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Study on Surface Heat Budget of Various Pavements for Urban Heat Island Mitigation

机译:缓解城市热岛的各种路面地表热量收支研究

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The surface heat budgets of various pavement surfaces are studied with the aim of mitigating the urban heat island effect. In this study, the thermal characteristics of pavements are examined using data from observations. The net radiation, surface temperature, temperature under the surface, conduction heat flux, and core weight for each experimental surface are recorded, together with the weather conditions at the time of observation. The latent heat flux is estimated from the observed weight of the cores. The surface heat budget under the same weather conditions is examined, and the sensible heat flux from each target surface is calculated. The parameters that influence the surface heat budget, for example, solar reflectance (albedo), evaporative efficiency, heat conductivity, and heat capacity, are examined. On a typical summer day, the maximum reduction in the sensible heat flux from that on a normal asphalt surface is about 150 W/m2for an asphalt surface with water-retaining material and about 100 W/m2for a cement concrete surface with water-retaining material, depending on the albedo of each surface.
机译:为了减轻城市热岛效应,研究了各种路面的表面热收支。在这项研究中,使用来自观测的数据来检查路面的热特性。记录每个实验表面的净辐射,表面温度,表面温度,传导热通量和铁心重量,以及观察时的天气状况。潜热通量是从观察到的铁心重量估算出来的。检查相同天气条件下的地表热量收支,并计算来自每个目标表面的显热通量。检查了影响表面热量收支的参数,例如,太阳反射率(反照率),蒸发效率,热导率和热容。在一个典型的夏日,带保水材料的沥青表面的显热通量比正常沥青表面的最大减少约150 W / m2,带保水材料的水泥混凝土表面的显热通量约减少100 W / m2。 ,取决于每个表面的反照率。

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