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Indoor Thermal Environment Research of Air Conditioning Office with Air from Window Gap

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成果类型:
期刊论文、会议论文
作者:
Liu, Zehua*;Liao, Yan;Yu, Haoping
通讯作者:
Liu, Zehua
作者机构:
[Liu, Zehua; Liao, Yan; Yu, Haoping] Univ South China Prov Hunan, Sch Urban Construct, Changsha, Hunan, Peoples R China.
通讯机构:
[Liu, Zehua] U
Univ South China Prov Hunan, Sch Urban Construct, Changsha, Hunan, Peoples R China.
语种:
英文
关键词:
Air infiltration;Numerical simulation;Thermal environment;Window gap
期刊:
Advanced Materials Research
ISSN:
1022-6680
年:
2014
卷:
860-863
页码:
1660-1665
会议名称:
3rd International Conference on Energy, Environment and Sustainable Development (EESD 2013)
会议论文集名称:
Advanced Materials Research
会议时间:
NOV 12-13, 2013
会议地点:
Shanghai, PEOPLES R CHINA
会议主办单位:
[Liu, Zehua;Liao, Yan;Yu, Haoping] Univ South China Prov Hunan, Sch Urban Construct, Changsha, Hunan, Peoples R China.
会议赞助商:
Shanghai Univ Elect Power, Shanghai Normal Univ
主编:
Xu, Q Li, Y Yang, X
出版地:
KREUZSTRASSE 10, 8635 DURNTEN-ZURICH, SWITZERLAND
出版者:
TRANS TECH PUBLICATIONS LTD
ISBN:
978-3-03785-972-8
机构署名:
本校为第一且通讯机构
院系归属:
土木工程学院
摘要:
The paper presents a numerical simulation study of indoor thermal environment of an air conditioning office in winter in Hengyang. Considering the effect of air infiltration from window gap, the distribution of indoor temperature field, velocity field and humidity field can be obtained when air supply angle is 45° down to the horizontal direction. Compared with simulation which air infiltration is ignored, the results show that average temperature of air conditioning area reduces 0.6 °C in Y = 1.1 m section. Air velocity is larger in Y = 1.1 ...

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