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Tropopause Evolution in a Rapidly Intensifying Tropical Cyclone: A Static Stability Budget Analysis in an Idealized Axisymmetric Framework

机译:热带热带气旋快速加强热带气旋中的对流性进化:理想化轴对称框架中的静态稳定预算分析

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Upper-level static stability (N-2) variations can influence the evolution of the transverse circulation and potential vorticity in intensifying tropical cyclones (TCs). This paper examines these variations during the rapid intensification (RI) of a simulated TC. Over the eye, N-2 near the tropopause decreases and the cold-point tropopause rises by up to 4 km at the storm center. Outside of the eye, N-2 increases considerably just above the cold-point tropopause and the tropopause remains near its initial level. A budget analysis reveals that the advection terms, which include differential advection of potential temperature and direct advection of N-2, are important throughout the upper troposphere and lower stratosphere. These terms are particularly pronounced within the eye, where they destabilize the layer near and above the cold-point tropopause. Outside of the eye, a radial-vertical circulation develops during RI, with strong outflow below the tropopause and weak inflow above. Differential advection of near the outflow jet provides forcing for stabilization below the outflow maximum and destabilization above. Turbulence induced by vertical wind shear on the flanks of the outflow maximum also modifies the vertical stability profile. Meanwhile, radiative cooling tendencies at the top of the cirrus canopy generally act to destabilize the upper troposphere and stabilize the lower stratosphere. The results suggest that turbulence and radiation, alongside differential advection, play fundamental roles in the upper-level N-2 evolution of TCs. These N-2 tendencies could have implications for both the TC diurnal cycle and the tropopause-layer potential vorticity evolution in TCs.
机译:上层静态稳定性(N-2)变型可以影响强化热带气旋(TCS)的横向循环的演变和潜在的涡流。本文在模拟TC的快速增强(RI)期间检查了这些变化。在眼睛上,Ropopeause附近的N-2减少,暴风雨中心的冷点对象升高到4公里。在眼睛之外,N-2显着增加,刚刚高于冷点对象,并且对象仍然靠近其初始水平。预算分析表明,在整个对流层和较低的平流层的潜在温度和直接平流的潜在温度和直接平流的差异平流的平流平均。这些术语在眼睛内特别明显,在那里它们破坏了靠近冷点对象的层。在眼睛之外,径向垂直循环在RI期间发生,具有强大的流出流出,上面的弱流量。近近流出射流的差异平流提供了低于上述流出的最大和稳定性的稳定化。在流出最大值的侧翼上垂直风剪剪引起的湍流也改变了垂直稳定性曲线。同时,卷曲冠层顶部的辐射冷却趋势通常采取破坏上层对流层并稳定较低的平流层。结果表明,湍流和辐射,旁边的平流,在TCS的上层N-2演化中起着基本作用。这些N-2趋势可能对TC昼夜循环和TCS中的对流层层潜在涡流演变具有影响。

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