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西部边界流对当地气候变率的影响。

Signature of the western boundary currents in local climate variability.

机构信息

Department of Atmospheric Science, Colorado State University, Fort Collins, CO, USA.

School of Environmental Sciences, University of East Anglia, Norwich, UK.

出版信息

Nature. 2024 Oct;634(8035):862-867. doi: 10.1038/s41586-024-08019-2. Epub 2024 Oct 2.

DOI:10.1038/s41586-024-08019-2
PMID:39358512
Abstract

The western boundary currents are characterized by narrow, intense ocean jets and are among the most energetic phenomena in the world ocean. The importance of the western boundary currents to the mean climate is well established: they transport vast quantities of heat from the subtropics to the midlatitudes, and they govern the structure of the climatological mean surface winds, precipitation and extratropical storm tracks. Their importance to climate variability is much less clear, as the tropospheric response to extratropical sea surface temperature (SST) variability is generally modest relative to the internal variability in the midlatitude atmosphere. Here we exploit novel local analyses based on high-spatial-resolution data to demonstrate that SST variability in the western boundary currents has a more robust signature in climate variability than has been indicated in previous work. Our results indicate that warm SST anomalies in the major boundary currents of both hemispheres are associated with a distinct signature of locally enhanced precipitation and rising motion anomalies that extend throughout the depth of the troposphere. The tropospheric signature closely mirrors that of ocean dynamical processes in the boundary currents. Thus, the findings indicate a distinct and robust pathway through which extratropical ocean dynamical processes influence local climate variability. The observational relationships are also reproducible in Earth system model simulations but only when the simulations are run at high spatial resolution.

摘要

西部边界海流的特点是狭窄而强烈的海洋射流,是世界海洋中最具活力的现象之一。西部边界海流对平均气候的重要性是众所周知的:它们从亚热带向中纬度输送大量热量,并且控制着气候平均表面风、降水和温带风暴轨迹的结构。它们对气候变化的重要性就不那么明显了,因为与中纬度大气的内部变率相比,热带大气对温带海洋表面温度(SST)变率的响应通常较小。在这里,我们利用基于高空间分辨率数据的新的局部分析来证明,西部边界海流中的 SST 变率在气候变化中的特征比以前的工作所表明的更为显著。我们的结果表明,两个半球主要边界海流中的暖 SST 异常与局部增强降水和上升运动异常的明显特征有关,这些异常延伸到整个对流层深度。对流层特征与边界海流中的海洋动力过程非常相似。因此,这些发现表明,通过海洋动力过程影响局地气候变化的途径是明显而稳健的。在地球系统模型模拟中也可以重现观测到的关系,但只有在以高空间分辨率运行模拟时才可以。

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Signature of the western boundary currents in local climate variability.西部边界流对当地气候变率的影响。
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本文引用的文献

1
Ocean eddies and climate predictability.海洋漩涡与气候可预测性
Chaos. 2017 Dec;27(12):126902. doi: 10.1063/1.4990034.
2
Pacific western boundary currents and their roles in climate.太平洋西部边界流及其在气候中的作用。
Nature. 2015 Jun 18;522(7556):299-308. doi: 10.1038/nature14504.
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Influence of the Gulf Stream on the troposphere.湾流对对流层的影响。
Nature. 2008 Mar 13;452(7184):206-9. doi: 10.1038/nature06690.
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Satellite measurements reveal persistent small-scale features in ocean winds.卫星测量揭示了海风中长期存在的小尺度特征。
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