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State space analysis of ocean surface warming on decadal scale

机译:十年尺度海洋表面变暖的状态空间分析

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Detection of small decadal-scale variation amidst larger variations on smaller timescales is carried out here by geometrical segregation rather than filtering. Sea surface temperature (SST) annual cycle is represented as a point in a 12-dimensional space and thermal history as a path connecting successive points. Drift of the domain of decadal variations in the state space is taken as a measure of change from one decade to another. Visualization of the path in the 12-dimensional space is achieved by projecting it on planes. A matrix transformation gives an orthogonal decomposition of the annual cycle resembling Fourier series. The specific problem investigated here is the response of the Northern, the Tropical and the Southern Oceanic Regions (NOR, 30 degrees-90 degrees N; TOR, 30 degrees S-30 degrees N; SOR, 90 degrees-30 degrees S) to global warming during 1951-2010. The results are based on the Extended Reconstructed Sea Surface Temperature version 4 (ERSSTv4) database. Several interesting findings are obtained. The decadal scale warming has a seasonal variation, the largest being in the NOR (similar to 0.26 degrees C to similar to 0.57 degrees C), in 2001-10. The consequential change in the annual cycle is increase in the amplitude of the annual mode in addition to increase in the annual mean. Decade-on-decade SST increase has peaked first in the SOR in 1971-80, and last in the NOR in 2001-10.
机译:在较小的时间尺度上较大的变化中检测较小的年代尺度变化是通过几何隔离而不是滤波来进行的。海面温度(SST)的年周期表示为12维空间中的一个点,热历史表示为连接连续点的路径。状态空间中年代际变化域的漂移被视为从十年到另一十年的变化的度量。通过在平面上投影路径,可以在12维空间中可视化路径。矩阵变换给出了类似于傅立叶级数的年周期的正交分解。这里研究的具体问题是北部,热带和南部海洋地区(NOR,北纬30度至90度; TOR,北纬30度至30度; SOR,南纬90度至30度)对全球的响应1951-2010年期间变暖。结果基于扩展的重构海面温度版本4(ERSSTv4)数据库。获得了一些有趣的发现。十年尺度的变暖具有季节性变化,最大的变化是在2001-10年度的NOR(从0.26摄氏度到0.57摄氏度)。年度周期的相应变化是除年度平均值增加外,年度模式的振幅也增加。十年间SST的增加在1971-80年的SOR中达到最高峰,在2001-10年的NOR中达到最高峰。

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