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Right tree, right place (urban canyon): Tree species selection approach for optimum urban heat mitigation - development and evaluation

机译:正确的树,正确的地方(城市峡谷):最佳城市减热的树种选择方法-开发和评估

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摘要

The re-integration of trees into the urban landscape is a veritable strategy for urban climate mitigation and adaptation. However, dysfunctional trees in terms of urban heat mitigation are dominant in many sub-tropical cities' landscapes due to the lack of scientific basis of tree selection. Therefore, this study proposes and evaluates a methodological framework as an approach for "right tree, right place" for urban heat mitigation through parametric ENVI-met simulations that involve the combination of 54 generic tree forms and 10 characteristic urban morphology - Sky-View Factor (SVF). Results show variable temperature regulation by tree forms (species) with varying magnitude in different urban morphology. Daytime and nighttime temperature regulation effects were between 0.3 ℃ - 1.0 ℃ and 0.0 ℃ - 2.0 ℃, respectively depending on tree forms and SVF value. Furthermore, the Heat Reduction Potential (HRP) of trees forms were determined in terms of their human thermal comfort improvement. In general, we found a range of +5% and — 20% depending on SVF, negative and positive values imply heat reduction and increment, respectively. With the competing shading effect of buildings, the HRP of trees reduces from high to low SVF area with variable magnitude among tree forms (species). Hence, the proposed morphology-based tree selection approach was evaluated by comparison with two uninformed selection approaches in a realistic urban neighborhood in Hong Kong. Results clearly indicate the proposed approach's capability in improving human thermal comfort by up two times more than either of the other approaches. Finally, evidence-based recommendations were given for the reference of policy-makers when they make urban green development plan.
机译:将树木重新融入城市景观是城市减缓和适应气候变化的真正战略。然而,由于缺乏树木选择的科学依据,城市减热方面功能失调的树木在许多亚热带城市的景观中占主导地位。因此,本研究提出并评估了一种方法框架,作为通过参数ENVI-met模拟(包括54种普通树形式和10种城市形态特征的组合)来缓解城市热量的“正确的树,正确的地方”的方法-Sky-View Factor (SVF)。结果表明,在不同的城市形态下,树木形态(物种)的温度调节程度各不相同。白天和夜间的温度调节效果分别在0.3℃-1.0℃和0.0℃-2.0℃之间,具体取决于树形和SVF值。此外,根据人类对热舒适性的改善程度来确定树木形态的减少热量潜力(HRP)。通常,根据SVF,我们发现范围为+ 5%和-20%,负值和正值分别表示热量减少和增加。由于建筑物具有竞争性的阴影效果,树木的HRP从高SVF区域减少到低SVF区域,并且在树木形式(物种)之间变化幅度很大。因此,通过与香港一个现实的城市社区中的两种不知情的选择方法进行比较,对所提出的基于形态学的树木选择方法进行了评估。结果清楚地表明,所提出的方法在改善人体热舒适性方面的能力是其他任何一种方法的两倍。最后,提出了循证建议,供决策者制定城市绿色发展计划时参考。

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  • 来源
    《The Science of the Total Environment》 |2020年第1期|137461.1-137461.12|共12页
  • 作者单位

    Institute of Future Cities The Chinese University of Hong Kong New Territories Hong Kong School of Geography University College Dublin Dublin Ireland;

    School of Architecture The Chinese University of Hong Kong New Territories Hong Kong;

    Institute of Future Cities The Chinese University of Hong Kong New Territories Hong Kong;

    Institute of Future Cities The Chinese University of Hong Kong New Territories Hong Kong Faculty of Architecture The University of Hong Kong Pokfulam Hong Kong;

    Institute of Future Cities The Chinese University of Hong Kong New Territories Hong Kong School of Architecture The Chinese University of Hong Kong New Territories Hong Kong;

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

    UHI; thermal comfort; Tree-planting; Tree forms (species); Street-canyon; Urban densities;

    机译:UHI;热舒适度植树;树形(物种);街头峡谷;城市密度;

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