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小学教学楼庭院空间构成要素对儿童热舒适的影响



编号 lyqk011414

中文标题 小学教学楼庭院空间构成要素对儿童热舒适的影响

作者 毛媛媛  叶云  谢俊民 

作者单位 苏州大学建筑学院 江苏苏州 215123

期刊名称 中国城市林业 

年份 2024 

卷号 22

期号 2

栏目名称 专题1:城市绿地热缓解 

中文摘要 为探究儿童热舒适度与户外空间构成要素之间的相关性,对苏州姑苏区与工业园区内的95个小学教学楼庭院空间进行微气候数据采集、空间构成要素量化测量以及对儿童进行问卷调查,结果表明:1)苏州夏季、春季、冬季小学教学楼庭院的儿童热舒适度范围分别为26.5~34.2 ℃、18.5~26.3 ℃、23.1~28.2 ℃;2)与儿童热舒适度PET值显著相关的空间构成要素有5个,即绿地配置形式(“贴边+中央”型最佳)、朝向(东西朝向最佳)、围合度(4面围合最佳)、植物种植类型(乔灌草复合搭配最佳)、绿地率(30%~50%最佳)。基于研究结果,建议通过综合考虑景观特征、优化植物品种、完善辅助设施等手段提升小学教学楼庭院空间的热舒适度。

关键词 儿童  热舒适  构成要素  小学  苏州 

基金项目 国家自然科学基金面上项目(41971211)

英文标题 Influence of Constituent Elements of Courtyard Space in Primary School on Children's Thermal Comfort

作者英文名 Mao Yuanyuan, Ye Yun, Xie Junmin

单位英文名 School of Architecture, Soochow University, Suzhou 215123, Jiangsu, China

英文摘要 In order to explore the correlation between children's thermal comfort and the constituent elements of outdoor spaces, the study collects the microclimate data and quantitatively measures the space constituent elements at the courtyard spaces of 95 primary schools in Suzhou's Gusu District and Industrial Park, and conducts the questionnaire survey among children. The study finds:1) The children thermalcomfort degree (PET) falls in the range of 26.5-34.2℃ in summer,18.5-26.3℃ in spring and 23.1-28.2℃ in winter at the courtyard spaces; and 2) There are five space constituent elements which are significantly correlated with the PET value of children's thermal comfort, including green space layout featured with edge + central planting, an east-west orientation, enclosure of courtyards on all four sides, plant configuration with arbors and shrubs, and a green coverage ratio ranging at 30%-50%. It is suggested that the thermal comfort of courtyard spaces at primary schools could be improved through comprehensive consideration of landscape features, optimization of plant varieties, and improvement of auxiliary facilities.

