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首页> 外文期刊>Journal of Climate >Disparate Midlatitude Responses to the Eastern Pacific El Nino
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Disparate Midlatitude Responses to the Eastern Pacific El Nino

机译:不同的中间地区对东太平洋埃尔尼诺的反应

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摘要

To investigate the disparate influences of the eastern Pacific (EP) El Nino on the winter climate in the Far East, we conducted composite analyses using long-term reanalysis datasets. Our analysis shows that the western Pacific (WP) pattern dominates in the warm winter (typical) composite and the Pacific-North American (PNA) pattern dominates in the non-warm winter (atypical) composite. In the warm winter case, the amplitudes of the negative sea surface temperature (SST) anomalies in the western Pacific Ocean are large whereas in the non-warm winter case, these amplitudes are small. In addition, the Indian Ocean basin warming occurs following the Indian Ocean dipole mode, as seen in the warm winter composite. We investigated the dynamical mechanisms responsible for the disparate midlatitude responses to the EP El Nino by focusing on Rossby wave sources and propagation. These SST anomalies modulate the Walker and Hadley circulations and the convective activity in the western Pacific Ocean. Upper-tropospheric divergences at the midlatitudes due to the anomalous Hadley circulation result in different teleconnection patterns. In the warm winter composite, the anticyclonic anomaly in the southern part of the WP pattern is created by the upstream negative Rossby wave source, while the other cyclonic anomaly is reinforced by the northward Rossby wave propagation. The cyclonic second and fourth centers of action of the PNA pattern are created by the positive Rossby wave sources. Furthermore, the equatorial SST gradient near the date line is found be a good precursor of the winter climate in the Far East.
机译:为了研究东太平洋(EP)厄尔尼诺对远东冬季气候的不同影响,我们使用长期再分析数据集进行了复合分析。我们的分析表明,在暖冬(典型)组合中,西太平洋(WP)模式占主导地位,而在非暖冬(非典型)组合中,太平洋北美(PNA)模式占主导地位。在暖冬情况下,西太平洋海表温度负异常的振幅较大,而在非暖冬情况下,这些振幅较小。此外,印度洋盆地变暖发生在印度洋偶极子模式之后,如暖冬合成图所示。我们通过关注Rossby波源和传播,研究了中纬度地区对厄尔尼诺的不同响应的动力学机制。这些海温异常调节了沃克和哈德利环流以及西太平洋的对流活动。由于哈雷环流异常,中纬度对流层上部的辐散导致了不同的遥相关模式。在暖冬组合中,WP型南部的反气旋异常由上游负Rossby波源产生,而另一个气旋异常则由向北的Rossby波传播加强。PNA模式的第二和第四个气旋作用中心是由正Rossby波源产生的。此外,日线附近的赤道SST梯度是远东冬季气候的良好前兆。

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