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Influence of outdoor and indoor microclimate on human thermal adaptation in winter in the severe cold area, China

机译:严寒地区冬季室内外微气候对人体热适应的影响

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摘要

Harbin is in the severe cold climate zone in China, where the outdoor air temperature is low in winter. The central heating system without terminal control is used in buildings in the area. A field study on thermal comfort was conducted in four types of buildings in Harbin during a same winter. Due to the broad range of outdoor air temperatures and the long heating period in Harbin winter, the heating period was divided into three stages. We focused on indoor thermal environment and human adaptability during the three phases. Some environmental parameters were measured together with subjective investigation, and totally 1747 valid questionnaires were collected. The results show that indoor temperature over 24 degrees C often occurred in the buildings during the heating period. The occupants felt warm but they expected the indoor temperature no change. The participants were more sensitive to temperature variations at the early heating phase (EH). They adapted to warm environment gradually from EH to LH. The occupants would open windows when indoor temperatures were high. Great energy savings could be achieved by reducing indoor air temperature in winter. The neutral temperatures were lower than the indoor air temperatures in the buildings, indicating that indoor temperatures were sometimes overheated. The indoor temperature should be reduced to the lower limit at EH and increased gradually in winter. The neutral temperatures in offices and university classrooms were lower than those in apartments and dormitories. Therefore, lower indoor air temperatures are recommended in design of public buildings for space heating.
机译:哈尔滨市处于中国严寒地区,冬季室外气温较低。该区域的建筑物使用没有终端控制的中央供暖系统。在同一冬天,对哈尔滨的四种类型的建筑物进行了热舒适性的现场研究。由于哈尔滨市冬季室外气温变化范围广,采暖期长,采暖期分为三个阶段。在这三个阶段中,我们专注于室内热环境和人类适应性。与主观调查一起测量了一些环境参数,共收集了1747份有效问卷。结果表明,供暖期间建筑物中的室内温度经常超过24摄氏度。居住者感到温暖,但他们期望室内温度没有变化。参与者对早期加热阶段(EH)的温度变化更为敏感。从EH到LH,它们逐渐适应了温暖的环境。当室内温度很高时,居住者会打开窗户。冬季降低室内空气温度可以节省大量能源。中性温度低于建筑物中的室内空气温度,表明室内温度有时会过热。室内温度应降低到EH的下限,并在冬季逐渐升高。办公室和大学教室的中性温度低于公寓和宿舍的中性温度。因此,在公共建筑的空间供暖设计中,建议降低室内空气温度。

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