首页> 外文期刊>Journal of Climate >Monsoon Regimes and Processes in CCSM4. Part II: African and AmericanTI Monsoon Regimes and Processes in CCSM4. Part II: African and American Monsoon Systems
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Monsoon Regimes and Processes in CCSM4. Part II: African and AmericanTI Monsoon Regimes and Processes in CCSM4. Part II: African and American Monsoon Systems

机译:CCSM4中的季风状态和流程。第二部分:CCSM4中的非洲和AmericanTI季风制度和程序。第二部分:非洲裔美国季风系统

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This is the second part of a two part series studying simulation characteristics of the Community Climate System Model, version 4 (CCSM4) for various monsoon regimes around the global tropics. Here, the West African, East African, North American, and South American monsoons are documented in CCSM4. Comparisons are made to an Atmospheric Model Intercomparison Project (AMIP) simulation of the atmospheric component in CCSM4 (CAM4), to deduce differences in the monsoon simulations run with observed SSTs and with ocean-atmosphere coupling. These simulations are also compared to a previous version of the coupled model (CCSM3) to evaluate progress. In most, but not all instances, monsoon rainfall is too heavy in the uncoupled AMIP run with the Community Atmosphere Model, version 4 (CAM4), and monsoon rainfall amounts are generally better simulated with ocean coupling in CCSM4. Some aspects of the monsoon simulations are improved in CCSM4 compared to CCSM3. Early-season rainfall in the West African monsoon is better simulated in CAM4 than in CCSM4 presumably because of the specification of SSTs in the Gulf of Guinea, but the Sahel rainfall season is captured better in CCSM4 as are the African easterly jet and the tropical easterly jet. Improvements in the simulation of the Sahel rainy season (July, August, and September) in CCSM4 compared with CCSM3 are significant, but problems remain in the simulation of the early season (May and June) in association with the misrepresentation of eastern Atlantic (Gulf of Guinea) SSTs. Precipitation distributions and the southwesterly low-level inflow in the North American monsoon are improved in CCSM4 compared to CCSM3. Both CAM4 and CCSM4 reproduce the seasonal evolution of rainfall over the South American monsoon region, but the location of maximum rainfall is misplaced to the northeast in both models.
机译:这是一个由两部分组成的系列文章的第二部分,该系列研究了全球热带地区各种季风状态的社区气候系统模型版本4(CCSM4)的模拟特征。在此,CCSM4中记录了西非,东非,北美和南美季风。比较了CCSM4(CAM4)中大气成分的“大气模型比对项目(AMIP)”模拟,以推断与观测到的SST和海洋-大气耦合进行的季风模拟的差异。还将这些模拟与耦合模型(CCSM3)的先前版本进行比较,以评估进度。在大多数(但不是全部)情况下,在使用社区大气模型第4版(CAM4)进行的非耦合AMIP运行中,季风降雨过大,而CCSM4中的海洋耦合通常可以更好地模拟季风降雨量。与CCSM3相比,CCSM4改进了季风模拟的某些方面。在CAM4中,西非季风的早期降雨比CCSM4更好地模拟,大概是因为几内亚湾的海表温度规范,但是在CCSM4中,萨赫勒降雨季节比非洲东风和热带东风更好。喷射。与CCSM3相比,CCSM4在萨赫勒雨季(7月,8月和9月)的模拟方面有很大改进,但是在早期季节(5月和6月)的模拟中仍然存在问题,这与东部大西洋(Gulf)的误解有关几内亚)。与CCSM3相比,CCSM4改善了北美季风的降水分布和西南低空入流。 CAM4和CCSM4都再现了南美季风区域降雨的季节变化,但是在两个模型中,最大降雨的位置都错位到了东北。

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