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A Theoretical Explanation of Anomalous Atmospheric Circulation Associated with ENSO Modoki during Boreal Winter

机译:北方冬季ENSO Modoki异常大气环流的理论解释

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Based on a linear model, the present study provides analytical solutions for ideal triple forcing sources similar to sea surface temperature anomaly (SSTA) patterns associated with El Ni?o-Southern Oscillation (ENSO) Modoki in winter. The ideal triple pattern is composed of an equatorially symmetric heat source in the middle and equatorially asymmetric cold forcing in the southeast and northwest. The equatorially symmetric heat source excites low-level cyclonic circulation anomalies associated with Rossby waves in both hemispheres, while the northwestern and southeastern equatorially asymmetric cold sources induce low-level anomalous anticyclones associated with Rossby waves in the hemisphere where the forcing source is located. Low-level zonal winds converge toward the heat sources associated with Kelvin and Rossby waves. Due to unequal forcing intensity in the northwest and southeast, atmospheric responses around the equatorially symmetric forcing become asymmetric, and low-level cyclonic circulation anomalies in the Southern Hemisphere become greater than those in the Northern Hemisphere. Ascending (descending) flows coincide with heat (cold) sources, resulting in a double-cell structure over the regions of forcing sources. Ideal triple patterns similar to SSTA patterns associated with La Ni?a Modoki produce opposite atmospheric responses. The theoretical atmospheric responses are consistent with observed circulation anomalies associated with ENSO Modoki. Therefore, the theoretical solutions can explain the dynamics responsible for atmospheric circulation anomalies associated with ENSO Modoki events.
机译:基于线性模型,本研究为理想的三重强迫源提供了分析解决方案,类似于冬季与厄尔尼诺-南方涛动(ENSO)Modoki相关的海面温度异常(SSTA)模式。理想的三重模式由中部的赤道对称热源和东南部和西北部的赤道非对称冷强迫组成。赤道对称的热源激发了两个半球中与Rossby波有关的低空气旋环流异常,而西北和东南赤道不对称的冷源在强迫源所在的半球中诱发了与Rossby波相关的低空反气旋。低水平的纬向风向与开尔文波和罗斯比波有关的热源汇聚。由于西北和东南部的强迫强度不相等,赤道对称强迫周围的大气响应变得不对称,南半球的低空气旋环流异常变得比北半球大。升(降)流与热(冷)源重合,从而在强迫源区域上形成双单元结构。与La Ni?a Modoki相关的SSTA模式相似的理想三重模式产生相反的大气响应。理论上的大气响应与与ENSO Modoki有关的观测到的环流异常一致。因此,理论解可以解释与ENSO Modoki事件有关的大气环流异常的动力学。

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