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3D computational fluid dynamics simulation of a 3-fluid liquid-to-air membrane energy exchanger (LAMEE)

机译:3D计算流体动力学模拟3流体液压膜能量交换机(Lamee)

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摘要

In this article, a 3-fluid liquid-to-air membrane energy exchanger (LAMEE) prototype has been modeled using 3D computational fluid dynamics (CFD) technique. Applying advanced CFD simulation along with UDF (User Defined Function) and UDS (User Defined Scalar) external computer programs are major efforts of the present study which have overcome some computational restrictions of conventional numerical simulation software. Therefore, additional equations of mass and energy transfer are accompanied with fundamental governing equations of Newtonian fluid flow to explore the complexity of numerical analysis. The rates of conjugate heat and moisture transfer through the membrane, air and desiccant exit temperatures and the cooling effect of the refrigeration tubes are evaluated and shown in detail. The calculated temperature and humidity ratio at the outlet of the 3-fluid LAMEE agree well with available experimental data. The present CFD simulation reveals the diverse cooling effect of the different refrigeration tubes in the 3-fluid LAME depending on their individual geometrical location. The refrigeration tubes increase the sensible, latent and total effectiveness, moisture removal rate and sensible cooling capacity 72%, 29%, 41%, 13.0 g(v)/h and 8.7 W, respectively. The obtained temperature and humidity ratio contours and flow patterns throughout the 3-fluid LAMEE reveal the mechanisms of dehumidification, cooling and phase change.
机译:在本文中,使用3D计算流体动力学(CFD)技术建模了一种3流体液 - 膜能量交换器(Lamee)原型。应用高级CFD仿真以及UDF(用户定义的功能)和UDS(用户定义的标量)外部计算机程序是本研究的主要努力,该研究已经克服了传统数值模拟软件的一些计算限制。因此,额外的质量和能量转移方程伴随着牛顿流体流动的基本控制方程,以探讨数值分析的复杂性。通过膜,空气和干燥剂出口温度和制冷管的冷却效果进行缀合物热量和水分传递的速率进行了详细地评估和示出。 3流体Lamee的出口时的计算温度和湿度比与可用的实验数据很好。目前的CFD仿真揭示了不同制冷管在3流体跛行中的不同冷却效果,这取决于它们的各个几何位置。制冷管增加了显眼,潜伏和总有效性,水分去除率和明智的冷却能力分别为72%,29%,41%,13.0g(v)/ h和8.7W。在整个3流体覆盖物中获得的温度和湿度比轮廓和流动模式揭示了除湿,冷却和相变的机理。

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