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Comparison of climate change scenarios generated from regional climate model experiments and statistical downscaling

机译:比较区域气候模型实验和统计缩减产生的气候变化情景

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摘要

We compare regional climate change scenarios (temperature and precipitation) over eastern Nebraska producted by a semiempirical statistical downscaling (SDS) technique and regional climate model (RegCM2) experiments, both using large scale information from the same coarse resolution general circulation model (GCM) control and 2 * CO_2 simulations. The SDS method is based on the circulation pattern classification technique in combination with stochastic generation of daily time series of temperature and precipitation. It uses daily values of 700 mbar geopotential heights as the large-scale circulation variable. The regional climate model is driven by initial and lateral boundary conditions from the GCM. The RegCM2 exhibited greater spatial variability than the SDS method for change in both temperature and precipitation. The SDS method produced a seasonal cycle of temperature change with a much larger amplitude than that of the RegCM2 or the GCM. Daily variability of temperature mainly decreased for both downscaling methods and the GCM. Changes in mean daily precipitation varied between SDS and RegCM2. The RegCM2 simulated both increases and decreases in the probability of precipitation, while the SDS method produced only increases. We explore possible dynamical and physical reasons for the differences in the scenarios produced by the two methods and the GCM.
机译:我们比较了使用半经验统计降尺度(SDS)技术和区域气候模型(RegCM2)实验产生的内布拉斯加州东部地区的区域气候变化情景(温度和降水),两者均使用了来自相同粗分辨率普通循环模型(GCM)控制的大规模信息和2 * CO_2模拟。 SDS方法基于循环模式分类技术,结合了随机生成的每日温度和降水时间序列。它使用每日700 mbar的地势高度值作为大规模的循环变量。区域气候模型是由GCM的初始和横向边界条件驱动的。对于温度和降水的变化,RegCM2的空间变异性都比SDS方法大。 SDS方法产生了一个温度变化的季节性周期,其幅度比RegCM2或GCM大得多。降温方法和GCM均主要降低了温度的每日变化。日平均降水量的变化在SDS和RegCM2之间变化。 RegCM2模拟的降水概率增加和减少,而产生的SDS方法仅增加。我们探讨了两种方法和GCM产生的场景差异的可能的动力学和物理原因。

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