首页> 外文期刊>Solar Energy >Solar chimney combined with earth to-air heat exchanger for passive cooling of residential buildings in hot areas
【24h】

Solar chimney combined with earth to-air heat exchanger for passive cooling of residential buildings in hot areas

机译:太阳能烟囱与地球到空气换热器相结合,用于热区住宅楼的被动冷却

获取原文
获取原文并翻译 | 示例
       

摘要

In this study, a novel interrelationship between the ventilation rate and the solar chimney design parameters, EAHE geometrical specifications, pressure drop, and climatic conditions in the hot arid area was presented based on experimental and numerical comprehensive investigations. This new correlation simplified designing and optimizing of the passive cooling/heating and ventilation system. Moreover, this correlation was used in a case study of passive cooling/heating and ventilation of a two-stories residential building in Egypt by TRNSYS simulation. The indoor operative air temperatures, heating and cooling loads, thermal comfort conditions, energy consumptions/savings, and CO2 emission savings were calculated and analyzed. Two cases were simulated and compared with the basic-case. In case 1, the basic-case combined with the solar chimney and EAHE. Case 2 had a hybrid passive and active ventilation, which included case 1 equipped with electrical fans that continued operating for 24 h. Finally, an economic study was conducted to calculate the payback period and discount payback period for the construction of such a system using the local Egyptian market equipment. The basic case results show that the zonal temperature was more than the ambient temperature yearly, and in summer, the indoor temperature exceeded the surrounding temperature by 5-6 degrees C. Using the proposed system in case 1 and case 2 attained a zonal temperature around 5 degrees C and 9 degrees C less than the ambient temperature in the summer season, respectively. However, the total annual electrical energy and CO2 emission savings were 42.9 kWh/m(2)/year and 4.545 tons/year, respectively, in case 2. Finally, the simple payback period was 5.4 years, and the discount payback period was 6.8 years.
机译:在本研究中,基于实验和数值综合调查,提出了通风率和太阳烟囱设计参数,EAHE几何规范,压降和气候条件之间的新型相互关系。这种新的相关性简化设计和优化被动冷却/加热和通风系统。此外,在Trnsys仿真中用于通过TRNSYS仿真在埃及的两层住宅建筑的被动冷却/加热和通风的情况下使用这种相关性。计算和分析室内携带的空气温度,加热和冷却载荷,热舒适条件,能量消耗/节省和CO2排放量。模拟两种情况并与基本情况进行比较。在案例1中,基本情况与太阳能烟囱和eahe相结合。案例2具有混合动力量的无源和主动通风,包括箱体1,该案例1配备了电气风扇,该风扇继续运行24小时。最后,进行了经济研究,以计算使用当地埃及市场设备建造此类系统的投资回收期和折扣投资回收期。基本情况结果表明,局部温度大于环境温度,在夏季,室内温度超过周围温度5-6摄氏度。使用该系统在1例中使用所提出的系统和案例2达到了一个区域温度分别比夏季的环境温度低5℃和9摄氏度。但是,总年度电能和二氧化碳排放储蓄分别为42.9千瓦时/米(2)/年,分别为4.545吨/年,以至于2.最后,简单的投资回收期为5.4岁,折扣投资回收期为6.8年。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号