广东工业大学学报 ›› 2021, Vol. 38 ›› Issue (04): 71-80.doi: 10.12052/gdutxb.210030
高云飞1,2, 余佳宁2, 宋文馨3, 倪红2, 刘琳1, 翟永超4
Gao Yun-fei1,2, Yu Jia-ning2, Song Wen-xin3, Ni Hong2, Liu Lin1, Zhai Yong-chao4
摘要: 健身产业的发展对运动类建筑热舒适水平的提升和不同性别人群的热需求提出了要求。本文选取了3种中等活动量的运动状态, 利用人工气候室进行测试实验, 实验过程中受试者根据自身的热舒适需求自主调控温度, 同时进行室内温度的测量和人体生理参数与热舒适主观问卷投票的统计, 讨论不同运动状态下男女的热舒适特性。研究结果表明:在相同活动量下, 各项生理参数与主观问卷投票无明显差异, 仅表现为女性心率更高; 4, 5, 6 km/h步速下, 女性偏好温度分别比男性高出1.6, 0.3, 0.9 ℃; 女性在相同热感觉下的热舒适性稍低且对热舒适变化更敏感。在此基础上, 针对不同运动状态提出了基于不同性别热需求的空间环境参数, 为营造运动类建筑的适宜室内环境提供理论依据。
中图分类号:
[1] 高云飞, 余佳宁, 刘琳, 等. 湿热地区校园公共空间冬季热舒适研究[J]. 广东工业大学学报, 2021, 38(1): 39-45. GAO Y F, YU J N, LIU L, et al. A study of the thermal comfort of campus public space in hot and humid areas in sunny winter [J]. Journal of Guangdong University of Technology, 2021, 38(1): 39-45. [2] 杨晚生, 郭晶, 阮彩琴, 等. 广州不同地表覆盖物热反应变化规律研究[J]. 广东工业大学学报, 2006, 23(2): 127-131. YANG W S, GUO J, RUAN C Q, et al. Study on thermal response of different surface coverings in Guangzhou [J]. Journal of Guangdong University of Technology, 2006, 23(2): 127-131. [3] 黄晓丹. 基于Ecotect软件的岭南地区绿色建筑优化设计——以增城某小型既有博物馆为例[J]. 广东工业大学学报, 2016, 33(6): 96-101. HUANG X D. A study of green building optimum design in Lingnan region based on Ecotect software—with a small existing museum in Zengcheng for an example [J]. Journal of Guangdong University of Technology, 2016, 33(6): 96-101. [4] 王战兵, 刘丽孺, 王璋元, 等. 以风冷热泵热水机组为热源的集中空调系统运行能耗的e-p分析法的建立[J]. 广东工业大学学报, 2016, 33(6): 53-56. WANG Z B, LIU L R, WANG Z Y, et al. The e-p decomposition method of operational energy consumption for central air conditioning systems with air source heat pump unit [J]. Journal of Guangdong University of Technology, 2016, 33(6): 53-56. [5] HARDY J D, DU B E F. Differences between men and women in their response to heat and cold [J]. Proceedings of the National Academy of Sciences of the United States of America, 1940, 26(6): 389-398. [6] FANGER P O, HOJBJERRE J, THOMSEN J O, et al. Thermal comfort conditions in the morning and in the evening [J]. International Journal of Biometeorology, 1974, 18(1): 16-22. [7] OLESEN B W, FANGER P O. The skin temperature distribution for resting man in comfort [J]. Archives des Sciences Physiologiques, 1973, 27(4): 385-393. [8] FANGER P O. Thermal comfort analysis and applications in environmental engineering[M]. New York: McGraw Hill, 1970. [9] KARJALAINEN S. Gender differences in thermal comfort and use of thermostats in everyday thermal environments [J]. Building and Environment, 2007, 42(4): 1594-1603. [10] LAN L, LIAN Z, LIU W, et al. Investigation of gender difference in thermal comfort for Chinese people [J]. European Journal of Applied Physiology, 2008, 102(4): 471-480. [11] BESHIR M Y, RAMSEY J D. Comparison between male and female subjective estimates of thermal effects and sensations [J]. Applied Ergonomics, 1981, 12(1): 29-33. [12] GRIEFAHN B, KUNEMUND C. The effects