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Air-sea interaction

机译:海海互动

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Rosenstiel School of Marine and Atmospheric Science, University of Miami, Miami, FL, United States Decadal climate predictability has received considerable scientific interest in recent years, yet the limits and mechanisms for decadal predictability are currently not well known. It is widely accepted that noise due to internal atmospheric dynamics at the air-sea interface influences predictability. The purpose of this paper is to use the interactive ensemble (IE) coupling strategy to quantify how internal atmospheric noise at the air-sea interface impacts decadal predictability. The IE technique can significantly reduce internal atmospheric noise and has proven useful in assessing seasonal-to-interannual variability and predictability. Here we focus on decadal timescales and apply the nonlinear local Lyapunov exponent method to the Community Climate System Model comparing control simulations with IE simulations. This is the first time the nonlinear local Lyapunov exponent has been applied to the state-of-the-art coupled models. The global patterns of decadal predictability are discussed from the perspective of internal atmospheric noise and ocean dynamics.
机译:美国佛罗里达州迈阿密市迈阿密大学罗森斯蒂尔海洋与大气科学学院,近十年来,十年间气候可预测性已经引起了相当大的科学兴趣,但十年间可预测性的局限性和机制目前尚不为人所知。人们普遍认为,由于海气界面处内部大气动力学引起的噪声会影响可预测性。本文的目的是使用交互式集成(IE)耦合策略来量化海-气界面处的内部大气噪声如何影响年代际可预测性。 IE技术可以显着减少内部大气噪声,并已被证明可用于评估季节之间的年度变化和可预测性。在这里,我们关注年代际尺度,并将非线性局部Lyapunov指数方法应用于控制模拟与IE模拟进行比较的社区气候系统模型。这是首次将非线性局部Lyapunov指数应用于最新的耦合模型。从内部大气噪声和海洋动力学的角度讨论了年代际可预测性的全球模式。

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    《Oceanographic Literature Review》 |2019年第5期|968-976|共9页
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