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首页> 外文期刊>International Journal of Heat and Mass Transfer >Thermal enhancement in a flat-plate solar water collector by flow pulsation and metal-foam blocks
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Thermal enhancement in a flat-plate solar water collector by flow pulsation and metal-foam blocks

机译:通过流动脉动和金属泡沫块增强平板太阳能集热器的热量

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摘要

This study presents a numerical analysis of forced pulsating convection flow in a parallel-plate channel of solar water collector mounted with multiple metal-foam blocks. Both transient Darcy-Brinkman-Forchheimer flow model and two-equation energy model based on local thermal non-equilibrium (LTNE) are used to characterize the thermo-flow fields inside the porous regions. Solution of the coupled governing equations for the fluid/porous composite system is obtained by utilizing a control-volume method through the use of a stream function-vorticity approach. This study details the effects of variations in the Darcy number, pulsation frequency and amplitude, Reynolds number, and porosity, to illustrate important fundamental and practical results. The results show that the periodic alteration in the structure of recirculation flows, caused by metal-foam blocks and flow pulsation, will significantly enhance the heat transfer rate on heat source surface. For fixed Re, the findings show that an increase in the solid-fluid interfacial heat exchange results in a more obvious local thermal equilibrium (LTE) phenomenon, and a larger heat transfer augmentation of solar thermal collector. Besides, two useful correlated equations to predict Nu_m are proposed.
机译:这项研究提出了在装有多个金属泡沫块的太阳能集水器的平行板通道中强迫脉动对流的数值分析。瞬态Darcy-Brinkman-Forchheimer流动模型和基于局部热非平衡(LTNE)的两方程能量模型均用于表征多孔区域内部的热流场。流体/多孔复合系统耦合控制方程的解是通过利用流量函数-涡度方法利用控制量方法获得的。这项研究详细介绍了达西数,脉动频率和幅度,雷诺数和孔隙率变化的影响,以说明重要的基本和实际结果。结果表明,由金属泡沫块和流动脉动引起的循环流结构的周期性变化将显着提高热源表面的传热速率。对于固定的Re,研究结果表明,固液界面热交换的增加会导致更明显的局部热平衡(LTE)现象,以及太阳能集热器的更大的传热增加。此外,提出了两个有用的相关方程来预测Nu_m。

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