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首页> 外文期刊>Sustainable Energy Technologies and Assessments >Assessment of an earth-air heat exchanger (EAHE) system for residential buildings in warm-summer Mediterranean climate
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Assessment of an earth-air heat exchanger (EAHE) system for residential buildings in warm-summer Mediterranean climate

机译:地中海夏季温暖气候下住宅建筑的地热热交换器(EAHE)系统评估

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摘要

Open-loop earth-air heat exchangers (EAHE) can be used as a passive contribution to reduce the energy demand of buildings for heating and cooling, by providing a thermal pre-conditioning of the required ventilation air. This paper aims to numerically assess the influence of three parameters on the overall thermal performance of an EAHE system for residential buildings in warm-summer Mediterranean climate: spacing between pipes, pipes diameter and flowing air velocity. ANSYS-CFX (R) was used to simulate the EAHE transient behaviour during heating and cooling operation modes, and to evaluate the influence of each parameter on the outlet air temperature and soil-air heat transfer rate. The numerical results were validated against experimental data and compared with previously obtained analytical results. It was concluded that for a certain pipe diameter and distance between adjacent pipes, the higher the air velocity the lower the thermal performance of the system, mainly for cooling. Results also showed that for a certain air velocity and pipe diameter, the distance between pipes can be reduced from 1.0 m to 0.5 m without compromising the EAHE performance, thus allowing a reduction of the land area needed for the EAHE pipes up to ca. 50%.
机译:通过提供所需通风空气的热预处理,开环地球空气热交换器(EAHE)可以作为被动贡献来减少建筑物用于供暖和制冷的能源需求。本文旨在通过数值评估三个参数对地中海夏季炎热气候下住宅建筑EAHE系统整体热性能的影响:管道间距,管道直径和空气流速。 ANSYS-CFX(R)用于模拟制热和制冷运行模式下的EAHE瞬态行为,并评估每个参数对出口空气温度和土壤-空气传热速率的影响。数值结果已针对实验数据进行了验证,并与先前获得的分析结果进行了比较。结论是,对于一定的管道直径和相邻管道之间的距离,空气速度越高,系统的热性能越低,主要用于冷却。结果还表明,对于一定的风速和管径,在不影响EAHE性能的前提下,管之间的距离可以从1.0 m减小到0.5 m,从而可以将EAHE管所需的占地面积减少到大约2,000毫米。 50%。

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