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A parametric analysis of the cooling performance of vertical earth-air heat exchanger in a subtropical climate

机译:亚热带气候垂直地球热交换器冷却性能的参数分析

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Nearly 30% of global energy is consumed in buildings for heating and cooling. Many researches have been undertaken at finding novel techniques to reduce buildings energy consumption without using any conventional mechanical devices. Earth-air heat exchanger (EAHE) is such a passive cooling technique that is seen to significantly reduce energy consumption. This paper investigates the cooling performance of a vertical EAHE for a subtropical climatic zone through a parametric analysis. A thermal transient model for the vertical EAHE has been developed using ANSYS Fluent to analyze the parametric study. The influence of the key parameters: air velocity, thickness, diameter, depth, length, and material of the pipes on the EAHE cooling performance has been conducted and presented here. This parametric study is viewed as new in a subtropical climate since no such study is found in the literature and its outcome will provide a deeper understanding of the passive cooling system. The cooling performance is considerably affected by pipe diameter, air velocity, and pipe length while no noticeable impact is found for pipe material. The optimal performance contributed to reducing the outlet air temperature up to 8.21 degrees C. (C) 2021 Elsevier Ltd. All rights reserved.
机译:全球能源的近30%是在建筑物加热和冷却消耗。许多研究都在寻找新的技术来降低建筑能耗,而无需使用任何传统的机械设备进行的。地球 - 空气热交换器(EAHE)是这种被动冷却技术,其被看作是显著降低能耗。本文研究了一个亚热带气候区的垂直EAHE的通过一个参数分析的冷却性能。对于垂直EAHE热瞬态模型一直使用ANSYS FLUENT分析参数的研究开发。关键参数的影响:空气速度,厚度,直径,深度,长度和材料上EAHE冷却性能管道的已经进行,此处提供。因为没有这样的研究在文献中找到此参数的研究被视为新的亚热带气候,其成果将提供被动散热系统更深入的了解。而没有显着的影响是发现用于管材料的冷却性能大大受管直径,气流速度,和配管长度。最佳性能有助于减少出口空气温度达8.21摄氏度(C)2021保留Elsevier公司所有权利。

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