首页> 外文期刊>Energies >Application of Breathing Architectural Members to the Natural Ventilation of a Passive Solar House
【24h】

Application of Breathing Architectural Members to the Natural Ventilation of a Passive Solar House

机译:呼吸建筑构件在被动式太阳能房屋自然通风中的应用

获取原文
       

摘要

The efficient operation of a passive solar house requires an efficient ventilation system to prevent the loss of energy and provide the required ventilation rates. This paper proposes the use of “breathing architectural members” (BAMs) as passive natural ventilation devices to achieve much improved ventilation and insulation performance compared to mechanical ventilation. Considering the importance of evaluating the ventilation and insulation performances of the members, we also propose numerical models for predicting the heat and air movements afforded by the members. The numerical model was validated by comparison with experimental results. The effectiveness of the BAMs was also verified by installation in houses located in an area with warm climate. For this purpose, chamber experiments were performed using samples of the BAMs, as well as numerical simulations to assess natural ventilation and heat load. The main findings of the study are as follows: (1) the one-dimensional chamber experiments confirmed the validity of the numerical models for predicting the heat and air movements afforded by the BAMs. Comparison of the experimental and calculated values for the temperature of air that flowed into the room from outside revealed a difference of less than 5%; (2) observations of the case studies in which BAMs were installed in the ceilings and exterior walls of Tokyo model houses revealed good annual ventilation and energy-saving effects. When BAMs with an opening area per unit area of A = 0.002 m 2 /m 2 were applied to three surfaces, the required ventilation rate was 0.5 ACH (air changes per hour), and this was achieved consistently. Compared to a house with general insulation and conventional mechanical ventilation, heating load was reduced by 15.3%–40.2% depending on the BAM installation points and the differing areas of the house models.
机译:被动式太阳能房屋的有效运行需要有效的通风系统,以防止能量损失并提供所需的通风率。本文建议使用“呼吸建筑构件”(BAM)作为被动自然通风设备,以实现与机械通风相比大大改善的通风和隔热性能。考虑到评估构件的通风和隔热性能的重要性,我们还提出了用于预测构件所提供的热量和空气运动的数值模型。通过与实验结果进行比较验证了该数值模型。 BAM的有效性也通过安装在气候温暖地区的房屋中得到了验证。为此,使用BAM的样品进行室内试验,并进行数值模拟以评估自然通风和热负荷。研究的主要发现如下:(1)一维腔室实验证实了数值模型在预测BAM提供的热量和空气运动方面的有效性。从外部流入房间的空气温度的实验值和计算值的比较表明,相差不到5%; (2)对在东京样板房的天花板和外墙上安装BAM的案例研究的观察表明,年度通风和节能效果良好。当将每单位面积的开口面积为A = 0.002 m 2 / m 2的BAM应用于三个表面时,所需的通风速率为0.5 ACH(每小时换气),并且可以始终如一地实现。与具有一般绝缘和常规机械通风的房屋相比,根据BAM安装点和房屋模型的不同区域,热负荷减少了15.3%–40.2%。

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