王登甲

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王登甲,男,国家青年科学基金项目A类获得者,陕西省“特支计划”青年拔尖人才,陕西省中青年科技创新领军人才,西安建筑科技大学二级教授、博士生导师,西安建筑科技大学交叉创新研究院常务副院长。 王登甲于2002年9月至2006年6月就读于西安建筑科技大学,毕业获得供热、供燃气、通风及空调工程工学学士学位;2006年9月...

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Analysis of the non-uniform thermal environment of local floor and ceiling radiant heating: Numerical simulation and thermal comfort experiment

发布时间:2026-04-07  点击次数:

发表刊物:Building and Environment

关键字:Local radiant heatingNonuniform thermal environmentMean radiant temperatureAsymmetric thermal sensation

摘要:Local radiant heating is a crucial method for avoiding inefficient heating and reducing energy consumption in buildings. To supplement existing research, which primarily focuses on local vertical-wall radiant heating, this paper investigates the non-uniform thermal environment of local floor and ceiling radiant heating rooms under various radiant positions, areas, and temperatures. The study utilizes numerical analysis by Ansys Fluent and thermal comfort experiments in Xi'an, China, which has a Dwa Köppen climate classification. When the local heating zone is located near windows and doors, the radiant film preferentially exchanges heat with them, resulting in a decrease in air temperature and mean radiant temperature. In such cases, it is recommended to increase the radiant temperature or area. With a radiant area of 5 m2 and a radiant temperature of 25 °C, expanding the radiant area to 15 m2 increases the average air temperature in the local heating zone by 5.0 °C, while raising the radiant temperature to 29 °C increases it by 1.4 °C. Moreover, enlarging the radiant area can effectively improve occupants' skin temperature, thermal sensation, and overall thermal comfort. When the radiant area and temperature are determined, priority should be given to local floor radiant heating over local ceiling radiant heating due to its lower air temperature, larger temperature gradients, and smaller mean radiant temperatures. This study aims to provide references for proposing refined design and regulation parameters of local floor and ceiling radiant heating systems in the future.

合写作者:苏玲,索朗白姆,刘显峰

第一作者:胡家乐,王莹莹,李勇

论文类型:期刊论文

通讯作者:王登甲

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发表时间:2024-01-01

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