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Urban heat island impacted by fine particles in Nanjing China

机译:中国南京市受细颗粒影响的城市热岛

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摘要

Atmospheric aerosol particles (especially particles with aerodynamic diameters equal to or less than 2.5 μm, called PM2.5) can affect the surface energy balance and atmospheric heating rates and thus may impact the intensity of urban heat islands. In this paper, the effect of fine particles on the urban heat island intensity in Nanjing was investigated via the analysis of observational data and numerical modelling. The observations showed that higher PM2.5 concentrations over the urban area corresponded to lower urban heat island (UHI) intensities, especially during the day. Under heavily polluted conditions, the UHI intensity was reduced by up to 1 K. The numerical simulation results confirmed the weakening of the UHI intensity due to PM2.5 via the higher PM2.5 concentrations present in the urban region than those in the suburban areas. The effects of the fine particles on the UHI reduction were limited to the lowest 500–1000 m. The daily range of the surface air temperature was also reduced by up to 1.1 K due to the particles’ radiative effects. In summary, PM2.5 noticeably impacts UHI intensity, which should be considered in future studies on air pollution and urban climates.
机译:大气气溶胶颗粒(尤其是空气动力学直径等于或小于2.5μm的颗粒,称为PM2.5)会影响表面能平衡和大气加热速率,因此可能会影响城市热岛的强度。本文通过观测数据分析和数值模拟研究了细颗粒物对南京城市热岛强度的影响。观测结果表明,市区中较高的PM2.5浓度对应于较低的城市热岛(UHI)强度,尤其是在白天。在严重污染的情况下,UHI强度降低了多达1 K.数值模拟结果证实,由于PM2.5浓度较高,城市地区的PM2.5浓度高于郊区,导致PM2.5强度降低。 。细颗粒对降低UHI的影响被限制在最低的500–1000µm。由于颗粒的辐射效应,每天地面空气温度范围也降低了多达1.1K。总而言之,PM2.5会显着影响UHI强度,在有关空气污染和城市气候的未来研究中应考虑这一点。

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