首页> 外文期刊>Solar Energy >PASSIVE VENTILATION SYSTEM THAT INCORPORATES A PITCHED ROOF CONSTRUCTED OF BREATHING WALLS FOR USE IN A PASSIVE SOLAR HOUSE
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PASSIVE VENTILATION SYSTEM THAT INCORPORATES A PITCHED ROOF CONSTRUCTED OF BREATHING WALLS FOR USE IN A PASSIVE SOLAR HOUSE

机译:被动通风系统,其中包括由通风墙构成的斜屋顶,用于被动式太阳能房屋

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摘要

This paper describes a natural ventilation system that incorporates a pitched roof constructed of Breathing Walls for use in a passive solar house. The Breathing Wall is expected to solve the inherent contradiction that exists for a building that is open to the outside air, in which a balance in the indoor air/moisture conditions is maintained, but energy efficiency is low. In other words, the use of Breathing Walls can provide a healthy and comfortable environment at higher energy efficiency in a passive solar house. In the present study, we experimentally evaluate the effects of roof pitch on the heat recovery capability and the occurrence of internal condensation within the Breathing Wall, using a simulation of the ventilation rate of a natural ventilation system. The effective opening area per unit area required to provide sufficient air change capability, i.e., 0.5 ACH, even for zero wind velocity, was determined to be 10 and 5 cm~2/m~2 for pitches of 26.5° (Pitch 1) and 45° (Pitch 2), respectively. Furthermore, at the maximum predicted wind velocity of 10 m/s for Pitch 1/2, even though the outdoor air temperature is 5℃, the temperature of the indoor-most air reaches 13.2/12.5℃, corresponding to a heat flux of ≈ 128/158 W/m~2. No internal condensation occurs, even at the maximum pressure differential, which corresponds to a wind velocity of 10 m/s across the wall of the Pitch 1/2 model, when a Breathing Wall having an opening area per unit area of 11.3 cm~2/m~2 was installed in the ventilation system.
机译:本文介绍了一种自然通风系统,该系统结合了由呼吸墙构成的斜屋顶,用于被动式太阳能房屋。呼吸墙有望解决建筑物向外界开放的固有矛盾,在建筑物中室内空气/水分条件保持平衡,但能源效率低。换句话说,使用呼吸墙可以在被动式太阳能房屋中以更高的能源效率提供健康舒适的环境。在本研究中,我们通过模拟自然通风系统的通风率,实验性地评估了屋顶间距对热回收能力和呼吸墙内部凝结的影响。对于26.5°的螺距(螺距1),即使对于零风速,也要提供足够的换气能力(即0.5 ACH,甚至是0.5 ACH)所需的每单位面积有效开口面积确定为10和5 cm〜2 / m〜2。分别为45°(音高2)。此外,在1/2节距的最大预测风速为10 m / s的情况下,即使室外空气温度为5℃,最室内空气的温度也达到13.2 / 12.5℃,对应于128/158 W / m〜2。当呼吸壁每单位面积的开口面积为11.3 cm〜2时,即使在最大压差下也不会发生内部冷凝,这相当于在Pitch 1/2模型壁上的风速为10 m / s。 / m〜2安装在通风系统中。

著录项

  • 来源
    《Solar Energy》 |1998年第6期|p.189-195|共7页
  • 作者

    SEONGHWAN YOON; AKIRA HOYANO;

  • 作者单位
  • 收录信息 美国《科学引文索引》(SCI);美国《工程索引》(EI);美国《生物学医学文摘》(MEDLINE);
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 太阳能技术;
  • 关键词

  • 入库时间 2022-08-18 00:58:58

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