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Tropical cyclogenesis via convectively forced vortex rossby waves in a three-dimensional quasigeostrophic model

机译:对流强迫涡旋罗斯比波在三维拟地转模型中的热带气旋作用

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This work investigates the problem of tropical cyclogenesis in three dimensions. In particular, the authors examine the interaction of small-scale convective disturbances with a larger-scale vortex circulation in a nonlinear quasigeostrophic balance model. Convective forcing is parameterized by its estimated net effect on the potential vorticity (PV) held. Idealized numerical experiments show that vortex intensification proceeds by ingestion of like-sign potential vorticity anomalies into the parent vortex and expulsion of opposite-sign potential vorticity anomalies during the axisymmetrization process. For the finite-amplitude forcing considered here, the weakly nonlinear vortex Rossby wave mean-flow predictions for the magnitude and location of the spinup are in good agreement with the model results. Vortex development is analyzed using Lagrangian trajectories, Eliassen-Palm flux vectors, and the Lorenz energy cycle. Using numerical estimates of the magnitude of PV injection based on previous observational and theoretical work, the authors obtain spinup to a 15 m s(-1) cyclone on realistic timescales. Simulation of a midlevel vortex with peripheral convection shows that axisymmetrization results in the spinup of a surface cyclone. The axisymmetrization mechanism demonstrates the development of a warm-core vortex. The relative contribution from eddy-heat and eddy-momentum fluxes to the warm core structure of the cyclone is investigated. The vortex spinup obtained shows greater than linear dependence on the forcing amplitude, indicating the existence of a nonlinear feedback mechanism associated with the vortex Rossby waves. Building on recent work by several authors, this work further clarifies the significance of the axisymmetrization process for the problem of tropical cyclogenesis. The theory is shown to be consistent with published observations of tropical cyclogenesis. Further observational and modeling tests of the theory, specific to the dynamics examined here, are proposed. [References: 52]
机译:这项工作从三个方面研究了热带气旋的问题。特别是,作者研究了非线性拟地转平衡模型中小尺度对流扰动与大尺度涡旋环流的相互作用。对流强迫是通过其对所持有的潜在涡度(PV)的估计净效应来参数化的。理想的数值实验表明,在轴对称化过程中,通过将相似符号的潜在涡度异常吸收到母体涡流中,并排出相反符号的潜在涡度异常,从而使涡旋加剧。对于此处考虑的有限振幅强迫,对于自旋的大小和位置的弱非线性涡旋Rossby波平均流预测与模型结果非常吻合。使用拉格朗日轨迹,Eliassen-Palm通量矢量和洛伦兹能量周期来分析涡旋的发展。基于先前的观测和理论工作,使用PV注入量的数值估算,作者在现实的时间尺度上获得了15 m s(-1)旋风的旋转。具有外围对流的中层涡流的仿真表明,轴对称导致表面旋风分离器旋转。轴对称化机制证明了暖核涡旋的发展。研究了涡流和涡流通量对旋风分离器暖芯结构的相对贡献。所获得的涡旋自旋显示出对强迫振幅的线性依赖性,这表明存在与涡旋Rossby波相关的非线性反馈机制。在几位作者最近的工作的基础上,这项工作进一步阐明了轴对称化过程对于热带气旋发生问题的重要性。该理论与热带气旋的公开观测结果一致。建议对理论进行进一步的观察和建模测试,具体针对此处讨论的动力学。 [参考:52]

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