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Effects of Climate Change on the Stream Flows in Upper Middle Fork Feather River Watershed and on the Groundwater Stresses in Sierra Valley Aquifer Based on Long-Term Dynamical Downscaling

机译:基于长期动态缩小的气候变化对中间叉羽流域流域流动的影响,对塞拉谷含水层的地下水应力

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Watershed Environmental Hydrology Hydro-Climate Model (WEHY-HCM) (Kavvas et al, 2012; Kure et al, 2012) was used to simulate the surface flows of the Upper Middle Fork (UMF) watershed under different climate conditions. Long-term historical atmospheric conditions over the Middle Fork Feather River Basin were reconstructed for the 63-year period between October 1950 and September 2013 by the dynamical downscaling of NCEP/NCAR Reanalysis Data (Kistler et al, 2001). Future atmospheric conditions were also simulated by dynamically downscaling future climate projections during the 21st century from two GCMs (CCSM3 and ECHAM5) based on four SRES future climate scenarios. The downscaled atmospheric data were used as the inputs into a physically-based hydrologic model of the WEHY-HCM, to simulate stream flows at the Upper Middle Fork watershed. The data were also used with DWR's physically based groundwater and root zone model, IWFM (Dogrul, 2014), to simulate groundwater stresses in the Sierra Valley Aquifer of Northern California.
机译:分水岭环境水文水电气候模式(WEHY-HCM)(Kavvas等人,2012;吴等人,2012)被用来模拟上部中间叉子(UMF)分水岭下不同的气候条件下的表面流动。在中间叉子羽毛河流域长期的历史的大气条件,重建由NCEP / NCAR再分析资料的动力学缩减1950年10月和2013年9月之间的63年期间(奇石等,2001)。未来大气条件也由基于四个SRES未来气候情况下有两种GCMS(CCSM3和ECHAM5)在21世纪动态缩减未来气候的预测模拟。缩减的大气数据被用作输入到WEHY-HCM的基于物理的水文模型,以模拟流流在上部中间叉子的分水岭。该数据也使用DWR的基于物理的地下水和根区域模型,IWFM(Dogrul,2014),在北加州内华达谷含水层地下水模拟应力。

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