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首页> 外文期刊>Journal of the Atmospheric Sciences >Evaluation of the Assumptions in the Steady-State Tropical Cyclone Self-Stratified Outflow Using Three-Dimensional Convection-Allowing Simulations
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Evaluation of the Assumptions in the Steady-State Tropical Cyclone Self-Stratified Outflow Using Three-Dimensional Convection-Allowing Simulations

机译:使用三维对流允许模拟评估稳态热带气旋自分层流出的假设

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摘要

The criteria and assumptions that were used to derive the steady-state tropical cyclone intensity and structure theory of Emanuel and Rotunno are assessed using three-dimensional convection-allowing simulations using the Weather Research and Forecasting Model. One real-data case of Hurricane Patricia (2015) and two idealized simulations with and without vertical wind shear are examined. In all three simulations, the gradient wind balance is valid in the inner-core region above the boundary layer. The angular momentum M and saturation entropy surfaces s* near the top of the boundary layer, in the outflow region and along the angular momentum surface that passes the low-level radius of maximum wind M-RMW are nearly congruent, satisfying the criterion of slantwise moist neutrality in the vicinity of M-RMW. The theoretically derived maximum wind magnitude above the boundary layer compares well with the simulated maximum tangential wind and gradient wind using the azimuthally averaged pressure field during the intensification and quasi-steady state of the simulated storms. The Richardson number analysis of the simulated storms shows that small Richardson number (0 < Ri <= 1) exists in the outflow region, related to both large local shear and small static stability. This criticality of the Richardson number indicates the existence of small-scale turbulence in the outflow region. We also show that the stratification of temperature along the M surfaces at the outflow region for steady-state hurricanes is approximately applicable in these three-dimensional simulations, while the radial distribution of gradient wind is qualitatively comparable to the theoretical radial profiles. Some caveats regarding the theory are also discussed.
机译:使用使用天气研究和预测模型的三维对流仿真评估用于导出稳态热带气旋强度和结构理论的标准和假设。检查飓风帕特里夏(2015年)的一个真实数据情况和两个具有垂直风剪的理想化模拟。在所有三个模拟中,梯度风平衡在边界层上方的内核区域中有效。在边界层的顶部附近的角动量M和饱和熵表面S *在流出区域和沿着通过最大风的低电平半径的角动量表面M-RMW几乎是一致的,满足斜向的标准在M-RMW附近的潮湿中性。在边界层上方的理论上导出的最大风量与模拟的最大切向风和梯度风相比,在模拟风暴的强化和准稳态期间使用方位平均压力场使用方位平均压力场。模拟风暴的Richardson号分析表明,流出区域中存在小的Richardson号(0

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