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A resonant response of the California Current circulation to forcing by low frequency climate variability

机译:加州电流环流对低频气候变化强迫的共振响应

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Low frequency variability of the California Current System (CCS) is investigated using circulation estimates based on a 31-year (1980–2010) sequence of historical analyses of the CCS calculated using the Regional Ocean Modeling System (ROMS) 4-dimensional variational (4D-Var) data assimilation system. The leading 3-dimensional multivariate empirical orthogonal functions (3D EOFs) of the CCS circulation were computed and provide a detailed view of low-frequency circulation variability within the CCS. The 3D EOFs are used as basis functions for a linear inverse model of the circulation, and several Principal Oscillation Patterns (POPs) of the circulation are identified. The leading POPs have periods in the range∼4−10years, and shed light on the 3-dimensional time evolving structure associated with low-frequency variability in the circulation. A particular focus here is coastal upwelling. In particular, a POP with a period close to 10 years appears to be preferentially excited as a resonant response to forcing associated with the regional expression of the Pacific Decadal Oscillation, the North Pacific Gyre Oscillation and the El Niño Southern Oscillation.
机译:使用环流估计值调查了加利福尼亚当前系统(CCS)的低频变化,该估计基于使用区域海洋建模系统(ROMS)进行的31年(1980-2010)CCS历史分析序列4维变分(4D) -Var)数据同化系统。计算了CCS循环的前导3维多元经验正交函数(3D EOF),并提供了CCS内低频循环变化的详细视图。将3D EOF用作循环线性反模型的基础函数,并确定了循环的几种主要振荡模式(POP)。主要的持久性有机污染物的周期范围为4至10年,并揭示了与循环中低频变化相关的三维时间演化结构。这里特别关注沿海上升。特别是,随着对太平洋年代际涛动,北太平洋涡旋涛动和厄尔尼诺南方涛动等区域性表达的强迫的共鸣,一种接近10年的持久性有机污染物似乎被优先激发。

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