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The impact of heat mitigation strategies on the energy balance of a neighborhood in Los Angeles

机译:散热策略对洛杉矶附近社区能量平衡的影响

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Heat mitigation strategies can reduce excess heat in urban environments. These strategies, including solar reflective cool roofs and pavements, green vegetative roofs, and street vegetation, alter the surface energy balance to reduce absorption of sunlight at the surface and subsequent transfer to the urban atmosphere. The impacts of heat mitigation strategies on meteorology have been investigated in past work at the mesoscale and global scale. For the first time, we focus on the effect of heat mitigation strategies on the surface energy balance at the neighborhood scale. The neighborhood under investigation is El Monte, located in the eastern Los Angeles basin in Southern California. Using a computational fluid dynamics model to simulate micrometeorology at high spatial resolution, we compare the surface energy balance of the neighborhood assuming current land cover to that with neighborhood-wide deployment of green roof, cool roof, additional trees, and cool pavement as the four heat mitigation strategies. Of the four strategies, adoption of cool pavements led to the largest reductions in net radiation (downward positive) due to the direct impact of increasing pavement albedo on ground level solar absorption. Comparing the effect of each heat mitigation strategy shows that adoption of additional trees and cool pavements led to the largest spatial-maximum air temperature reductions at 14:00 h (1.0 and 2.0 degrees C, respectively). We also investigate how varying the spatial coverage area of heat mitigation strategies affects the neighborhood-scale impacts on meteorology. Air temperature reductions appear linearly related to the spatial extent of heat mitigation strategy adoption at the spatial scales and baseline meteorology investigated here.
机译:减少热量的策略可以减少城市环境中的多余热量。这些策略(包括反射太阳能的凉爽屋顶和人行道,绿色植物屋顶和街道植被)改变了表面能平衡,从而减少了地面对太阳光的吸收并随后转移至城市大气中。过去的研究已经在中尺度和全球范围内研究了减热策略对气象的影响。首次,我们着重研究了散热策略对邻域尺度上的表面能平衡的影响。受调查的社区是位于南加利福尼亚洛杉矶东部盆地的El Monte。使用计算流体动力学模型在高空间分辨率下模拟微气象,我们比较了假设当前土地覆被的邻里的表面能平衡与在社区范围内部署的绿色屋顶,凉爽的屋顶,额外的树木和凉爽的路面这四个方面的能量平衡。散热策略。在这四种策略中,由于人行道反照率增加对地面太阳吸收的直接影响,采用凉爽的人行道导致净辐射的最大减少(向下正向)。比较每种降温策略的效果,结果表明,采用额外的树木和凉爽的人行道在14:00 h(分别为1.0和2.0摄氏度)导致最大的最大空间气温降低。我们还研究了散热策略的空间覆盖范围的变化如何影响邻域尺度对气象的影响。在这里研究的空间尺度和基准气象学上,气温降低似乎与采用减热策略的空间范围呈线性关系。

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