Experimental Study of the Cooling Performance of Trombe Wall with Geothermal Air Tube System

Rania Elghamry, H. Hassan
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Abstract

Energy efficiency in buildings is today a major purpose for energy policy at regional, national and international levels. This energy can considerably reduce with the integrated of passive energy buildings. Therefore, this paper proposed an experimental work to evaluate the effect of integrated geothermal air tube heat exchanger system with the Trombe wall system on cooling and ventilation performance. This study carried out on a building room located in New Borge Alarab city, Egypt. The geothermal air tube heat exchanger used to cool the outside air before entering the room, which extracted inside the room by Trombe wall effect that installed at the room south facade. Tests are performing to evaluate the effect of integrated systems with others. The temperature difference between the inside and outside, airflow in Trombe wall and geothermal system, relative humidity, hourly and daily-ventilated air at different companied systems are measured. From the study, the effect of operating parameters denotes that the effect of temperature difference on the system results in a decrease by integrated geothermal with Trombe wall and airflow rate in Trombe wall increasing. The increase of airflow rate causes good room ventilation. The system indicates that the system indicates that the cooling performance of Trombe wall doubled by coupling geothermal air which decrease the temperature different between outside and inside by 1.2°-3°C.
地热空气管系统对特罗姆墙制冷性能的实验研究
今天,建筑能源效率是区域、国家和国际各级能源政策的一个主要目标。这种能源可以大大减少与被动式能源建筑的整合。因此,本文提出了一项实验工作,以评估地热空气管换热器系统与Trombe墙系统对冷却和通风性能的影响。这项研究是在埃及新博尔赫阿拉伯市的一个建筑房间里进行的。地热管换热器在进入室内前对室外空气进行冷却,通过安装在房间南立面的特伦贝墙效应将室外空气提取到室内。进行测试是为了评估与其他系统集成的效果。测量了室内外温差、Trombe墙和地热系统的气流、相对湿度、不同公司系统每小时和每天的通风量。从研究结果来看,运行参数的影响表明,温差对系统的影响导致综合地热与Trombe壁面的影响减小,Trombe壁面的风量增大。风量的增加使房间通风良好。系统表明,该系统表明,通过耦合地热空气,使特罗姆墙的制冷性能提高了一倍,使内外温差降低了1.2°-3°C。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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