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Volume 55 Issue 5
May  2025
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FAN Li, CUI Xu. Effects of Building Enclosure in Front Space of Railway Passenger Stations on Its Wind and Thermal Enviroment[J]. INDUSTRIAL CONSTRUCTION, 2025, 55(5): 17-26. doi: 10.3724/j.gyjzG23082410
Citation: FAN Li, CUI Xu. Effects of Building Enclosure in Front Space of Railway Passenger Stations on Its Wind and Thermal Enviroment[J]. INDUSTRIAL CONSTRUCTION, 2025, 55(5): 17-26. doi: 10.3724/j.gyjzG23082410

Effects of Building Enclosure in Front Space of Railway Passenger Stations on Its Wind and Thermal Enviroment

doi: 10.3724/j.gyjzG23082410
  • Received Date: 2023-08-24
    Available Online: 2025-07-15
  • With the rapid development of global urbanization, the ecological environment has been damaged, and the climate has become more and more severe. The most obvious manifestation of this is the urban local microclimate, where perceptions of hot and cold microclimates seriously interfere with people's daily life and work. The urban local microclimate is formed by the interaction of multiple spatial elements, among which building combination and form are the main factors affecting the local spatial wind and thermal environment. As a gateway to the city and a climate-sensitive area, the microclimate environment directly affects the city’s image as well as people’s work and travel. Therefore, this study took Chengdu, a hot-summer and cold-winter region, as an example, through the simulation and superposition analysis of the wind-heat environment in the open space in front of the stationin with different building envelopes during summer and winter, it was found that the envelopes had a more significant effect on the wind-heat effect and uncomfortable values in winter, showing a negative correlation; in summer, the "mouth"-shaped differed from the "paralle"- shaped, and the "paralle"-shaped differed from it in winter, which was negatively correlated. In summer, the wind-heat environment in open spaces with either "mouth"-shaped or "parallel"-shaped configurations showed greater sensitivity to enclosure ratios, while in winter, similar sensitivity was observed between "mouth"-shaped and U-shaped configurations.
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  • [1]
    徐小东,徐宁. 湿热地区气候适应性城市空间形态及其模式研究[J]. 南方建筑,2011,141(1):80-83.
    [2]
    WONG N H,HE Y,NGUYEN N S,et al. An integrated multiscale urban microclimate model for the urban thermal environment[J]. Urban Climate,2021,35,100730.
    [3]
    冷红,宋世一. 城市尺度建筑节能规划的国际经验及启示[J]. 国际城市规划,2020,35(3):103-112.
    [4]
    冷红,袁青. 城市微气候环境控制及优化的国际经验及启示[J]. 国际城市规划,2014,29(6):114-119.
    [5]
    刘姝宇,沈小洁,宋代风,等. 基于多尺度气候环境优化的当代德国城市设计:以慕尼黑里姆会展新城项目为例[J]. 新建筑,2020,192(5):104-109.
    [6]
    丁沃沃,胡友培,窦平平. 城市形态与城市微气候的关联性研究[J]. 建筑学报,2012,527(7):16-21.
    [7]
    胡兴,魏迪,李保峰,等. 城市空间形态指标与街区风环境相关性研究[J]. 新建筑,2020,192(5):139-143.
    [8]
    武凤文,王梓茜,苗世光,等. 基于微气候环境改善的城市设计优化策略:以北京宛平城为例[J]. 城市发展研究,2022,29(3):34-40.
    [9]
    GEN L,QIANG Z. Exploration of the correlation between spatial form and microclimate in urban residential areas based on wireless sensor networks[J]. IEEE Sensors Journal,2021,21(22):25391-25399.
    [10]
    梅欹,刘滨谊. 上海住区风景园林空间冬季微气候感受分析[J]. 中国园林,2017,33(4):12-17.
    [11]
    陈立华,陆辉煌,熊英明. 住区规划布局对其通风环境及节能效果的影响研究:以桂林市居住小区为例[J]. 新建筑,2018,181(6):86-91.
    [12]
    郭菂. 气候适应视角下的传统合院民居空间形态比较研究:以环渤海、长三角、珠三角地区为例[J]. 新建筑,2021,196(3):124-129.
    [13]
    肖湘东,丁敏,董丽,等. 公园特征及与水域距离对其夏季温湿效应影响研究:以苏州工业园区为例[J]. 中国园林,2021,37(9):48-53.
    [14]
    刘滨谊,彭旭路. 城市街道小气候舒适性研究进展与启示[J]. 中国园林,2019,35(10):57-62.
    [15]
    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.
