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Simulations of Eurasian Winter Temperature Trends in Coupled and Uncoupled CFSv2 被引量:2
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作者 Thomas W.COLLOW Wanqiu WANG Arun KUMAR 《Advances in Atmospheric Sciences》 SCIE CAS CSCD 2018年第1期14-26,共13页
Conflicting results have been presented regarding the link between Arctic sea-ice loss and midlatitude cooling, particularly over Eurasia. This study analyzes uncoupled(atmosphere-only) and coupled(ocean–atmosphere) ... Conflicting results have been presented regarding the link between Arctic sea-ice loss and midlatitude cooling, particularly over Eurasia. This study analyzes uncoupled(atmosphere-only) and coupled(ocean–atmosphere) simulations by the Climate Forecast System, version 2(CFSv2), to examine this linkage during the Northern Hemisphere winter, focusing on the simulation of the observed surface cooling trend over Eurasia during the last three decades. The uncoupled simulations are Atmospheric Model Intercomparison Project(AMIP) runs forced with mean seasonal cycles of sea surface temperature(SST)and sea ice, using combinations of SST and sea ice from different time periods to assess the role that each plays individually,and to assess the role of atmospheric internal variability. Coupled runs are used to further investigate the role of internal variability via the analysis of initialized predictions and the evolution of the forecast with lead time.The AMIP simulations show a mean warming response over Eurasia due to SST changes, but little response to changes in sea ice. Individual runs simulate cooler periods over Eurasia, and this is shown to be concurrent with a stronger Siberian high and warming over Greenland. No substantial differences in the variability of Eurasian surface temperatures are found between the different model configurations. In the coupled runs, the region of significant warming over Eurasia is small at short leads, but increases at longer leads. It is concluded that, although the models have some capability in highlighting the temperature variability over Eurasia, the observed cooling may still be a consequence of internal variability. 展开更多
关键词 Eurasian winter climate sea-ice loss SST increase CFSv2
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支持地球科学的软件复用
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作者 MARSHALL James J DOWNS Robert R +2 位作者 SAMADI Shahin GERARD Neil S WOLFE Robert E 《计算机科学与探索》 CSCD 2008年第3期296-310,共15页
地球科学研究中数据的准备、分发、访问、处理和分析都依赖于计算机软件。科学结果的重复通常需要复用同样的软件。同样,科学数据的有效分发、访问或者分析也都需要进行软件复用。地球科学软件开发社区已经意识到了软件复用的价值,并且... 地球科学研究中数据的准备、分发、访问、处理和分析都依赖于计算机软件。科学结果的重复通常需要复用同样的软件。同样,科学数据的有效分发、访问或者分析也都需要进行软件复用。地球科学软件开发社区已经意识到了软件复用的价值,并且在社区内大力鼓励和培育软件复用。因此,他们成立了 NASA 地球科学数据系统( ESDS) 软件复用工作组( WG) 来支持社区成员之间的软件复用。工作组开发了软件复用门户来发布软件复用相关的信息、资源,并且提供培训来提高和改进整个社区的软件复用实践。工作组还开发了一个复用支持系统( RES) 原型系统来支持可复用软件的访问。此外, 工作组还制定了复用成熟度级别, 从而提高了评估和选择可复用软件的能力。 展开更多
关键词 软件复用社区 科学软件 数据管理 地球科学 复用支持 复用成熟度
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