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Wave modulation of the extratropical tropopause inversion layer

机译:卓越的对流层反转层的波调制

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This study aims to quantify how much of the observed strength and variability in the zonal-mean extratropical tropopause inversion layer (TIL) comes from the modulation of the temperature field and its gradients around the tropopause by planetary- and synoptic-scale waves. By analyzing high-resolution observations, it also puts other TIL enhancing mechanisms into context.Using gridded Global Positioning System radio occultation (GPS-RO) temperature profiles from the COSMIC mission (2007–2013), we are able to extract the extratropical wave signal by a simplified wavenumber–frequency domain filtering method and quantify the resulting TIL enhancement. By subtracting the extratropical wave signal, we show how much of the TIL is associated with other processes, at mid- and high latitudes, for both hemispheres and all seasons.The transient and reversible modulation by planetary- and synoptic-scale waves is almost entirely responsible for the TIL in midlatitudes. This means that wave-mean flow interactions, inertia–gravity waves and the residual circulation are of minor importance for the strength and variability in the midlatitude TIL.At polar regions, the extratropical wave modulation is dominant for the TIL strength as well, but there is also a clear fingerprint from sudden stratospheric warmings (SSWs) and final warmings in both hemispheres. Therefore, polar vortex breakups are partially responsible for the observed polar TIL strength in winter (if SSWs occur) and spring. Also, part of the polar summer TIL strength cannot be explained by extratropical wave modulation.We suggest that our wave modulation mechanism integrates several TIL enhancing mechanisms proposed in previous literature while robustly disclosing the overall outcome of the different processes involved. By analyzing observations only, our study identifies which mechanisms dominate the extratropical TIL strength and their relative contribution. It remains to be determined, however, which roles the different planetary- and synoptic-scale wave types play within the total extratropical wave modulation of the TIL, as well as what causes the observed amplification of extratropical waves near the tropopause.
机译:本研究旨在量化多少的在纬向均值温带对流层顶反转层(TIL)所观察​​到的强度和可变性来源于温度场的调制和其周围的对流层梯度通过planetary-和天气尺度波。通过分析高分辨率观测,它也让其他TIL增强机制纳入context.Using网格化的全球定位系统掩星(GPS-RO)温度曲线从宇宙任务(2007- 2013年),我们能够提取温带波信号通过简化的波数 - 频率域中滤波的方法和量化所得到的TIL增强。通过减去温带波信号,我们展示了如何在TIL的多少是与其他进程关联时,在中高纬度地区,对两半球和所有seasons.The短暂的和可逆的调制由planetary-和天气尺度波几乎完全负责在中纬度地区的TIL。这意味着,波 - 流相互作用,惯性引力波和剩余流通是在纬度TIL.At极地地区的实力和变化轻微,温带波调制为主导的TIL强度好,但有也是从平流层突然增暖(SSWS),并在两个半球最终的变暖一个清晰的指纹。因此,极涡分手是在冬季所观察到的极性TIL强度部分负责(如果发生SSWS)和弹簧。此外,极夏TIL实力的一部分,不能由温带波modulation.We解释说我们的波调制机制,集成了多种增强TIL在以前的文献中提出的,而稳健地披露所涉及的不同进程的总体结果的机制。通过分析观察而已,我们的研究发现了其中的机制主导温带TIL强度和它们的相对贡献。它仍有待确定,然而,其作用不同planetary-和天气尺度波类型TIL的总温带波调制内播放,以及是什么原因导致的对流层顶附近温带波的所观察到的扩增。

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