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Evaluating Mitigation Effects of Urban Heat Islands in a Historical Small Center with the ENVI-Met® Climate Model

机译:使用ENVI-Met ®气候模型评估历史小中心城市热岛的缓解效果

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Urban morphology and increasing building density play a key role in the overall use of energy and promotion of environmental sustainability. The urban environment causes a local increase of temperature, a phenomenon known as Urban Heat Island (UHI). The purpose of this work is the study of the possible formation of an UHI and the evaluation of its magnitude, in the context of a small city, carried out with the ENVI-met® software. For this purpose, a simulation was needed, and this simulation is preparatory for a monitoring campaign on site, which will be held in the immediate future. ENVI-met® simulates the temporal evolution of several thermodynamics parameters on a micro-scale range, creating a 3D, non-hydrostatic model of the interactions between building-atmosphere-vegetation. The weather conditions applied simulate a typical Italian summer heat wave. Three different case-studies have been analyzed: Base Case, Cool Case and Green Case. Analysis of the actual state in the Base Case shows how even in an area with average building density, such as the old town center of a small city, fully developed UHI may rise with strong thermal gradients between built areas and open zones with plenty of vegetation. These gradients arise in a really tiny space (few hundreds of meters), showing that the influence of urban geometry can be decisive in the characterization of local microclimate. Simulations, carried out considering the application of green or cool roofs, showed small relevant effects as they become evident only in large areas heavily built up (metropolis) subject to more intense climate conditions.
机译:城市形态和建筑密度的增加在能源的整体使用和促进环境可持续性方面发挥着关键作用。城市环境导致局部温度升高,这种现象被称为城市热岛(UHI)。这项工作的目的是研究在一个小城市中使用ENVI-met ®软件进行的UHI的可能形成及其规模的评估。为此,需要进行模拟,并且该模拟是为在不久的将来进行的现场监视活动做准备。 ENVI-met ®在微观范围内模拟几个热力学参数的时间演变,从而建立了建筑物与大气之间相互作用的3D非静水模型。所应用的天气条件模拟了典型的意大利夏季热浪。分析了三种不同的案例研究:基本案例,酷案例和绿色案例。在基本案例中对实际状态的分析表明,即使在建筑密度平均的区域(如小城市的老城区)中,充分发展的UHI也会随着建筑区域和植被丰富的开放区域之间的强烈温度梯度而上升。这些梯度出现在一个很小的空间(几百米)中,表明城市几何形状的影响对于表征当地的微气候起着决定性的作用。考虑到绿色或凉爽屋顶的应用而进行的模拟显示了较小的相关影响,因为它们仅在受更强烈的气候条件影响的大面积堆积(大都市)中才变得明显。

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