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A diabatically-generated potential vorticity structure near the extratropical tropopause in three simulated extratropical cyclones

机译:三个模拟温带气旋中温带对流层顶附近的绝热产生的潜在涡度结构

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摘要

The structure of near-tropopause potential vorticity (PV) acts as a primary control on the evolution of extratropical cyclones. Diabatic processes such as the latent heating found in ascending moist warm conveyor belts modify PV. A dipole in diabatically-generated PV (hereafter diabatic PV) straddling the extratropical tropopause, with the positive pole above the negative pole, was diagnosed in a recently published analysis of a simulated extratropical cyclone. This PV dipole has the potential to significantly modify the propagation of Rossby waves and the growth of baroclinically-unstable waves. This previous analysis was based on a single case study simulated with 12-km horizontal grid spacing and parameterized convection. Here, the dipole is investigated in three additional cold-season extratropical cyclones simulated in both convection-parameterizing and convection-permitting model configurations. A diabatic PV dipole across the extratropical tropopause is diagnosed in all three cases. The amplitude of the dipole saturates approximately 36 hours from the time diabatic PV is accumulated. The node elevation of the dipole varies between 2-4 PVU in the three cases, and the amplitude of the system-averaged dipole varies between 0.2-0.4 PVU. The amplitude of the negative pole is similar in the convection-parameterizing and convection-permitting simulations. The positive pole, which is generated by long-wave radiative cooling, is weak in the convection-permitting simulations due to the small domain size which limits the accumulation of diabatic tendencies within the interior of the domain. The possible correspondence between the diabatic PV dipole and the extratropical tropopause inversion layer is discussed.
机译:热带对流层顶潜在涡度(PV)的结构是对温带气旋演变的主要控制。绝热过程(例如在潮湿潮湿的传送带中上升的潜热)会改变PV。在最近发表的对模拟的温带气旋的分析中,诊断出了一个绝热产生的PV(以下称非绝热PV)的偶极跨过温带对流层顶,正极高于负极。该PV偶极子有可能显着改变Rossby波的传播和斜压不稳定波的增长。先前的分析基于单个案例研究,该案例使用12公里的水平网格间距和参数化对流进行了模拟。在此,在对流参数化和对流允许模型配置中模拟的三个附加的冷季温带气旋中研究了偶极子。在所有这三种情况下,均诊断出横贯温带对流层顶的非绝热PV偶极子。从非绝热PV累积起,偶极子的振幅大约饱和了36小时。在三种情况下,偶极子的节点高度在2-4 PVU之间变化,系统平均偶极子的振幅在0.2-0.4 PVU之间变化。在对流参数化和对流允许模拟中,负极的振幅相似。由长波辐射冷却产生的正极在对流允许的模拟中较弱,这是因为较小的磁畴尺寸限制了磁畴内部的非绝热趋势的积累。讨论了非绝热PV偶极子与温带对流层顶反转层之间的可能对应关系。

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    Chagnon J. M.; Gray S. L.;

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  • 年度 2015
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