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Biomass burning CCN enhance the dynamics of a?mesoscale convective system over the La Plata Basin: a?numerical approach

机译:生物质燃烧的CCN增强了拉普拉塔盆地上中尺度对流系统的动力学:一种数值方法

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High aerosol loadings are discharged into the atmosphere every year by biomass burning in the Amazon and central Brazil during the dry season (July–December). These particles, suspended in the atmosphere, can be carried via a?low-level jet toward the La Plata Basin, one of the largest hydrographic basins in the world. Once they reach this region, the aerosols can affect mesoscale convective systems (MCSs), whose frequency is higher during the spring and summer over the basin. The present study is one of the first that seeks to understand the microphysical effects of biomass burning aerosols from the Amazon Basin on mesoscale convective systems over the La Plata Basin. We performed numerical simulations initialized with idealized cloud condensation nuclei (CCN) profiles for an MCS case observed over the La Plata Basin on 21?September 2010. The experiments reveal an important link between CCN number concentration and MCS dynamics, where stronger downdrafts were observed under higher amounts of aerosols, generating more updraft cells in response. Moreover, the simulations show higher amounts of precipitation as the CCN concentration increases. Despite the model's uncertainties and limitations, these results represent an important step toward the understanding of possible impacts on the Amazon biomass burning aerosols over neighboring regions such as the La Plata Basin.
机译:在干旱季节(7月至12月),亚马逊和巴西中部的生物质燃烧每年都会将大量气溶胶排放到大气中。这些悬浮在大气中的颗粒可以通过低空喷流被带到拉普拉塔盆地,这是世界上最大的水文盆地之一。一旦到达该区域,气溶胶就会影响中尺度对流系统(MCSs),在春季和夏季,流域内的中尺度对流系统频率较高。本研究是第一个试图了解亚马逊盆地生物质燃烧气溶胶对拉普拉塔盆地中尺度对流系统的微观物理影响的研究之一。我们对2010年9月21日在拉普拉塔盆地观察到的MCS案例进行了以理想化云凝结核(CCN)剖面初始化的数值模拟。实验揭示了CCN数浓度与MCS动力学之间的重要联系,在此条件下观察到了更强的下沉气流更高数量的气溶胶,从而产生更多上升气流细胞。此外,模拟结果表明,随着CCN浓度的增加,会有更多的降水。尽管该模型存在不确定性和局限性,但这些结果还是迈出了重要一步,旨在了解对邻近地区(如拉普拉塔盆地)亚马逊生物质燃烧气溶胶的可能影响。

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