of gender, age, and fatigue on susceptibility to draft discomfort [J]. Journal of Thermal Biology, 2001, 26(4): 395-400. [13] CENA K, DE DEAR R. Thermal comfort and behavioral strategies in office buildings located in a hot-arid climate [J]. Journal of Thermal Biology, 2001, 26(4): 409-414. [14] NAKANO J, TANABE S, KIMURA K, et al. Differences in perception of indoor environment between Japanese and non-Japanese workers [J]. Energy and Buildings, 2002, 34(6): 615-621. [15] PARSONS K C. The effects of gender, acclimation state, the opportunity to adjust clothing and physical disability on requirements for thermal comfort [J]. Energy & Buildings, 2002, 34(6): 593-599. [16] NAGASHIMA K, YODA T, YAGISHITA T, et al. Thermal regulation and comfort during a mild-cold, exposure in young Japanese women complaining of unusual coldness [J]. Journal of Applied Physiology, 2002, 92(3): 1029-1035. [17] 代金, 姜曙光, 徐鑫, 等. 基于性别的严寒地区高校教学楼自然通风热舒适性研究[J]. 热科学与技术, 2019, 18(4): 306-314. DAI J, JIANG S G, XU X, et al. Research on natural ventilation and thermal comfort of university teaching buildings in severe cold area based on gender [J]. Journal of Thermal Science and Technology, 2019, 18(4): 306-314. [18] 李念平, 刘鹏龙, 伍志斌. 长沙高校宿舍夏季热舒适与热适应现场调研[J]. 哈尔滨工业大学学报, 2019, 51(4): 200-206. LI N P, LIU P L, WU Z B, et al. Field survey on summer thermal comfort and adaptation of university dormitories in Changsha [J]. Journal of Harbin Institute of Technology, 2019, 51(4): 200-206. [19] JAAX J. An investigation of thermal comfort (thermally neutral) conditions for three activity levels[D]. Manhattan: Kansas State University, 1965. [20] NIELSEN B, ODDERSHEDE I, TORP A, et al. Thermal comfort during continuous and intermittent work[M]. Copenhagen: Danish Building Research Institute, 1979: 477–490. [21] 王海英, 李文强. 冬季工况体力活动时人体热舒适实验研究[J]. 暖通空调, 2017, 47(7): 118-123, 135. WANG H Y, LI W Q. Experimental study on human thermal comfort under physical activities in winter [J]. Heating Ventilation & Air Conditioning, 2017, 47(7): 118-123, 135. [22] ARCIERO P J, GORAN M I, POEHLMAN E T. Resting metabolic rate is lower in women than in men [J]. Journal of Applied Physiology, 1993, 75(6): 2514-2520. [23] ZHANG H, HUIZENGA C, ARENS E, et al. Considering individual physiological differences in a human thermal model [J]. Journal of Thermal Biology, 2001, 26(4-5): 401-408. [24] International Fitness Association. Gym temperature and noise standards[EB/OL]. [2021-01-10]. https://www.ifafitness.com/health/temperature.htm. [25] AINSWORTH B E, HASKELL W L, HERRMANN S D, et al. 2011 compendium of physical activities: a second update of codes and MET values [J]. Medicine and Science in Sports and Exercise, 2011, 43(8): 1575-1581. |
[1] | 刘琳, 梁镇希, 杜晶, 刘京, 张会波. 夏热冬冷地区大学校园夏季热舒适研究[J]. 广东工业大学学报, 2023, 40(02): 120-128. |
[2] | 高云飞, 余佳宁, 刘琳, 陈光, 林垚广, 陈素青. 湿热地区校园公共空间冬季热舒适研究[J]. 广东工业大学学报, 2021, 38(01): 39-45. |
|