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Natural climate variability and teleconnections to precipitation over the Pacific-North American region in CMIP3 and CMIP5 models

机译:在CMIP3和CMIP5模型中,太平洋-北美地区的自然气候变化和与降水的遥相关

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Natural climate variability will continue to be an important aspect of future regional climate even in the midst of long-term secular changes. Consequently, the ability of climate models to simulate major natural modes of variability and their teleconnections provides important context for the interpretation and use of climate change projections. Comparisons reported here indicate that the CMIP5 generation of global climate models shows significant improvements in simulations of key Pacific climate mode and their teleconnections to North America compared to earlier CMIP3 simulations. The performance of 14 models with simulations in both the CMIP3 and CMIP5 archives are assessed using singular value decomposition analysis of simulated and observed winter Pacific sea surface temperatures (SSTs) and concurrent precipitation over the contiguous United States and northwestern Mexico. Most of the models reproduce basic features of the key natural mode and their teleconnections, albeit with notable regional deviations from observations in both SST and precipitation. Increasing horizontal resolution in the CMIP5 simulations is an important, but not a necessary, factor in the improvement from CMIP3 to CMIP5.
机译:即使在长期的长期变化中,自然的气候变异性仍将是未来区域气候的重要方面。因此,气候模型模拟主要自然变化模式及其遥相关的能力为解释和使用气候变化预测提供了重要的背景。此处报告的比较结果表明,与早期的CMIP3模拟相比,CMIP5代全球气候模型显示出在关键的太平洋气候模式及其与北美的遥距连接模拟方面的显着改进。使用对模拟和观测到的冬季太平洋海表温度(SST)的奇异值分解分析以及连续的美国和墨西哥西北部的同时降水,评估了CMIP3和CMIP5档案中14个模型的性能。大多数模型都再现了关键自然模式及其遥相关的基本特征,尽管与海表温度和降水观测值存在明显的区域差异。在CMIP5仿真中提高水平分辨率是从CMIP3升级到CMIP5的重要但非必要因素。

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