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Cooling Performance and Indoor Air Quality Characteristics of an Earth Air Tunnel Cooled Building

机译:土风隧道冷却建筑的制冷性能与室内空气质量特征

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Most of the modern air-conditioned buildings have a low fresh air supply to reduce energy consumption. This results in a poor indoor air quality (IAQ) and a 30-200% higher sick building syndrome than that of a naturally ventilated building. Alternatively, energy-efficient and eco-friendly earth air tunnel system (EATS) provides a good IAQ because of the sufficient fresh air supply. This paper presents the cooling performance and IAQ characteristics of a sparsely occupied building supported with an EATS. The building was monitored for the concentration of fine and coarse particulate matter (PM), carbon dioxide (CO2) and carbon monoxide (CO), temperature distribution and relative humidity (RH) in September and October 2012. The average PM10, PM2.5 and PM1 concentrations were 6.77, 6.11 and 3.17 mu g/m(3) respectively when the EATS was operated. These are marginally higher compared to that when the EATS was not operated. The average indoor CO2 level, air temperature and RH were 418 ppm, 26.5 A degrees C and 58.2% respectively when the EATS was operated. The diurnal indoor CO2 trend relates well with photosynthetic and anthropogenic activities in and around the building. The CO2 and PM concentrations correlate well with indoor air temperature and RH with a time lag.
机译:大多数现代空调建筑的新鲜空气供应量较低,以减少能源消耗。这导致室内空气质量 (IAQ) 较差,病态建筑综合症比自然通风建筑高出 30-200%。另外,节能环保的土风隧道系统(EATS)由于有足够的新鲜空气供应,可提供良好的室内空气质素。本文介绍了一幢人烟稀少的建筑物的制冷性能和室内空气质素特性。2012 年 9 月和 10 月,对建筑物的细颗粒物和粗颗粒物 (PM)、二氧化碳 (CO2) 和一氧化碳 (CO) 的浓度、温度分布和相对湿度 (RH) 进行了监测。EATS运行时PM10、PM2.5和PM1的平均浓度分别为6.77、6.11和3.17 μ g/m(3)。与未实施EATS时相比,这些数字略高。当EATS运行时,室内平均二氧化碳水平、空气温度和相对湿度分别为418 ppm、26.5 A度C和58.2%。昼夜室内二氧化碳趋势与建筑物内外的光合作用和人为活动密切相关。CO2 和 PM 浓度与室内空气温度和相对湿度密切相关,但存在时间滞后。

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