自然通风太阳能烟囱-空气-土壤混合系统分析

IF 0.8 Q3 ENGINEERING, MULTIDISCIPLINARY International Journal of Engineering Research in Africa Pub Date : 2023-09-12 DOI:10.4028/p-3elgvg
Billal Belfegas, Tahar Tayebi, Salah Larbi
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引用次数: 0

摘要

目前的研究着眼于一种混合被动冷却系统,该系统将太阳能烟囱与通常称为加拿大井的地对空热交换器(EAHE)结合在一起。在不同的辐射热流密度下进行了大量的实验和数值测试,以评估其冷却房间的能力。玻璃温度、壁面温度、空气流动平均温度、每小时空气交换速率(ACH)、出口气流速度和空气质量流速通过实验和数值确定,并根据先前发表的实验和分析工作进行验证。研究发现,烟囱的运行与辐射强度有关。EAHE通过改善与太阳能烟囱的交换,降低了室内温度。通过对不同辐射强度下的实验数据和数值数据的比较,得出地下换热器管径d = 0.04m是系统正常运行的最佳管径。我们的系统的效率随着辐射的增加而增加,引起吸收器温度的增加,从而影响烟囱内的空气温度。
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Analysis of a Hybrid System Solar Chimney-Air Soil Heat Exchanger for Natural Ventilation
The current study looks at a hybrid passive cooling system that combines a solar chimney with an earth-to-air heat exchanger (EAHE) usually called Canadian Well. Numerous experimental and numerical examinations with various applied radiation heat fluxes were carried out to evaluate its ability to cool a room. Glass temperature, wall temperature, air flow mean temperature, hourly rate of air exchange (ACH), outlet airflow velocity, and rate of air mass flow were determined experimentally and numerically, and validated against previously published experimental and analytical works. It was found that the chimney's operation is dependent on the radiation intensity. The EAHE has reduced the room's temperature by improving exchanges with the solar chimney. The comparison of experimental and numerical data for different radiation intensities reveals that the best diameter of the tube of the underground heat exchanger for the proper operation of our system is d = 0.04m. The efficiency of our system increases as the radiation increases, causing an increase in the temperature of the absorber, which influences the air temperature in the chimney.
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来源期刊
CiteScore
1.80
自引率
14.30%
发文量
62
期刊介绍: "International Journal of Engineering Research in Africa" is a peer-reviewed journal which is devoted to the publication of original scientific articles on research and development of engineering systems carried out in Africa and worldwide. We publish stand-alone papers by individual authors. The articles should be related to theoretical research or be based on practical study. Articles which are not from Africa should have the potential of contributing to its progress and development.
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