英文关键词 children;thermal comfort;constituent element;primary school;Suzhou

起始页码 36

截止页码 41

投稿时间 2023/7/25

作者简介 毛媛媛(1974-),女,博士,副教授,研究方向为城市规划。E-mail:maoyuanyuan@suda.edu.cn

通讯作者介绍 谢俊民(1976-),男,博士,副教授,研究方向为微气候。E-mail:chunming@cityu.edu.mo

E-mail chunming@cityu.edu.mo

DOI 10.12169/zgcsly.2023.07.25.0003

参考文献 [1] 李思芸,杨李宁,王勇.儿童热舒适研究现状及展望[J].制冷与空调(四川),2015,29(5):574-580,587.
[2] CHEN L,NG E.Outdoor thermal comfort and outdoor activities:a review of research in the past decade[J].Cities,2012,29(2):118-125.
[3] HARLAN S L,BRAZEL A J,PRASHAD L,et al.Neighborhood microclimates and vulnerability to heat stress[J].Social Science & Medicine,2006,63(11):2847-2863.
[4] YUN H,NAM I,KIM J,et al.A field study of thermal comfort for kindergarten children in Korea:an assessment of existing models and preferences of children[J].Building and Environment,2014,75:182-189.
[5] FALK B,BAR-OR O,CALVERT R,et al.Sweat gland response to exercise in the heat among pre-,mid-,and late-pubertal boys[J].Medicine and Science in Sports and Exercise,1992,24(3):313-319.
[6] TELI D,JENTSCH M F,JAMES P A B.Naturally ventilated classrooms:anassessment of existing comfort models for predicting the thermal sensation and preference of primary school children[J].Energy and Buildings,2012,53:166-182.
[7] 赵荣义.关于热舒适的讨论[J].暖通空调,2000,30(3):25-26.
[8] GAGGE A.Introduction to thermal comfort[J].Energy and Buildings,1977,35(2):11-25.
[9] BORGERS N,DE LEEUW E,HOX J.Children as respondents in survey research:cognitive development and response quality 1[J].Bulletin of Sociological Methodology,2000,66:60-75.
[10] TER MORS S,HENSEN J L M,LOOMANS M G L C,et al.Adaptive thermal comfort in primary school classrooms:Creating and validating PMV-based comfort charts[J].Building and Environment,2011,46(12):2454-2461.
[11] 贺进.幼儿园热环境测试与幼儿热舒适研究[D].重庆:重庆大学,2016.
[12] 李思芸.夏热冬冷地区典型城市幼儿热舒适分析研究[D].重庆:重庆大学,2016.
[13] 刘学全,唐万鹏,周志翔,等.宜昌市城区不同绿地类型环境效应[J].东北林业大学学报,2004,32(5):53-54,83.
[14] 骆心仪,赵阳,郭曈烨,等.基于热舒适的湿热地区露营地树木种植配置模式[J].中国城市林业,2023,21(4):127-134.
[15] 胡琪琪,顾韩.室外热舒适影响因素及其评价指标研究进展[J].中国城市林业,2023,21(1):43-49.
[16] 陈睿智,韩君伟.湿热气候区城市露天开放性空间景观要素对微气候舒适度的影响研究[J].城市建筑,2017(1):39-42.
[17] 智颖,况达.澳门历史街区议事厅前地夏季热舒适度模拟及提升策略[J].中国城市林业,2023,21(4):135-143.
[18] 邱巧玲,王凌.基于街道峡谷污染机理的城市街道几何结构规划研究[J].城市发展研究,2007,14(4):78-82.
[19] POTCHTER O,COHEN P,LIN T P,et al.Outdoor human thermal perception in various climates:acomprehensive review of approaches,methods and quantification[J].The Science of the Total Environment,2018,631/632:390-406.
[20] 吴志丰,陈利顶.热舒适度评价与城市热环境研究:现状、特点与展望[J].生态学杂志,2016,35(5):1364-1371.
[21] ASHRAE.2009 ASHRAE handbook-fundamentals[M].Atlanta:ASHRAE Inc,2009.
[22] HÖPPE P.The physiological equivalent temperature-a universal index for the biometeorological assessment of the thermal environment[J].International Journal of Biometeorology,1999,43(2):71-75.
[23] 朱焱,杨金彪,朱莲芳,等.苏州城市化进程与城市气候变化关系研究[J].气象科学,2012,32(3):317-324.
[24] CHEN X,GAO L X,XUE P N,et al.Investigation of outdoor thermal sensation and comfort evaluation methods in severe cold area[J].Science of the Total Environment,2020,749:141520.
[25] 刘滨谊,魏冬雪,李凌舒.上海国歌广场热舒适研究[J].中国园林,2017,33(4):5-11.
[26] 高竹青.基于儿童不同季节活动特征的住区户外公共空间设计研究:以寒地城市哈尔滨为例[D].哈尔滨:哈尔滨工业大学,2019.
[27] 李翠燕.湿热地区儿童户外活动空间热舒适评价及优化策略研究[D].广州:华南理工大学,2021.
[28] 王庆,孙浩东,谢晓欢.基于微气候舒适度的公园休憩空间景观优化[J].中国城市林业,2022,20(5):10-15.
[29] 冷红,马彦红.应用微气候热舒适分区的街道空间形态初探[J].哈尔滨工业大学学报,2015,47(6):63-68.

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