天窗采光的地下综合交通枢纽光热环境实测

作者:董建锴 郝爽 王诗琪 张笑海 杨硕 刘京
单位:寒地城乡人居环境科学与技术工业和信息化部重点实验室 哈尔滨工业大学
摘要:为研究地下综合交通枢纽天窗设置对于内部光热环境的影响,对深圳市福田地下综合交通枢纽天窗区域进行了为期3天的光热环境测试,分析了天窗采光区域照度、空气温度、壁面温度和黑球温度随时间的变化。结果表明:地下综合交通枢纽天窗采光效果受天气状况和室外遮挡影响较大,且大部分时间无法达到标准照度值(300 lx)的要求,但在太阳辐照度较大的时间内应采取适当的遮阳措施以避免眩光影响;天窗采光区域和人工照明区域一天之内平均温度的最大差值在晴天和阴天分别为0.3℃和0.4℃,平均黑球温度与平均空气温度的差值在晴天和阴天分别为0.5℃和0.2℃,深圳冬季太阳辐射对于天窗下人体的热感觉影响较小。
关键词:地下综合交通枢纽天窗采光光环境热环境现场实测
作者简介:董建锴,男,1982年生,博士研究生,教授,博士生导师;*刘京,150090黑龙江省哈尔滨市南岗区先锋路街道哈尔滨工业大学二校区,E-mail:liujinghit0@163.com;
基金:中国铁设科技开发计划项目“地下大型公共交通枢纽内部环境保障关键技术研究”(编号:2019YY220304);
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参考文献[1] 张倩倩.城市公共交通枢纽交通影响分析研究[D].北京:北京交通大学,2017:3- 9.

[2] 罗涛,燕达,江亿,等.办公建筑照明能耗模拟方法研究(下)[J].建筑科学,2017,33(6):123- 129.

[3] SIMON G H,KEN P.The effects of solar radiation on thermal comfort[J].International journal of biometeorology,2007,51(3):233- 250.

[4] BAKMOHAMMADI P,NOORZAI E.Optimization of the design of the primary school classrooms in terms of energy and daylight performance considering occupants’ thermal and visual comfort[J].Energy reports,2020,6:1590- 1607.

[5] LI H W,TSANG K W.An analysis of daylighting performance for office buildings in Hong Kong[J].Building and environment,2007,43(9):1446- 1458.

[6] ZHAO J,DU Y H.Multi-objective optimization design for windows and shading configuration considering energy consumption and thermal comfort:a case study for office building in different climatic regions of China[J].Solar energy,2020,206:997- 1017.

[7] 俞天琦,丁炜豪.基于候车区自然采光性能的地下轨道交通枢纽天窗形式优化设计:以天津滨海站为例[J].建筑创作,2021(4):198- 206.

[8] 由玉文,武录森,郭建峰,等.建筑外遮阳形式对室内光环境影响的研究[J].天津城建大学学报,2022,28(5):317- 321.

[9] 李婧豪,卢玫珺.天然采光模型对建筑室内光环境及能耗的影响研究[J].建筑节能(中英文),2022,50(4):28- 33.

[10] 杨柳柳,李振全.苏州地区公共建筑中庭空间光热环境实测与能耗分析研究[J].建筑节能,2020,48(3):70- 74.

[11] 孙东贤.基于透明围护结构的寒冷地区航站楼自然采光与节能优化设计研究[D].西安:西安建筑科技大学,2022:35- 61.

[12] 范晴,张明宇,刘彦汝,等.高校体育馆天然采光现状调查研究[J].照明工程学报,2021,32(3):66- 75.

[13] 中国建筑科学研究院.建筑采光设计标准:GB 50033—2013[S].北京:中国建筑工业出版社,2013:88- 89.

[14] 中国建筑科学研究院,中国标准化研究院,重庆大学,等.采光测量方法:GB/T 5699—2017[S].北京:中国标准出版社,2017:4- 5.
Light and thermal environment measurement of underground comprehensive transportation hub with skylight lighting
Dong Jiankai Hao Shuang Wang Shiqi Zhang Xiaohai Yang Shuo Liu Jing
(Key Laboratory of Cold Region Urban and Rural Human Settlement Environment Science and Technology,Ministry of Industry and Information Technology Harbin Institute of Technology)
Abstract: In order to study the influence of skylight in the underground comprehensive transportation hub on the internal light and thermal environment, a three-day light and thermal environment test is conducted in the skylight lighting area of Futian underground comprehensive transportation hub in Shenzhen. The changes of illuminance, air temperature, wall temperature and globe temperature of the skylight lighting area with time are analysed. The results show that the skylight lighting effect of underground comprehensive transportation hub is greatly affected by weather conditions and outdoor shelter, and it cannot meet the standard illumination value of 300 lx most of the time. When the solar radiation intensity is high, appropriate shading measures should be taken to avoid glare. The maximum difference of average temperature between skylight lighting area and artificial lighting area in one day is 0.3 ℃ and 0.4 ℃ on sunny and cloudy days respectively, and the difference between average black ball temperature and average air temperature is 0.5 ℃ and 0.2 ℃ on sunny and cloudy days respectively. Therefore, the solar radiation in winter in Shenzhen has little effect on the thermal sensation of human body under the skylight.
Keywords: underground comprehensive transportation hub; skylight lighting; light environment; thermal environment; field measurement;
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