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A field study on thermal comfort and air-conditioning energy use in an office building in Guangzhou

机译:广州某办公楼热舒适性和空调能耗的实地研究

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A long term field study was conducted in an office building in Guangzhou, which is located in the Hot Summer and Warm Winter climate zone of China. The study covered three seasons - summer, autumn, and winter. Physical environmental parameters were continuously recorded, while office workers filled in thermal comfort related questionnaires once a week. In summer, cooling was provided to the investigated rooms with relatively high setting temperatures. The neutral temperature of occupants was 26.8 degrees C, and the upper limit of the acceptable temperature range was 30.4 degrees C. Unless the indoor temperature was higher than 29 degrees C, more than 90% of people could accept the thermal conditions, which proved the adaptation to warm environment of local people. At a same outdoor temperature level, higher indoor temperature resulted in less energy consumption through air conditioning system in summer. Thus, the temperature of air-conditioning in office buildings in hot climates could be set to a higher level than it usually was, so that air conditioning energy could be saved while occupants' comfort won't be sacrificed. In autumn and winter, no heating or cooling was provided to the investigated rooms, and the occupants' neutral temperatures in the two seasons were 25.8 degrees C and 23.3 degrees C respectively. Compared to the PMV/PPD based evaluation method in ASHRAE 55 standard, the adaptive thermal comfort model based method fits better with the occupants' subjective thermal acceptance. (C) 2018 Elsevier B.V. All rights reserved.
机译:在广州的一栋办公楼进行了长期的现场研究,该办公楼位于中国炎热的夏季和冬季的温暖气候区。该研究涵盖了三个季节-夏季,秋季和冬季。连续记录物理环境参数,而上班族每周一次填写与热舒适性相关的调查表。在夏季,以较高的设定温度为被调查的房间提供制冷。乘员的中性温度为26.8摄氏度,可接受温度范围的上限为30.4摄氏度。除非室内温度高于29摄氏度,否则超过90%的人可以接受热条件,这证明了适应当地人的温暖环境。在相同的室外温度水平下,较高的室内温度可在夏季通过空调系统减少能耗。因此,可以将炎热气候下办公大楼的空调温度设置为比通常更高的水平,从而可以节省空调能源,同时又不牺牲乘员的舒适度。在秋季和冬季,没有为被调查的房间提供暖气或制冷,两个季节的乘员中性温度分别为25.8摄氏度和23.3摄氏度。与ASHRAE 55标准中基于PMV / PPD的评估方法相比,基于自适应热舒适模型的方法更适合居住者的主观热接受。 (C)2018 Elsevier B.V.保留所有权利。

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