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Environmental Protection by Elevated Indoor Temperature of Air Conditioning System

机译:空调系统室内温度升高对环境保护的影响

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Elevated indoor air temperatures in summer are required by East Asia government for reduction of carbon emission. Significant energy saving with good indoor air quality and thermal comfort within the breathing zone can be achieved by stratum ventilation system in buildings in previous studies. It can be applied for improving energy efficiency and building energy performance for new buildings, as well as existing medium size of air conditioning area. Improving energy efficiency in building is a cost- effective measure to address global warming and local air quality concern. This paper is to investigate the thermal comfort of collegeage Chinese adolescents under conventional mixing and stratum ventilation operated in a confined environmental chamber during the summer of subtropical Hong Kong. Fortyeight subjects wearing 0.57 clo standard clothing were exposed to several different thermal conditions under sedentary activity for 3 hours. The neutral temperatures at conventional mixing and stratum ventilation mode were found to be 24.6 oC and 27.1 oC respectively at supply air flow of 300 l/s (10 air change per hour, ACH) and 24.8 oC and 27.4 oC respectively at supply air flow of 450 l/s (15 ACH). In comparison with mixing ventilation, energy consumptions of stratum ventilation were found to be 11.2% less at 10 ACH and 11.8% less at 15 ACH. Therefore, stratum ventilation can achieve thermal comfort at elevated indoor temperature hence less energy use in the conditioned space. More energy saving in the refrigeration system was also discussed for this stratum ventilation installed in small-to-medium size classroom.
机译:东亚政府要求夏季提高室内空气温度以减少碳排放。在先前的研究中,建筑物中的地层通风系统可以显着节省能源,并在呼吸区域内提供良好的室内空气质量和热舒适性。它可用于提高新建筑以及现有中等大小的空调区域的能效和建筑能效。提高建筑的能效是解决全球变暖和当地空气质量问题的一种经济有效的措施。本文旨在研究在亚热带香港夏季在密闭环境室内进行常规混合和分层通风的中国大学生青少年的热舒适性。穿着0.57克标准服装的48位受试者在久坐活动下暴露于几种不同的热条件下3个小时。在送风量为300 l / s(每小时换气10次,ACH)的送风量下,常规混合模式和地层通风模式下的中性温度分别为24.6 oC和27.1 oC,送风量为300 l / s时分别为24.8 oC和27.4 oC。 450 l / s(15 ACH)。与混合通风相比,在10 ACH时,层通风的能耗降低了11.2%,在15 ACH时,能耗降低了11.8%。因此,地层通风可以在室内温度升高的情况下获得热舒适性,因此在经过调节的空间中使用的能源较少。对于中小型教室中安装的这种分层通风,还讨论了制冷系统中的更多节能措施。

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