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Impact assessment of air velocity on thermal comfort in composite climate of India

机译:对印度复合气候热舒适性的影响评价

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摘要

Thermal adaptation plays crucial role in energy efficient operation of buildings without compromising with human thermal comfort. Elevated air velocity is commonly desired to restore comfort requirements at higher temperatures especially in NV and MM buildings located in tropical countries like India. This article is the systematic field study comprising a total of 4872 responses (1874 from NV buildings and 2998 from MM buildings) collected over a period of six years (2011-2017) during summer and moderate seasons under composite climate of Jaipur (India). Subjects' responses and concurrent field measurements were utilized to investigate the impact of elevated air velocity on indoor thermal comfort. This research is a first attempt of its kind that deals with graphical quantification of air velocity required to offset increased temperature and follows similar approach as presented in ISO 7730. A redefined air velocity offset chart for Indian subjects working in office buildings has been proposed using the evidences (i.e. comfort expectations, preferences and local adaptation) collected from actual field observations. Thus, the offset in comfort operative temperature from base value of 28.04 degrees C and 26.93 degrees C for NV and MM buildings were obtained to be 4.78 degrees C and 4.24 degrees C, respectively for the elevated air velocity of 1.5 m/s.
机译:热适应在建筑物的节能运行中起着至关重要的作用,而不会影响人类热舒适度。通常希望升高的空气速度恢复较高温度的舒适要求,特别是在印度的热带国家的NV和MM建筑物上。本文是夏季和中等季节(印度)下的六年(2011-2017)期间,总共4872次响应(从NV建筑物的1874年,来自MM建筑物的2998人)的系统现场研究。受试者的反应和并发现场测量用于研究升高的空气速度对室内热舒适度的影响。本研究是其类型的第一次尝试,该尝试涉及抵消温度所需的空气速度的图形定量,并遵循ISO 7730中所示的类似方法。使用了在办公大楼中工作的印度受试者的重新定义空气速度偏移图。从实际场观测中收集的证据(即舒适期望,偏好和局部适应)。因此,从基部值为28.04℃和26.93℃的舒适操作温度的偏移被获得为4.78℃和4.24℃,分别为1.5m / s的升高空气速度。

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