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Land surface albedo and vegetation feedbacks enhanced the millennium drought in south-east Australia

机译:地表反照率和植被反馈加剧了澳大利亚东南部的千年干旱

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摘要

In this study, we have examined the ability of a regional climate model?(RCM) to simulate the extended drought that occurred throughout the period of?2002 through?2007 in south-east Australia. In particular, the ability to reproduce the two drought peaks in?2002 and?2006 was investigated. Overall, the RCM was found to reproduce both the temporal and the spatial structure of the drought-related precipitation anomalies quite well, despite using climatological seasonal surface characteristics such as vegetation fraction and albedo. This result concurs with previous studies that found that about two-thirds of the precipitation decline can be attributed to the El Ni?o–Southern Oscillation (ENSO). Simulation experiments that allowed the vegetation fraction and albedo to vary as observed illustrated that the intensity of the drought was underestimated by about 10?% when using climatological surface characteristics. These results suggest that in terms of drought development, capturing the feedbacks related to vegetation and albedo changes may be as important as capturing the soil moisture–precipitation feedback. In order to improve our modelling of multi-year droughts, the challenge is to capture all these related surface changes simultaneously, and provide a comprehensive description of land surface–precipitation feedback during the droughts development.
机译:在这项研究中,我们研究了区域气候模式(RCM)模拟澳大利亚东南部2002年至2007年期间持续干旱的能力。特别地,研究了在2002年和2006年重现两个干旱高峰的能力。总体而言,尽管使用了诸如植被比例和反照率之类的季节性气候表面特征,但RCM被很好地再现了与干旱有关的降水异常的时间和空间结构。该结果与以前的研究一致,后者发现约三分之二的降水量下降可归因于厄尔尼诺-南方涛动(ENSO)。使植被比例和反照率变化的模拟实验表明,当使用气候表面特征时,干旱强度被低估了约10%。这些结果表明,就干旱发展而言,捕获与植被和反照率变化有关的反馈与捕获土壤水分和降水反馈一样重要。为了改善我们对多年干旱的建模,面临的挑战是要同时捕获所有这些相关的地表变化,并提供干旱发展过程中对地表降水反馈的全面描述。

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