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Using Upper Extremity Skin Temperatures to Assess Thermal Comfort in Office Buildings in Changsha China

机译:利用上肢皮肤温度评估中国长沙办公楼的热舒适度

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摘要

Existing thermal comfort field studies are mainly focused on the relationship between the indoor physical environment and the thermal comfort. In numerous chamber experiments, physiological parameters were adopted to assess thermal comfort, but the experiments’ conclusions may not represent a realistic thermal environment due to the highly controlled thermal environment and few occupants. This paper focuses on determining the relationships between upper extremity skin temperatures (i.e., finger, wrist, hand and forearm) and the indoor thermal comfort. Also, the applicability of predicting thermal comfort by using upper extremity skin temperatures was explored. Field studies were performed in office buildings equipped with split air-conditioning (SAC) located in the hot summer and cold winter (HSCW) climate zone of China during the summer of 2016. Psychological responses of occupants were recorded and physical and physiological factors were measured simultaneously. Standard effective temperature (SET*) was used to incorporate the effect of humidity and air velocity on thermal comfort. The results indicate that upper extremity skin temperatures are good indicators for predicting thermal sensation, and could be used to assess the thermal comfort in terms of physiological mechanism. In addition, the neutral temperature was 24.7 °C and the upper limit for 80% acceptability was 28.2 °C in SET*.
机译:现有的热舒适性领域研究主要集中在室内物理环境与热舒适性之间的关系。在众多的室内实验中,采用生理参数来评估热舒适度,但是由于高度控制的热环境和很少的乘员,实验的结论可能并不代表现实的热环境。本文着重于确定上肢皮肤温度(即手指,手腕,手和前臂)与室内热舒适度之间的关系。而且,探索了通过使用上肢皮肤温度来预测热舒适度的适用性。于2016年夏季在中国炎热和寒冷的冬天(HSCW)气候带的装有分体式空调(SAC)的办公楼中进行了实地研究。记录了乘员的心理反应并测量了身体和生理因素同时。使用标准有效温度(SET *)来考虑湿度和空气速度对热舒适性的影响。结果表明,上肢皮肤温度是预测热感觉的良好指标,并可用于评估生理机制方面的热舒适度。此外,SET *中的中性温度为24.7°C,80%可接受性的上限为28.2°C。

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