Collaborative Research: Decadal Coupled Ocean-Atmosphere Interactions in the North Pacific
Collaborative Research: Decadal Coupled Ocean-Atmosphere Interactions in the North Pacific
批准号:
0647994
负责人:
Niklas Schneider
金额:
$22.17万
依托单位:
依托单位国家:
美国
项目类别:
Standard Grant
财政年份:
2007
资助国家:
美国
项目状态:
已结题
起止时间:
2007-03-01 至 2012-02-29
中文摘要
OCE-0647994最近的工作表明,根据北太平洋风应力的历史,可以预测西北太平洋黑潮-Oyashio延伸(KOE)周围大范围冬季海表面温度(SST)的异常。SST的这一可预测成分对北太平洋气候是有意义的,因为KOE是一个强烈的海-气相互作用区域,这与北太平洋/北美大气气候变化有关。在我们对与KOE区域有关的气候变化所涉及的机制的理解方面仍然存在重大差距。这些差距包括:大气对KOE SST可预测变化的反应方式;整个北太平洋/北美部门大气对流层响应的详细性质;携带北太平洋可预测信号的行星波改变SST、北太平洋中尺度涡旋、水平速度和上升流的手段;以及中尺度海洋变化在建立气候尺度KOE SST异常方面的重要性,这种变化造成地面风应力和热通量异常。知识价值:这个项目旨在通过使用包括中尺度涡旋的高分辨率区域耦合海洋大气模式(SCOAR)降低国家环境预测中心(NCEP)过去50年北太平洋再分析领域的尺度来澄清这些问题。通过这些耦合的下尺度试验的集合,结合未耦合的海洋和未耦合的大气模式后播的相关组合,将对结果进行诊断,并通过观测加以验证,以在十年反馈循环和气候可预测性的背景下估计与区域海洋-大气反馈有关的方差比例。分析将侧重于将KOE区域的区域海洋环流和SST异常与大气边界层和风暴路径与控制北太平洋中部温跃层扰动激发和传播的盆地尺度过程联系起来的复杂过程,这些过程调节KOE区域的环流和SST。更广泛的影响:这一研究项目的结果可能在改进北太平洋(以及北美下游)年际时间尺度的大气气候预报方面具有重要的实际用途。SST的可预测部分(以及相关的上层海洋温度、速度和上升流场)也令人感兴趣,因为该区域拥有重要的商业渔业,这些渔业与KOE区域的这种变异性所驱动的生态系统变化有关。该项目的结果可能有助于对北太平洋Koe地区的生态系统(包括渔业)进行新的预测。了解KOE地区海-气耦合响应的物理机制及其在强迫盆地尺度大气中的作用,对于试图探索年代际变化与其对北美气候、生态系统和渔业(包括阿拉斯加湾、白令海和加利福尼亚洋流)的下游影响之间的关系至关重要。该项目是对美国CLIVAR(气候可变性和可预测性)计划的贡献。
英文摘要
OCE-0647994Recent work reveals that anomalies of wintertime Sea Surface Temperatures (SST) in a large area surrounding the Kuroshio-Oyashio Extension (KOE) in the northwest Pacific are predictable from the history of wind stress over North Pacific. This predictable component of SST is of interest for North Pacific climate because the KOE is a region of vigorous air-sea interaction, which is linked to large-scale North Pacific/North American atmospheric climate variability. Important gaps remain in our understanding of the mechanisms involved in the climate variations associated with the KOE region. These gaps include the ways that the atmosphere may respond to the predictable changes in the KOE SST; the detailed nature of the atmospheric tropospheric response across the North Pacific/North American sector; the means by which planetary waves, carrying the predictable signal in the North Pacific, change SST, mesoscale eddies, horizontal velocity and upwelling in the North Pacific; and the importance of mesoscale ocean variations, which create associated surface wind stress and heat flux anomalies, in establishing climate-scale KOE SST anomalies. Intellectual Merit: This project aims to clarify these issues by downscaling the National Center for Environmental Prediction (NCEP) reanalysis fields of the past 50 years over the North Pacific using a high-resolution regional coupled ocean atmosphere model (SCOAR) that includes mesoscale eddies. With an ensemble of these coupled downscaling experiments, combined with a related combination of uncoupled ocean and uncoupled atmospheric model hindcasts, the results will be diagnosed and validated with observations to estimate the fraction of variance associated with regional ocean-atmosphere feedbacks in the context of decadal feedback loops and climate predictability. The analysis will focus on the complicated sequence of processes that link regional ocean circulation and SST anomalies in the KOE region to the atmospheric boundary layer and the storm track with the basin-scale processes that govern the excitation and propagation of thermocline perturbations from the central North Pacific, which modulate the circulation and SST in the KOE region. Broader Impacts: The results of this research project may have important practical use in improving atmospheric climate forecasting on inter-annual timescales in the North Pacific (and downstream over North America). The predictable component of SST (and the associated upper-ocean temperature, velocity and upwelling fields) is also of interest because the region has commercially important fisheries that are linked to ecosystem changes driven by this variability of the KOE region. The results from this project may be useful for creating novel forecasts of the ecosystem (including fisheries) in the KOE region of the North Pacific. Understanding the physics of the coupled ocean-atmosphere response in the KOE region and its role in forcing the basin-scale atmospheric is paramount in attempting to exploit the relationships between decadal variability and its downstream effects on climate of North America, the ecosystem and fisheries (including those of the Gulf of Alaska, Bering Sea and California Current).This project is a contribution to the U.S. CLIVAR (CLImate VARiability and predictability) program.
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Collaborative Research: An Eddy-resolved Ensemble Approach to Pacific Ocean Decadal Variability
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批准号:1357015
-
项目类别:Standard Grant
-
资助金额:$26.62万
-
财政年份:2014
-
负责人:Niklas Schneider
-
依托单位:
Collaborative Research: Eddy-Dynamics and Impacts of Low-Frequency Variations in the California Current System
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批准号:0550233
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项目类别:Standard Grant
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资助金额:$19.33万
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财政年份:2006
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负责人:Niklas Schneider
-
依托单位:
Analysis of Decadal Variability in the North Pacific
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批准号:9711265
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项目类别:Continuing Grant
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资助金额:$33.5万
-
财政年份:1997
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负责人:Niklas Schneider
-
依托单位:
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