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首页> 外文期刊>International Journal for Numerical Methods in Fluids >Correlations of flow maldistribution parameters in an air cooled heat exchanger
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Correlations of flow maldistribution parameters in an air cooled heat exchanger

机译:风冷换热器中流量分布不均的相关性

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The present paper provides correlations of flow maldistribution parameters in air-cooled heat exchangers. The flow field in the inlet header was obtained through the numerical solution of the governing partial differential equations including the conservation equations of mass and momentum in addition to the equations of the turbulence model. The results were obtained for different number of nozzles of 2-4, different inlet flow velocities of 1-2.5m/s and different nozzle geometries in addition to incorporation of a second header. The results are presented in terms of mass flow rate distributions in the tubes of the heat exchanger and their standard deviations. The results indicate that the inlet flow velocity has insignificant influence on maldistribution while the nozzle geometry shape has a slight effect. Also, the results indicate that reducing the nozzle diameter results in an increase in the flow maldistribution. A 25% increase is obtained in the standard deviation as a result of decreasing the diameter by 25%. Increasing the number of nozzles has a significant influence on the maldistribution. A reduction of 62.5% in the standard deviation of the mass flow rate inside the tubes is achieved by increasing the number of nozzles from 2 to 4. The results indicate that incorporating a second header results in a significant reduction in the flow maldistribution. A 50% decrease in the standard deviation is achieved as a result of incorporation of a second header of seven holes. It is also found that the hole-diameter distribution at the exit of the second header has a slight influence on the flow maldistribution. Correlations of the flow maldistribution in terms of the investigated parameters are presented.
机译:本文提供了风冷换热器中流量分配不均的相关性。入口集管中的流场是通过控制偏微分方程的数值解获得的,除了湍流模型方程之外,该方程还包括质量和动量守恒方程。除了并入第二集管外,还针对不同数量的2-4个喷嘴,不同的入口流速1-2.5m / s和不同的喷嘴几何形状获得了结果。结果以换热器管中的质量流量分布及其标准偏差表示。结果表明,入口流速对分布不均影响不大,而喷嘴的几何形状影响不大。而且,结果表明减小喷嘴直径导致流量分配不均的增加。由于直径减小了25%,标准偏差增加了25%。喷嘴数量的增加会对分布不均产生重大影响。通过将喷嘴的数量从2个增加到4个,可将管内质量流量的标准偏差降低62.5%。结果表明,并入第二个集管可显着减少流量分配不均。通过合并第二个七个孔的集管,可将标准偏差降低50%。还发现,第二集管出口处的孔直径分布对流量分布不均造成轻微影响。根据所研究的参数,提出了流量分布不均的相关性。

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