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Northern Hemisphere Stratospheric Polar Vortex Extremes in February under the Control of Downward Wave Flux in the Lower Stratosphere

机译:在平流层下部向下波通量的控制下,北半球平流层极地涡旋极值在二月

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Using ECWMF ERA-40 and Interim reanalysis data, the planetary wave fluxes associated with the February extreme stratospheric polar vortex were studied. Using the three-dimensional Eliassen-Palm (EP) flux as a measure of the wave activity propagation, the authors show that the unusual warm years in the Arctic feature an anomalous weak stratosphere-troposphere coupling and weak downward wave flux at the lower stratosphere, especially over the North America and North Atlantic (NANA) region. The extremely cold years are characterized by strong stratosphere-troposphere coupling and strong downward wave flux in this region. The refractive index is used to examine the conception of planetary wave reflection, which shows a large refractive index (low reflection) for the extremely warm years and a small refractive index (high reflection) for the extremely cold years. This study reveals the importance of the downward planetary wave propagation from the stratosphere to the troposphere for explaining the unusual state of the stratospheric polar vortex in February.
机译:利用ECWMF ERA-40和中期再分析数据,研究了与2月极端平流层极涡相关的行星波通量。作者使用三维Eliassen-Palm(EP)通量作为波活动传播的量度,表明北极地区异常温暖的年份表现为平流层-对流层耦合弱且平流层下层通量弱,特别是在北美和北大西洋(NANA)地区。极冷年的特征是平流层-对流层的强耦合和该区域强烈的下行波通量。折射率用于检查行星波反射的概念,该行星波反射在极端温暖的年份显示较大的折射率(低反射),而在极端寒冷的年份显示较小的折射率(高反射)。这项研究揭示了从平流层到对流层向下传播的行星波对于解释2月份平流层极涡的异常状态的重要性。

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