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首页> 外文期刊>Journal of Climate >Impact of Tropical Pacific Precipitation Anomaly on the East Asian Upper-Tropospheric Westerly Jet during the Boreal Winter
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Impact of Tropical Pacific Precipitation Anomaly on the East Asian Upper-Tropospheric Westerly Jet during the Boreal Winter

机译:北方冬季热带太平洋降水异常对东亚高层大气西风急流的影响

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摘要

The leading mode of boreal winter precipitation variability over the tropical Pacific for the period 1980-2010 shows a west-east dipole pattern with one center over the western North Pacific (WNP) and Maritime Continent and the other center over the equatorial central Pacific (CP). Observational evidence shows that the variability of the East Asian upper-tropospheric subtropical westerly jet (EAJ) has a significant correlation with precipitation anomalies over the WNP and CP and that tropical precipitation anomalies over WNP and CP have a distinct influence on the variation of the EAJ. A series of numerical experiments based on a linear baroclinic model are performed to confirm the influence of the heating anomalies associated with precipitation perturbations over the WNP and CP on the EAJ. The results of numerical experiments indicate that a heat source over the WNP can excite a northward-propagating Rossby wave train in the upper troposphere over East Asia and facilitate a poleward eddy momentum flux. It results in the acceleration of the westerlies between 30 degrees and 45 degrees N, which favors a northward displacement of the EAJ. The response induced by a heat sink over the CP features a zonal easterly band between 25 degrees and 40 degrees N, suggesting that the response to heat sink associated with negative precipitation anomalies over the CP may weaken the EAJ. A strengthened relationship was found between tropical Pacific precipitation and the EAJ since 1979. The modeling results suggest that the shift of mean states might be responsible for the strengthened EAJ-rainfall relationship after 1979.
机译:1980-2010年期间热带太平洋冬季冬季降水变化的主导模式显示出东西向偶极子格局,其中一个中心位于北太平洋西部(WNP)和海事大陆,另一个中心位于赤道中太平洋(CP) )。观测证据表明,东亚对流层副热带西风急流(EAJ)的变化与WNP和CP上的降水异常显着相关,而WNP和CP上的热带降水异常对EAJ的变化有明显影响。 。进行了一系列基于线性斜压模型的数值实验,以确认与降水扰动有关的加热异常对EAJ的WNP和CP的影响。数值实验结果表明,WNP上的热源可以激发东亚对流层上北向传播的Rossby波列,并促进极地涡动动量通量。它导致西风的加速度在30度到45度N之间,这有利于EAJ向北移动。由CP上的散热器引起的响应具有一个介于25度和40度N之间的纬向东风带,这表明与CP上的负降水异常相关的对散热器的响应可能会削弱EAJ。自1979年以来,热带太平洋降水与EAJ之间的关系得到了加强。模拟结果表明,平均状态的转变可能是1979年后EAJ与降雨关系增强的原因。

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