Architecture & Civil Engineering

Simulation and Optimization Analysis of Natural Lighting in the Lower Space of Elevated Sports Venues in Primary and Secondary Schools

  • GUO Haoxu ,
  • LIN Duobing ,
  • DENG Mengren
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  • 1.State Key Laboratory of Subtropical Building and Urban Science,South China University of Technology,Guangzhou 510640,Guangdong,China
    2.Architectural Design and Research Institute of SCUT Co. ,Ltd. ,Guangzhou 510640,Guangdong,China
郭昊栩(1972—),男,教授,博士生导师,主要从事建筑设计及理论、建筑环境、人类行为及感觉等研究。 E-mail: hushkwok@126.com
邓孟仁(1971—),男,教授,博士生导师,主要从事建筑设计及理论研究。

Received date: 2023-10-11

  Online published: 2023-12-22

Supported by

the Science and Technology Innovation Program of Guangdong Department of Housing and Urban-Rural Development(2022-K2-280927)

Abstract

Under the background of insufficient school places and shortage of construction land in large and medium-sized cities in China, the three-dimensional design of primary and secondary school campus sports fields can form a vertical superposition of space, thereby releasing a large amount of construction land. However, the three-dimensional design of sports fields will also lead so some new design problems. Among them, the most complicated is the natural lighting of the lower space of the sports field, which facing both the problem of whether the illumination is sufficient and the problem of whether the light distribution is uniform. Domestic and foreign literature research shows that the current research on the lighting of three-dimensional sports venues at home and abroad is almost blank, which makes the current construction somewhat blind. Based on the above considerations, the study simulated the natural lighting environment of the lower area of different forms of campus three-dimensional sports venues with the parametric light environment simulation technology of the lighting simulation platform built based on Rhino, Grasshopper and Ladybugtools. And it extracted the factors affecting the lighting of the lower space of the three-dimensional sports field, including the size of the stadium, the number of overhead layers, the depth of the space, the functional layout, the location of the lighting port, and the sunshade and reflection measures. By simulating and analyzing the influencing factors, the influencing mechanisms of different factors were obtained, and the design strategies for three-dimensional sports fields to create a good natural light environment were further refined. The research feedback was formed based on the practice of optimizing the natural light environment of the student activity center of the Guangzhou Experimental Middle School project, thereby verifying the effectiveness of the research.

Cite this article

GUO Haoxu , LIN Duobing , DENG Mengren . Simulation and Optimization Analysis of Natural Lighting in the Lower Space of Elevated Sports Venues in Primary and Secondary Schools[J]. Journal of South China University of Technology(Natural Science), 2024 , 52(8) : 103 -114 . DOI: 10.12141/j.issn.1000-565X.230626

References

1 POOLE D .Passive solar design—the local authority experience[J].International Journal of Ambient Energy199011(1):13-16.
2 DING F .Daylight integration and visual comfort in sports halls in Norway[J].Trondheim:Norwegian University of Science and Tehcnology2017.
3 COSTANZO V, EVOLA G, MARLETTA L,et al .Application of climate based daylight modelling to the refurbishment of a school building in Sicily[J].Sustainability201810(8):2653/1-19.
4 SHINOHARA N, IWATA T, KAIHO K .Visual environment in a gymnasium using small led luminaires and daylight systems led[J].AIJ Journal of Technology and Design202228(68):261-266.
5 杨延萍,郑林涛,郑志敏 .广州地区阶梯教室窗墙比案例研究[J].建筑学报2015(3):98-101.
  YANG Yanping, ZHENG Lintao, ZHENG Zhimin .A study of glazing ratio in designing a collegiate terraced classroom in Guangzhou[J].Architectural Journal2015(3):98-101.
6 ZHAO Y, MEI H .Dynamic simulation and analysis of daylighting factors for gymnasiums in mid-latitude China[J].Building and Environment201363:56-68.
7 宋海宏,郑殿炀,谢法连,等 .严寒地区中型体育场馆侧窗采光优化设计[J].重庆理工大学学报(自然科学)202034(5):150-156.
  SONG Haihong, ZHENG Dianyang, XIE Falian,et al .Research on lighting optimization design of side window of medium sports stadium in severe cold region[J].Journal of Chongqing University of Technology (Natural Science)202034(5):150-156.
8 金晔 .大中城市中心城区的体育场馆建设——浅析多功能中小型体育场馆的空间竖向叠加设计[J].华中建筑201230(7):40-43.
  JIN Ye .Stadium construction in large and medium-sized cities’ centre:study of space vertical superposition design for middle and small-sized multi-functional sports centre[J].Huazhong Architecture201230(7):40-43.
9 朱建聪 .高容积率条件下中小学校高台型运动场空间集约化研究[D].深圳:深圳大学,2020.
10 KHARVARI F .An empirical validation of daylighting tools:assessing radiance parameters and simulation settings in Ladybug and Honeybee against field measurements[J].Solar Energy2020207:1021-1036.
11 BREMBILLA E, HOPFE C J, MARDALJEVIC J .Influence of input reflectance values on climate-based daylight metrics using sensitivity analysis[J].Journal of Building Performance Simulation201811(3):333-349.
12 WIENOLD J, CHRISTOFFERSEN J .Evaluation methods and development of a new glare prediction model for daylight environments with the use of CCD cameras[J].Energy and Buildings200638(7):743-757.
13 JONES N L .Fast climate-based glare analysis and spatial mapping[C]∥Proceedings of the 16th International Conference of the International Building Performance Simulation Association.Rome:International Building Performance Simulation Association,2019:982-989.
14 沈昭华,谭洪卫,吕思强,等 .上海地区建筑能耗计算用典型年气象数据的研究[J].暖通空调201040(1):89-94.
  SHEN Zhaohua, TAN Hongwei, Siqiang Lü,et al .Research on the typical meteorological year data of Shanghai for the building energy consumption calculation[J].Heating Ventilating & Air Conditioning201040(1):89-94.
15 柳孝图 .建筑物理[M].3版.北京:中国建筑工业出版社,2010.
16 ESSIG N, LINDNER S, MAGDOLEN S,et al .Guidelines for sustainable sports facility construction[M].Bonn:Bundesinstitut für Sportwissenschaft,2021.
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