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Transformed eddy-PV flux and positive synoptic eddy feedback onto low-frequency flow

机译:将涡流-PV通量和天气概要正涡流转换为低频流

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摘要

Interaction between synoptic eddy and low-frequency flow (SELF) has been the subject of many studies. In this study, we further examine the interaction by introducing a transformed eddy-potential-vorticity (TEPV) flux that is obtained from eddy-potential-vorticity flux through a quasi-geostrophic potential-vorticity inversion. The main advantage of using the TEPV flux is that it combines the effects of the eddy-vorticity and heat fluxes into the net acceleration of the low-frequency flow in such a way that the TEPV flux tends to be analogous to the eddy-vorticity fluxes in the barotropic framework. We show that the anomalous TEPV fluxes are preferentially directed to the left-hand side of the low-frequency flow in all vertical levels throughout the troposphere for monthly flow anomalies and for climate modes such as the Arctic Oscillation (AO). Furthermore, this left-hand preference of the TEPV flux direction is a convenient three-dimensional indicator of the positive reinforcement of the low-frequency flow by net eddy-induced acceleration. By projecting the eddy-induced net accelerations onto the low-frequency flow anomalies, we estimate the eddy-induced growth rates for the low frequency flow anomalies. This positive eddy-induced growth rate is larger (smaller) in the lower (upper) troposphere. The stronger positive eddy feedback in the lower troposphere may play an important role in maintaining an equivalent barotropic structure of the low-frequency atmospheric flow by balancing some of the strong damping effect of surface friction.
机译:天气涡流与低频流(SELF)之间的相互作用一直是许多研究的主题。在这项研究中,我们通过引入转换的涡流-涡度通量(TEPV)来检验相互作用,该通量是通过准地转势势-涡度反演从涡流-涡度通量获得的。使用TEPV通量的主要优点是,它将涡流和热通量的影响组合到低频流的净加速度中,使得TEPV通量趋于类似于涡流通量。在正压框架中。我们显示,对于月流量异常和气候模式(例如北极涛动(AO)),在整个对流层中,异常TEPV通量优先定向到整个对流层中所有垂直水平的低频流的左侧。此外,TEPV通量方向的左手偏好是方便的三维指示器,可通过净涡流感应加速来积极增强低频流。通过将涡流诱发的净加速度投影到低频流量异常上,我们估计了低频涡流异常产生的涡流增长率。在较低(较高)的对流层中,这种正的涡流诱导的生长速率较大(较小)。在低对流层中,较强的正涡流反馈可能通过平衡表面摩擦的某些强阻尼效应,在维持低频大气流的等效正压结构中起重要作用。

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