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The influence of the land surface on the transition from dry to wet season in Amazonia

机译:亚马逊干陆地对旱季至雨季过渡的影响

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摘要

Analysis of the fifteen years of European Centre for Medium Range Weather Forecasts (ECMWF) reanalysis suggests that the transition from dry to wet season in Southern Amazonia is initially driven by increases of surface latent heat flux. These fluxes rapidly reduce Convective Inhibition Energy (CINE) and increase Con-vective Available Potential Energy (CAPE), consequently providing favourable conditions for increased rainfall even before the large-scale circulation has changed. The increase of rainfall presumably initiates the reversal of the cross-equatorial flow, leading to large-scale net moisture convergence over Southern Amazonia. An analysis of early and late wet season onsets on an interannual scale shows that a longer dry season with lower rainfall reduces surface latent heat flux in the dry and earlier transition periods compared to that of a normal wet season onset. These conditions result in a higher CINE and a lower CAPE, causing a delay in the increase of local rainfall in the initiating phase of the transition and consequently in the wet season onset. Conversely, a wetter dry season leads to a higher surface latent heat flux and weaker CINE, providing a necessary condition for an earlier increase of local rainfall and an earlier wet season onset. Our results imply that if land use change in Amazonia reduces rainfall during dry and transition seasons, it could significantly delay the wet season onset and prolong the dry season.
机译:对欧洲中型天气预报中心(ECMWF)进行的15年重新分析的分析表明,南部亚马逊河地区从干旱到潮湿季节的转变最初是由表面潜热通量增加引起的。这些通量迅速降低了对流抑制能(CINE),并增加了对流可用势能(CAPE),因此即使在大规模环流发生变化之前,也为增加降雨提供了有利条件。降雨的增加可能引发了跨赤道水流的逆转,从而导致南亚马逊南部的大规模净水分汇聚。在年际尺度上对湿季开始和晚期的分析表明,与正常的湿季开始相比,较长的旱季和较低的降雨减少了干旱和较早过渡期的表面潜热通量。这些条件导致较高的CINE和较低的CAPE,从而在过渡的初始阶段(因此在雨季开始)导致局部降雨增加的延迟。相反,较干燥的干燥季节导致较高的表面潜热通量和较弱的CINE,为早日增加局部降雨和较早的湿季提供了必要条件。我们的结果表明,如果亚马逊地区的土地利用变化减少了干旱和过渡季节的降雨,则可能会大大延迟雨季的发作并延长旱季。

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