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Urban forestry and cool roofs: Assessment of heat mitigation strategies in Phoenix residential neighborhoods

机译:城市林业和凉爽的屋顶:凤凰城居民区的减热策略评估

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The City of Phoenix (Arizona, USA) developed a Tree and Shade Master Plan and a Cool Roofs initiative to ameliorate extreme heat during the summer months in their arid city. This study investigates the impact of the City's heat mitigation strategies on daytime microclimate for a pre-monsoon summer day under current climate conditions and two climate change scenarios. We assessed the cooling effect of trees and cool roofs in a Phoenix residential neighborhood using the microclimate model ENVI-met. First, using xeric landscaping as a base, we created eight tree planting scenarios (from 0% canopy cover to 30% canopy cover) for the neighborhood to characterize the relationship between canopy cover and daytime cooling benefit of trees. In a second set of simulations, we ran ENVI-met for nine combined tree planting and landscaping scenarios (mesic, oasis, and xeric) with regular roofs and cool roofs under current climate conditions and two climate change projections. For each of the 54 scenarios, we compared average neighborhood mid-afternoon air temperatures and assessed the benefits of each heat mitigation measure under current and projected climate conditions. Findings suggest that the relationship between percent canopy cover and air temperature reduction is linear, with 0.14 degrees C cooling per percent increase in tree cover for the neighborhood under investigation. An increase in tree canopy cover from the current 10% to a targeted 25% resulted in an average daytime cooling benefit of up to 2.0 degrees C in residential neighborhoods at the local scale. Cool roofs reduced neighborhood air temperatures by 0.3 degrees C when implemented on residential homes. The results from this city-specific mitigation project will inform messaging campaigns aimed at engaging the city decision makers, industry, and the public in the green building and urban forestry initiatives. (C) 2014 The Authors. Published by Elsevier GmbH. This is an open access article under the CC BY-NC-ND license
机译:凤凰城(美国亚利桑那州)制定了“树木和树荫总体规划”以及“凉爽屋顶计划”,以缓解夏季干旱城市的高温。这项研究调查了在当前气候条件和两个气候变化情景下,季风前夏季夏季城市减热策略对白天小气候的影响。我们使用微气候模型ENVI-met评估了凤凰城居民区树木和凉爽屋顶的降温效果。首先,以干旱环境美化为基础,我们为邻域创建了八个植树方案(从0%的树冠覆盖率到30%的树冠覆盖率),以表征树冠覆盖率与树木日间降温效益之间的关系。在第二组模拟中,我们针对当前气候条件下的常规屋顶和凉爽屋顶以及两个气候变化预测,对九种植树和美化情景(中,绿洲和干旱)进行了ENVI-met运算。对于这54种情景中的每一种,我们都比较了午后附近平均气温,并评估了在当前和预计的气候条件下每种降温措施的益处。研究结果表明,树冠覆盖率与气温降低之间的关系是线性的,在所调查的社区中,树冠覆盖率每增加百分之0.14℃降温。树木的树冠覆盖率从目前的10%增加到目标25%,导致当地规模的居民区平均日间降温效益提高了2.0摄氏度。在住宅上使用凉爽的屋顶后,周围的空气温度降低了0.3摄氏度。这个针对特定城市的缓解项目的结果将为旨在使城市决策者,行业和公众参与绿色建筑和城市林业计划的宣传活动提供信息。 (C)2014作者。由Elsevier GmbH发布。这是CC BY-NC-ND许可下的开放获取文章

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