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首页> 外文期刊>Urban Forestry & Urban Greening >The effect of urban leaf area on summertime urban surface kinetic temperatures: A Terre Haute case study
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The effect of urban leaf area on summertime urban surface kinetic temperatures: A Terre Haute case study

机译:城市叶面积对夏季城市表面动力学温度的影响:Terre Haute案例研究

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摘要

The urban heat island effect (UHIE) has been documented in many temperate region cities. One cause of the UHIE is the replacement of green spaces with impervious materials as urbanization commences and the city builds up and fills in. During the summer, elevated urban temperatures result in increased electricity usage, higher pollution levels, and greater resident discomfort. Through evapotranspiration and the interception of solar radiation, increasing urban tree canopy cover can help mitigate the UHIE. While this is universally accepted, the exact statistical relationship between urban leaf area (as measured by leaf area index, LAI) and urban temperatures has not been extensively studied. In a case study conducted in urban/suburban Terre Haute, Indiana, USA, simple linear regression was employed to quantify the relationship between in situ ceptometer LAI measurements and surface kinetic temperatures (SKTs) measured using thermal satellite imagery acquired at 1100 local time. For the 143 sample sites located in the study area, LAI accounted for 62% of the variation in surface temperature. For every unit increase in LAI, surface temperature decreased by 1.2 deg C.
机译:在许多温带地区的城市中都有城市热岛效应(UHIE)的记录。 UHIE的一个原因是,随着城市化的开始,城市的建造和填埋,用不透水的材料代替了绿色空间。在夏季,城市温度升高导致用电量增加,污染水平增加以及居民的不适感增加。通过蒸散和太阳辐射的拦截,增加城市树冠的覆盖范围可以帮助缓解UHIE。尽管这已被普遍接受,但尚未广泛研究城市叶面积(通过叶面积指数,LAI衡量)与城市温度之间的确切统计关系。在美国印第安纳州市区/郊区Terre Haute进行的案例研究中,使用简单的线性回归来量化就地感知计LAI测量值与使用在当地时间1100年获取的热卫星图像测量的表面动力学温度(SKT)之间的关系。对于研究区域内的143个采样点,LAI占表面温度变化的62%。每增加LAI单位,表面温度就会降低1.2摄氏度。

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