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Innovative low-energy evaporative cooling system for buildings: study of the porous evaporator wall

机译:建筑物的创新型低能耗蒸发冷却系统:多孔蒸发器壁的研究

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To face the current increase of building cooling demand and the concerns related to climate changes, an energy-efficient evaporative cooling system using porous material has been developed. This article presents the innovative cooling system and a detailed hygrothermal analysis of its main element: the porous evaporator. A mathematical model and an experimental set-up are presented, which enable to determine the suitable material properties for the evaporator and its impact on the overall cooling system performance, focusing on the optimal use of both energy and water. A good agreement is observed between numerical and experimental results, and the evaporative cooling power is estimated from 12 to 72 W/m(2) of evaporator wall, depending on the evaporator characteristics. A parametric analysis is conducted to select the best material for the evaporative cooling system. An intrinsic permeability of the material of 4 x 10(-17) m(2) is recommended for this new cooling system.
机译:为了应对当前建筑物制冷需求的增长以及与气候变化有关的担忧,已经开发了使用多孔材料的节能蒸发制冷系统。本文介绍了创新的冷却系统及其主要元件:多孔蒸发器的详细湿热分析。提出了一个数学模型和一个实验装置,可以确定蒸发器的合适材料特性及其对整个冷却系统性能的影响,重点是能源和水的最佳利用。在数值和实验结果之间观察到很好的一致性,根据蒸发器的特性,蒸发器的冷却功率估计为蒸发器壁的12到72 W / m(2)。进行参数分析以选择用于蒸发冷却系统的最佳材料。对于这种新的冷却系统,建议材料的固有渗透率为4 x 10(-17)m(2)。

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