exchangers
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An experimental, computational and flow visualization study on the air-side thermal and hydraulic performance of louvered fin and round tube heat exchangers

机译:百叶窗式翅片和圆管换热器在空气侧的热力和水力性能的实验,计算和流动可视化研究

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The aim of this study is to determine heat transfer and pressure drop characteristics in different louvered fin geometries for manufacturing of commercial louvered fin and round tube heat exchangers. Numerical simulations were carried out for various louver angles, louver lengths (pitches), fin pitches and frontal air velocities. The heat transfer and pressure drop characteristics of the louvered fin and round tube heat exchangers, Colburn and friction factors, were respectively normalized with Colburn and friction factors of the flat plate fin and round tube heat exchangers operating under the same conditions and they were presented as the relative Colburn factorj∗and the relative friction factorf∗. Thermal & hydraulic performance was presented asJF∗.Temperature and local Nusselt number contours, and streamline patterns were provided to reveal the mechanisms behind the heat transfer enhancement. Among different heat exchangers for which heat transfer and pressure drop characteristics were obtained, one was chosen to manufacture a real size heat exchanger. Flow visualization studies were also conducted with a PIV system in an open water channel to determine whether the flow structure is louvered directed or not. The louvered fin heat exchanger tested in the PIV system was a five times scaled up model of the real size louvered fin heat exchanger and made from a transparent plexiglas material. PIV results were presented and evaluated based on streamlines and velocity vectors. Furthermore, a numerical analysis was performed using exactly the same dimensions and conditions of the model tested in the PIV system. The comparison between numerical and experimental results was done to validate the numerical model. Consequently, the performance of the fabricated real size heat exchanger was tested at different air velocities in a wind tunnel in a conditioned room. The experimental results were compared with numerical analyses and found to be compatible with each other. Finally, thermal and hydraulic performance of the louvered fin and round tube heat exchanger was compared with a wavy fin and round tube heat exchanger with identical size and specifications. It was found that the thermal and hydraulic performance of the louvered fin and round tube heat exchanger is higher than that of the wavy fin and round tube heat exchanger. The Colburn factorj, friction factorfandJFof the louvered fin and round tube heat exchanger are higher about 16.8–7%, 19.9–8.2% and 10–4.3% than that of the wavy fin and round tube heat exchanger depending on the Reynolds number, respectively.
机译:这项研究的目的是确定用于制造商业百叶窗式翅片和圆管热交换器的不同百叶窗式翅片几何形状的传​​热和压降特性。对各种百叶窗角度,百叶窗长度(节距),鳍距和正面风速进行了数值模拟。百叶窗式翅片和圆管式换热器的传热和压降特性Colburn和摩擦系数分别用在相同条件下运行的平板翅片和圆管式换热器的Colburn和摩擦系数进行归一化,分别表示为相对的科尔本因数j ∗和相对摩擦因数f ∗。热力和水力性能表示为JF *。温度和局部Nusselt数等值线,以及提供的流线型揭示了传热增强的机理。在获得传热和压降特性的不同热交换器中,选择了一种制造实际尺寸的热交换器。还使用PIV系统在开放水道中进行流量可视化研究,以确定流量结构是否是百叶窗式。在PIV系统中测试的百叶窗式翅片换热器是实际尺寸百叶窗式翅片换热器的五倍放大模型,由透明的有机玻璃材料制成。根据流线和速度矢量显示并评估了PIV结果。此外,使用与在PIV系统中测试的模型完全相同的尺寸和条件进行了数值分析。数值与实验结果进行了比较,以验证数值模型。因此,在经过调节的房间的风洞中以不同的风速测试了实际尺寸的热交换器的性能。将实验结果与数值分析进行比较,发现它们相互兼容。最后,将百叶窗式翅片和圆管式换热器与具有相同尺寸和规格的波浪形翅片和圆管式换热器的热和水力性能进行了比较。发现百叶窗翅片和圆管热交换器的热和水力性能比波浪翅片和圆管热交换器的高。百叶窗式翅片和圆管式换热器的Colburn系数j,摩擦因数f和JF分别比波纹状翅片和圆管式换热器的雷诺数高约16.8–7%,19.9–8.2%和10-4.3%。

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