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Cooling and humidifying effect of plant communities in subtropical urban parks

机译:亚热带城市公园植物群落的降温增湿作用

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摘要

Urban vegetation has been proved to play an important role in mitigating the heat island effect. However, it is not clear how independent small-scale plant communities affected the microclimate. In this paper, the effects of fifteen plant communitieson temperature and relative humidity were investigated from November 2010 to October 2011 in urban parks in subtropical Shenzhen City, China. The canopy density, canopy area, tree height and the background climate conditions under plant communities weremeasured. The effects of small-scale plant communities on temperature and relative humidity were the most significant at 1400-1500 h during the day. The temperature reduction and relative humidity increase due to small-scale plant communities were higherin summer, followed by autumn, spring and winter. As compared to the control open sites, the temperature reduction due to plant communities ranged from 2.14°C to 5.15 °C, and the relative humidity increase ranged from 6.21% to 8.30%. We found that multilayer plant communities were the most effective in terms of their cooling and humidifying effect, while bamboo groves were the least effective. Regression results revealed that four factors, namely canopy density, canopy area, tree height and solar radiation, had significant influence on temperature reduction and relative humidity increase.
机译:事实证明,城市植被在缓解热岛效应方面起着重要作用。但是,尚不清楚独立的小型植物群落如何影响小气候。本文研究了2010年11月至2011年10月在深圳亚热带城市公园中15个植物群落对温度和相对湿度的影响。测量了植物群落下的冠层密度,冠层面积,树高和背景气候条件。在白天,小型植物群落对温度和相对湿度的影响在1400-1500 h最为显着。夏季,由于小规模植物群落而造成的温度降低和相对湿度升高较高,其次是秋季,春季和冬季。与对照空地相比,植物群落引起的温度降低范围为2.14°C至5.15°C,相对湿度增加范围为6.21%至8.30%。我们发现,多层植物群落在降温和增湿效果方面最有效,而竹林效果最差。回归结果表明,冠层密度,冠层面积,树高和太阳辐射四个因素对降温和相对湿度增加有显着影响。

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