中文
Profile
VIEW MORE
二级教授、博士生导师,科研院常务副院长 获教育部特聘教授、国家级领军人才、科技部中青年科技领军人才、国务院政府特殊津贴专家、陕西省教学名师。 绿色建筑全国重点实验室建筑能源研究中心主任 中国建筑学会零能耗建筑学术委员会副理事长 中国可再生能源学会热利用专业委员会副主任委员 中国光伏行业协会光电建筑专业委员会副主任委员 中国工程建设标准化协会村镇人居环境专业委员会副主任委员 中国工程建设标准化协会太阳能利用专业委员会副主任委员 国家技术标准创新基地建筑工程绿色建筑专业委员会副主任委员 陕西省高等学校科研管理协会秘书长 西安市制冷学会理事长。 主要从事可再生能源利用与建筑节能研究。 主持“十三五”、“十四...
刘艳峰
Professor
Paper Publications
A numerical and experimental analysis of the air vent management and heat storage characteristics of a trombe wall
Release time:2024-08-09 Hits:
Affiliation of Author(s):
建筑设备科学与工程学院
Journal:
Solar Energy
Key Words:
中文关键字:特朗勃墙;通风口;优化设计;蓄热,英文关键字:Trombe wall; Air vent; Optimization design; Heat s
Abstract:
The optimum opening and closing modes in the management of air vents has been obtained by testing and analyzing thermal performance parameters of a trombe wall installation. The parameters considered include air vent velocity, air vent temperature, the temperature distribution of air layer and indoor air temperature. The temperature and velocity distribution of the air layer has been obtained by numerical calculation, together with experimental data including the heat storage and release characteristics and the influencing factors of the trombe wall. The research results show: the optimum time to open the air vent of the trombe wall is 2–3 h after sunrise with closure 1 h before sunset. On the condition of optimum air vent management mode, surface and average temperature of heat storage wall computer simulations were run with CFD to analyze the heat storage and release performance of trombe wall. Then, we can find out the heat storage capacity of the trombe wall reaches its maximum value at 4 pm, its minimum value at 7–8 am. These research results provide a reference base for the optimization of design and the operational management of a passive solar house with trombe wall.
Note:
刘艳峰
Co-author:
马超
First Author:
liujiaping,wangdengjia,liuyanfeng
Indexed by:
Journal paper
Volume:
卷:91
Issue:
期:
Page Number:
页:1-10
Translation or Not:
no
Date of Publication:
2013-05-01

Pre One:The indoor thermal environment of rural school classrooms in Northwestern China

Next One:拉萨地区被动太阳能传统民居测试研究