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Urban design to lower summertime outdoor temperatures: An empirical study on high-rise housing in Shanghai

机译:降低夏季室外温度的城市设计:上海高层住宅的实证研究

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摘要

This research investigates the effect of urban design factors on summertime urban heat island (UHI) intensity. Ten high-rise residential quarters in the inner city of Shanghai were empirically investigated during mid July to mid August in 2008. On-site design variables were developed to quantify the thermal impacts from density, building layout and greenery. The design variables that were measured on site were correlated with the variation in UHI intensity during the day and night. The results show that variations in UHI are in part due to site planning, building design, and greenery. The overall daytime and nighttime UHI models explain up to 77 and 90 percent of UHI variation, respectively. On-site shading from either buildings or vegetation canopy is the most important factor influencing daytime UHI. The shading factor can distort and dilute behavior of other variables, e.g., green ratio and surface albedo. Nighttime UHI is more complicated due to the influence from anthropogenic heat, and is significantly related to greenery density and coverage. Based on the findings, potential design strategies are proposed in an effort to mitigate UHI, including manipulating building layout and mass to improve shading during the day while facilitating site ventilation at night and increasing site vegetation cover through strategic tree planting. Further recommendations for urban planning approaches to mitigate UHI on the urban scale are proposed.
机译:这项研究调查了城市设计因素对夏季城市热岛强度的影响。在2008年7月中旬至8月中旬,对上海市中心的10个高层住宅小区进行了实证研究。开发了现场设计变量,以量化密度,建筑布局和绿化带来的热影响。现场测量的设计变量与白天和晚上的UHI强度变化相关。结果表明,UHI的差异部分归因于场地规划,建筑设计和绿化。白天和夜晚的UHI总体模型分别解释了UHI变化的77%和90%。建筑物或植被冠层的现场遮荫是影响白天UHI的最重要因素。阴影因子会扭曲和稀释其他变量的行为,例如,生坯比率和表面反照率。由于人为热量的影响,夜间UHI更为复杂,并且与绿化密度和覆盖率显着相关。基于这些发现,提出了潜在的设计策略,以减轻UHI的影响,包括操纵建筑布局和质量以改善白天的阴影,同时促进夜间的场地通风和通过战略性植树增加场地植被的覆盖率。提出了关于城市规划方法的进一步建议,以减轻城市规模的城市居民健康指数。

著录项

  • 来源
    《Building and Environment》 |2011年第3期|p.769-785|共17页
  • 作者单位

    College of Architecture and Urban Planning (CAUP), Tongji University, Shanghai, China Key Laboratory of Ecology and Energy-Saving Study of Dense Habitat (Tongji University), Ministry of Education, China;

    Department of Architecture, The University of Hong Kong, Hong Kong, China;

    College of Architecture and Urban Planning (CAUP), Tongji University, Shanghai, China Key Laboratory of Ecology and Energy-Saving Study of Dense Habitat (Tongji University), Ministry of Education, China;

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  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    heat islands; density; building layout; greenery; urban climate zone; environmental design;

    机译:热岛密度;建筑布局;绿化城市气候区;环境设计;
  • 入库时间 2022-08-17 23:54:31

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