    [16]
    LENZHOLZER S,KOH J. Immersed in microclimatic space:microclimate experience and perception of spatial configurations in Dutch squares[J]. Landscape and Urban Planning,2010,95(1/2):1-15.
    [17]
    王振,李保峰,黄媛. 从街道峡谷到街区层峡:城市形态与微气候的相关性分析[J]. 南方建筑,2016,173(3):5-10.
    [18]
    司睿,任绍斌,王振. 基于风热环境的开敞空间周边建筑围合研究[J]. 南方建筑,2022,207(1):48-53.
    [19]
    吴园园,王爱霞,秦亚楠,等. 半干旱地区步行街道过渡季微气候生态性营造研究:以呼和浩特市塞上老街、通顺大巷、大召前街为例[J]. 西部人居环境学刊,2019,34(3):26-34.
    [20]
    ZHANG Q,HE S,YANG X. Study on street space microclimate measurement and improvement strategy in Yangmeizhu Street in Beijing[J]. Earth and Environmental Science,2019,267(6).
    [21]
    张德顺,王振. 高密度地区广场冠层小气候效应及人体热舒适度研究:以上海创智天地广场为例[J]. 中国园林,2017,33(4):18-22.
    [22]
    魏冬雪,刘滨谊. 上海创智天地广场热舒适分析与评价[J]. 中国园林,2018,34(2):5-12.
    [23]
    程惠珊,尤达,刘群阅,等. 嵩口古镇小气候与游览路径空间特征之关系研究[J]. 中国园林,2020,36(6):83-88.
    [24]
    薛思寒,冯嘉成,肖毅强. 岭南名园余荫山房庭园空间的热环境模拟分析[J]. 中国园林,2016,32(1):23-27.
    [25]
    侯拓宇,陆明. 严寒城市商业街区风环境感知预测与空间优化[J]. 建筑学报,2018,18-19(增刊1):153-157.
    [26]
    卞晴,赵晓龙,刘笑冰. 水体景观气候调节性研究进展与展望[J]. 风景园林,2020,27(6):88-94.
    [27]
    张雅妮,殷实,肖毅强. 气候适应性视角下的河道空间城市设计评价和策略研究:以广州市荔枝湾涌改造一期工程为例[J]. 西部人居环境学刊,2018,33(3):73-79.
    [28]
    林瀚坤,肖毅强. 绿化表皮对过渡空间的热环境影响实测研究[J]. 西部人居环境学刊,2020,35(5):69-76.
    [29]
    谭瑛,刘思. 基于温湿度实效的绿量测度算法对比研究[J]. 中国园林,2018,34(3):111-116.
    [30]
    XUE F,GOU Z,LAU S S Y. Green open space in high-dense Asian cities:site configurations,microclimates and users’ perceptions[J]. Sustainable Cities and Society,2017,34:114-125.
    [31]
    林毅,施启灿,费彦. 城市商务街区的绿地率精细化管控思路[J]. 南方建筑,2019,193(5):68-72.
    [32]
    赵晓龙,李国杰,高天宇. 哈尔滨典型行道树夏季热舒适效应及形态特征调节机理[J]. 风景园林,2016,137(12):74-80.
    [33]
    陈睿智,杨青娟. 冬季湿冷气候城市户外休憩的微气候适应性研究:以成都市老人为例[J]. 风景园林,2018,25(10):16-20.
    [34]
    蒋毅,徐峰,熊鹰,等. 基于遮阴率的湿热地区慢行道热舒适特征研究[J]. 中国园林,2021,37(10):71-76.
    [35]
    刘梦萱,杨春侠,范兆祥. 城市空间微气候与人群行为关系的研究综述与展望[J]. 风景园林,2022,29(6):121-127.
    [36]
    赵西平,许亘昱,吴扬,等. 南宁市夏季住区室外公共空间小气候对居民活动的影响研究[J]. 建筑科学,2018,34(8):18-24.
    [37]
    SAYAD B,ALKAMA D. Study of the microclimate behavior in spaces between buildings:which strategy to adopt during cold season in Guelma’s public SPACES?[C]// International Conference on Technologies and Materials for Renewable Energy,Environment and Sustainability. Beirut:Lebanon,2019.
    [38]
    CHOW W T,POPE R L,MARTIN C A,et al. Observing and modeling the nocturnal park cool island of and arid city:horizontal and vertical impacts[J]. Theoretical and Applied Climatology,2011,103(1/2):197-211.
    [39]
    杨小山. 室外微气候对建筑空调能耗影响的模拟方法研究[D]. 广州:华南理工大学,2013.
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