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Climate System Dynamics on Long Time Scales

Climate System Dynamics on Long Time Scales
长时间尺度的气候系统动力学
批准号:
0082131
负责人:
Michael Ghil
金额:
$135.0万
依托单位国家:
美国
项目类别:
Continuing Grant
财政年份:
2000
资助国家:
美国
项目状态:
已结题
起止时间:
2000-10-01 至 2007-09-30

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中文摘要
翻译
美国加州大学洛杉矶分校ATM-0082131Ghil的研究涉及气候变化的内因和外因问题。它强调了大气在从几个月到几年的气候变化中的作用,海洋在从几年到几十年的变化中的作用,以及从几十年到几千年的海洋-大气-冰盖耦合系统的作用。该方法使用了流体力学、动力系统理论、科学计算和非参数统计的工具。动力学工具将应用于一系列大气、海洋和耦合模型。这些模型的范围从最简单的具有少量变量的模型,如海洋的盒子模型,到完全耦合的大气环流模型(GCM)。PIS将使用各种数学和统计技术研究跨时间尺度的气候子系统的耦合。在10-100天的季节内时间尺度上,采购经理人指数将考虑对低频大气变化的两种互补描述,即周期性和周期性,即多种天气制度和季节内振荡。在从100天到10年或更长时间的亚年到年际时间尺度上,这项研究强调了中纬度海洋由风驱动的环流的内部变化。这种环流是在规定的时间常数和季节变化的风应力作用于纯海洋模式以及完全耦合的海洋-大气模式下进行研究的。在数十年至数百年甚至更长的时间尺度上,私人投资指数将使用CSM和IPSL等全面的耦合模型。这些模拟将与仪器记录和古记录进行分析和比较,以确定和描述自然变化和人为气候变化在这些时间尺度上的相对重要性。这项工作很重要,因为它将增加对不同时间尺度上气候变化的理解。
英文摘要
AbstractATM-0082131Ghil, MichaelUniversity of California, Los AngelesThe research bears on the problems of internal and external causes of climatic change. It emphasizes the role of the atmosphere in climate variability from months to years, of the oceans in variability from years to decades, and of the coupled ocean-atmosphere-ice-sheet system from decades to millennia. The methodology uses tools from fluid dynamics, dynamical systems theory, scientific computing and nonparametric statistics. The dynamical tools will be applied to a hierarchy of atmospheric, oceanic and coupled models. These models range from the simplest models with a small number of variables, such as box models of the ocean, to fully coupled general circulation models (GCMs).The PIs will study coupling of climate subsystems across timescales using various mathematical and statistical techniques. On the intraseasonal time scale of 10-100 days, the PIs will consider two complementary descriptions of low-frequency atmospheric variability, episodic and periodic, i.e. multiple weather regimes and intraseasonal oscillations. On the subannual-to-interannual time scale of 100 days to 10 or more years, the research emphasizes internal variability of the mid-latitude oceans' wind-driven circulation. This circulation is studied for prescribed time-constant and seasonally varying wind stress acting on ocean-only models, as well as for fully coupled ocean-atmosphere models. On time scales of decades-to-centuries and longer, the PIs will use comprehensive coupled models such as CSM and IPSL. The simulations will be analyzed and compared with instrumental and paleo-records to determine and describe the relative importance of natural variability and anthropogenic climate change on these time scales. The work is important because it will increase understanding of climate variability across various time scales.
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会议论文
Collaborative Research, Type 1, L02170206: Climate Sensitivity, Stochastic Models and GCM-EaSM Optimization
CMG Collaborative Research: Envirodynamics on River Networks
Collaborative Research: Mid-Latitude Modes of Climate Variability
  • 批准号:
    0221066
  • 项目类别:
    Continuing Grant
  • 资助金额:
    $42.94万
  • 财政年份:
    2002
  • 负责人:
    Michael Ghil
  • 依托单位:
Travel Support for the International Symposium on Assimilation of Observations in Meteorology and Oceanography; Tokyo, Japan; March 13-17, 1995
国内基金
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