...
首页> 外文期刊>Renewable & Sustainable Energy Reviews >Natural ventilation in warm climates: The challenges of thermal comfort, heatwave resilience and indoor air quality
【24h】

Natural ventilation in warm climates: The challenges of thermal comfort, heatwave resilience and indoor air quality

机译:温暖气候的自然通风:热舒适,热波弹性和室内空气质量的挑战

获取原文
获取原文并翻译 | 示例

摘要

In buildings, energy is primarily consumed by mechanical air conditioning systems. Low energy alternatives, such as natural ventilation, are needed. However, they need to be able to cope with increasing heatwaves and pollution, particularly in warm climates. This review paper looked at the ability of natural ventilation to provide adequate thermal comfort, resilience against heatwaves, and good Indoor Air Quality in warm climates. Single sided ventilation demonstrates the poorest ability to provide thermal comfort, while cross ventilation highlights better performance in terms of reducing indoor air temperatures compared to outdoor. However, windcatchers and solar chimneys displayed even better performance by producing relatively high ventilation rates. During heatwaves and future climatic scenarios, natural ventilation, by cross-ventilation, was not able to meet internal thermal comfort standards. A potential low energy solution could be combining solar chimneys or windcatchers with water evaporation cooling. A critical synthesis of the literature suggests that these systems can generate high ventilation rates and keep indoor temperatures around 8 degrees C cooler than outdoor temperatures in warm weather (35 degrees C). However, no studies were found testing these systems against future climate scenarios, and further studies are recommended. The literature supported natural ventilation being effective in removing pollution generated indoors due to adequate ventilation rates. However, using unfiltered natural ventilation for areas with high outdoor pollution can increase the indoor deposition of harmful particulate matter. With increasing air pollution, further studies are urgently required to investigate filter enabled natural ventilation, particularly with solar chimney/windcatcher incorporated.
机译:在建筑物中,能量主要由机械空调系统消耗。需要低能量替代品,例如自然通风。然而,他们需要能够应对增加的热浪和污染,特别是在温暖的气候中。该综述纸张看着自然通风能力,提供充足的热舒适性,对散热器的抵御能力,以及温暖气候的良好室内空气质量。单面通风展示了提供热舒适度最贫困的能力,而交叉通风在与室外相比减少室内空气温度方面凸显了更好的性能。然而,卷绕器和太阳能烟囱通过产生相对高的通风率来显示更好的性能。在热浪和未来的气候情景期间,通过交叉通风的自然通风无法满足内部热舒适标准。潜在的低能量解决方案可以与水蒸发冷却结合太阳烟囱或卷绕器。文献的关键合成表明,这些系统可以产生高通风速率,并使室内温度保持在8摄氏度约为8摄氏度(> 35摄氏度)的户外温度。但是,没有发现任何研究,测试这些系统免受未来的气候情景,建议进一步研究。由于通风率足够的通风率,文献支持的自然通风有效地去除室内产生的污染。然而,使用具有高室外污染的区域的未过滤的自然通风可以增加有害颗粒物的室内沉积。随着空气污染的增加,迫切需要进一步研究,以研究能够实现的自然通风,特别是掺入太阳能烟囱/卷发器。

著录项

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