How the Interaction of Heatwaves and Urban Heat Islands Amplify Urban Warming

G. F. Garuma
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引用次数: 3

Abstract

An increase in global temperature will likely result in more intense and frequent heatwaves that would last longer. Simultaneously, the growth of urban population requires more areas of land incorporated into urbanization, because most people are expected to live in cities, which will increase the intensity and duration of urban heat islands. However, the extent of the link between global warming induced heatwaves and urbanization caused heat islands is barely understood. Understanding the link would give a new information about catastrophic heat mitigation strategies. This paper, therefore, quantifies, at the sub-continental scale of Eastern North America, the effects of background perturbations by the synergies between heatwaves and urban heat islands using simulations from the Weather Research and Forecasting (WRF) model, and focusing on the responses of urban energy balances, boundary layer height and vertical profiles of heat, momentum and moisture. Results showed that urban heat islands exacerbate heatwaves by deepening the turbulent boundary layer height, modifying the urban surface energy and regional winds. The fractional energy shift from latent to sensible heat fluxes and the consequent changes to the urban planetary boundary layer tends to amplify the intensity, extent and duration of extensive heatwaves. The response of ground heat fluxes to urban surfaces lags, while urban canopy humidity dissipates earlier because at the onset of the heatwave the surface water evaporates quickly to the point where there is less water left for evaporation leaving the urbanized regions vulnerable to more heating. During the heatwave event, the mean wind speed dropped by 2.5 m/s, hence less cool air is available for ventilation. The planetary boundary layer deepens by a maximum of 90-m over urban compared to rural and this may prolong urban surface heating. Based on the results, it can be concluded that the best heat-stress management strategies from the perspectives of urban energy balance and planetary boundary layer height is an integral approach that would lower sensible heat fluxes and increase surface albedo, latent heat fluxes and wind flows towards urban centers.
热浪与城市热岛的相互作用如何放大城市变暖
全球气温的升高可能会导致更强烈、更频繁的热浪,并且持续时间更长。同时,城市人口的增长需要更多的土地纳入城市化,因为大多数人预计将生活在城市,这将增加城市热岛的强度和持续时间。然而,全球变暖引起的热浪和城市化引起的热岛之间的联系程度几乎不为人所知。了解这种联系将提供关于灾难性热缓解策略的新信息。因此,本文利用天气研究与预报(WRF)模式的模拟,在北美东部次大陆尺度上量化了热浪和城市热岛之间协同作用对背景扰动的影响,重点关注城市能量平衡、边界层高度和热量、动量和湿度的垂直剖面的响应。结果表明,城市热岛通过加深湍流边界层高度、改变城市地表能和区域风来加剧热浪。从潜热通量到感热通量的分式能量转移以及由此引起的城市行星边界层的变化倾向于扩大广泛热浪的强度、范围和持续时间。地面热通量对城市地表的响应滞后,而城市冠层湿度消散较早,因为在热浪开始时,地表水蒸发得很快,剩下的蒸发水较少,使城市化地区容易受到更多的加热。在热浪事件期间,平均风速下降2.5 m/s,因此可用于通风的冷空气减少。与农村相比,城市上空的行星边界层最深可达90米,这可能延长城市地表加热时间。结果表明,从城市能量平衡和行星边界层高度的角度出发,降低感热通量,增加地表反照率、潜热通量和城市中心风向的综合热应力管理策略是最佳的。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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