绿化和景观设计对太阳辐射和热岛缓解的影响——以炎热气候下林荫大道为例

Sundus Shareef
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引用次数: 3

摘要

在炎热地区,绿化是降低室外气温、改善小气候的重要因素之一。以往的研究主要集中在特定层面上对城市热岛的研究;本研究从不同层次、行人、树冠、边界三种类型的城市热岛上考察绿化对大气的影响,提供绿化对大气影响的整体形象。此外,尽管之前的研究已经解决了植被影响问题,但没有发现有价值的研究来调查阿联酋当地气候条件下植被的影响。在本研究中,将调查不同类型的绿化,以发现它们对阿联酋炎热气候条件下室外小气候参数和UHI的影响。本研究的案例研究是位于迪拜的一条大道;选择国际媒体保护区的主要大道,根据植被类型和叶面积密度(LAD),使用ENVI-met模拟不同的场景。结果表明:12 m乔木和圆柱乔木是降低气温最有效的植被;这些情景与现有情况之间的差异分别达到0.70°C和0.66°C。10米高的树木也对降低0.50°C的气温有影响。相同植被类型对短波辐射的吸收表现为正向的。与参考情况相比,12米和10米树木的反射波减少量分别为36.07 W/m2和31.45 W/m2。此外,在所研究的热岛热岛水平下,拟议情景下的气温降低可达2.41°C、1.12°C和1.08°C。本研究的结果将提供一个峡谷绿化原型,在炎热潮湿的气候地区具有优化的性能。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
The Influence of Greenery and Landscape Design on Solar Radiation and UHI Mitigation: A Case Study of a Boulevard in a Hot Climate
Greenery is one of the most influential factors in reducing the outdoor air temperature and enhancing the microclimate in hot areas. Previous studies focused on studying Urban Heat Islands (UHI) on a specific level; this research investigates the impact of greenery on different levels and three types of UHI, pedestrian, canopy, and boundary, to provide a holistic image of greenery impact on the atmosphere. Further, whereas vegetation impact has been addressed in previous studies, no valuable study has been found that investigates the impact of vegetation within the local climate conditions of the UAE. In this research, different types of greenery will be investigated to find their impact on outdoor microclimate parameters and the UHI within the hot climate conditions of the UAE. The case study of this research is a boulevard located in Dubai; the International Media Protection Zone’s main boulevard was selected to simulate different scenarios based on vegetation type and Leaf Area Density (LAD) using ENVI-met. The results showed that 12 m trees and the cylindrical tree are the most effective vegetation in reducing the air temperature; the variation between these scenarios and the existing case reaches 0.70 °C and 0.66 °C, respectively. The 10 m trees also have an influencing impact on reducing the air temperature by 0.50 °C. The same vegetation types showed a positive performance in absorbing shortwave radiation. The reduction in the reflected wave compared to the reference case was 36.07 W/m2 and 31.45 W/m2 for the 12 m and 10 m trees, respectively. Furthermore, the reduction in air temperature of a proposed scenario can reach 2.41 °C, 1.12 °C, and 1.08 °C for the investigated UHI levels. The results of this study will provide a canyon greenery prototype, with optimized performance in hot, humid climate areas.
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