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Impacts of climate change under CMIP5 RCP scenarios on the streamflow in the Dinder River and ecosystem habitats in Dinder National Park, Sudan

机译:CMIP5 RCP情景下的气候变化对苏丹德尔德国家公园的德尔德河水流和生态系统栖息地的影响

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The fate of seasonal river ecosystem habitats under climate change essentially depends on the changes in annual recharge of the river, which are related to alterations in precipitation and evaporation over the river basin. Therefore, the change in climate conditions is expected to significantly affect hydrological and ecological components, particularly in fragmented ecosystems. This study aims to assess the impacts of climate change on the streamflow in the Dinder River basin (DRB) and to infer its relative possible effects on the Dinder National Park (DNP) ecosystem habitats in Sudan. Four global circulation models (GCMs) from Coupled Model Intercomparison Project Phase 5 and two statistical downscaling approaches combined with a hydrological model (SWAT – the Soil and Water Assessment Tool) were used to project the climate change conditions over the study periods 2020s, 2050s, and 2080s. The results indicated that the climate over the DRB will become warmer and wetter under most scenarios. The projected precipitation variability mainly depends on the selected GCM and downscaling approach. Moreover, the projected streamflow is quite sensitive to rainfall and temperature variation, and will likely increase in this century. In contrast to drought periods during the 1960s, 1970s, and 1980s, the predicted climate change is likely to affect ecosystems in DNP positively and promote the ecological restoration for the habitats of flora and fauna.
机译:气候变化下河流生态系统季节性栖息地的命运主要取决于河流年补给量的变化,这与流域降水和蒸发量的变化有关。因此,预计气候条件的变化将严重影响水文和生态成分,特别是在零散的生态系统中。这项研究旨在评估气候变化对change德河流域(DRB)径流的影响,并推断其对苏丹the德国家公园(DNP)生态系统生境的相对可能影响。耦合模型比较项目第5阶段的四种全球循环模型(GCM)和两种统计缩减方法与水文模型(SWAT-土壤和水评估工具)相结合,用于预测2020年代,2050年代研究期间的气候变化条件和2080年代。结果表明,在大多数情况下,DRB上的气候将变暖和变湿。预计的降水变化率主要取决于所选的GCM和降尺度方法。此外,预计的流量对降雨和温度变化非常敏感,并且在本世纪可能会增加。与1960年代,1970年代和1980年代的干旱时期相比,预测的气候变化可能对DNP的生态系统产生积极影响,并促进动植物栖息地的生态恢复。

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