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青海乡域中小学教室内学生冬季的热舒适性

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青海乡域中小学教室内学生冬季的热舒适性 第39第1期 2017年2月
土木建筑与环境工程
Journal of Civil,Architectural &. Environmental Engineering
doi:10.11835/j.issn. 1674-4764. 2017.01. 006
Vol. 39 No. 1 Feb.2017
青海乡域中小学教室内学生冬季的热舒适性
王登甲",王晗旭“,刘艳峰",蒋婧",刘加平日(西安建筑科技大学a.环境学院;b.建筑学院,西安710055)
摘要:对青海乡域4所典型中小学校10间教室冬季室内温湿度、风速、黑球温度等热环境参数进行现场测试,同时对420余名青少年学生的衣着情况、热感觉评价等进行了主观问卷调查。对测试和调查结果进行统计分析,得到实测和预测热中性温度分别为13.8和14.5C,热期望温度为16.2 C,90%的学生感到满意的舒适温度范国为15.8~18.7C。在当地寒冷的气候条件、学生衣着习惯、心理期望及生理特性等因素影响下,中小学生形成了对偏冷环境的适应性,提出可利用适应性 PMV模型(aPMV)对中小学生平均热感觉进行准确预测。可为乡域中小学教室冬季热环境设计提供依据。
关键词:热舒适:热环境:MTS:aPMV
中图分类号:TU119
文献标志码:A
文章编号:1674-4764(2017)01-0032-06
Thermalcomfortofstudentsinruralprimaryandsecondary
schools in winterinQinghaiprovince
WangDengjia,WangHanxu,LiuYanfeng",Jiang Jing,LiuJiaping
(a. School of Environment; b. School of Architecture, Xian University of Architecture &. Technology , Xian 710055,P. R. China) Abstract: The subjective questionnaires were conducted on dressing condition and thermal sensation for more than 420o students of 1o classrooms in 4 rural primary and secondary schools in Qinghai. At the same time, the indoor and outdoor parameters were measured, such as temperature and relative humidity, air speed and globe temperature etc. The results showed that the measured and predicted thermal neutral temperature were 13. 8 C and 14. 5 C, respectively. The preferred temperature was 16.2 C, and the thermal comfort temperature range accepted by 9o% students was 15.8 C~18.7 C. Students had the adaptability to partial cold environment under the facts of cold climate conditions, dressing habit, psychological expectation and physical characters. Adaptive PMV model (aPMV) was proposed to predict students' mean thermal Sensation. It could provide basis for the design of indoor environment in rural primary and secondary classrooms in winter.
Keywords:thermal comfort;thermalenvironment;MTS;aPMV
收稿日期:2016-03-04
基金项目:国家自然科学基金(51408462.5137841151678468);陕西省科技计划项目(2014KCT-01、2016JQ5016)
作者简介:王登甲(1984-),男.副教授.博士,主要从事建筑热环境调节与太阳能采暖研究,(E-mail)wangdengjia@xauat。
edu.cn。
Received : 2016-0304
Foundation item: National Natural Science Foundation of China ( No. 51408462, 51378411, 51678468); Science Planning
Subject of Shaanxi Province (No. 2014KCT-01,2016JQ5016)
Author brief: Wang Dengjia (1984-), associate professor, PhD, main research interests: building thermal environment
regulation and solar heating, (E-mail) wangdengjia@xauat, edu, cn.
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