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首页> 外文期刊>Journal of the Atmospheric Sciences >Impacts of Radiation and Cold Pools on the Intensity and Vortex Tilt of Weak Tropical Cyclones Interacting with Vertical Wind Shear
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Impacts of Radiation and Cold Pools on the Intensity and Vortex Tilt of Weak Tropical Cyclones Interacting with Vertical Wind Shear

机译:辐射和冷池对垂直风剪切弱热带旋风区强度和涡旋倾斜的影响

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摘要

Idealized numerical simulations of weak tropical cyclones (e.g., tropical depressions and tropical storms) in sheared environments indicate that vortex tilt reduction and convective symmetrization are key structural changes that can precede intensification. Through a series of ensembles of idealized numerical simulations, this study demonstrates that including radiation in the simulations affects the timing and variability of those structural changes. The underlying reason for those effects is a background thermodynamic profile with reduced energy available to fuel strong downdrafts; such a profile leads to weaker lower-tropospheric ventilation, greater azimuthal coverage of clouds and precipitation, and smaller vortex tilt with radiation. Consequently, the simulations with radiation allow for earlier intensification at stronger shear magnitudes than without radiation. An unexpected finding from this work is a reduction of both vortex tilt and intensity variability with radiation in environments with 5 m s(-1) deep-layer shear. This reduction stems from reduced variability in nonlinear feedbacks between lower-tropospheric ventilation, cold pools, convection, and vortex tilt. Sensitivity experiments confirm the relationship between those processes and suggest that microphysical processes (e.g., rain evaporation) are major sources of uncertainty in the representation of weak, sheared tropical cyclones in numerical weather prediction models.
机译:剪切环境中弱热带气旋(例如,热带凹陷和热带风暴)的理想数值模拟表明涡旋倾斜降低和对流对称化是可以在强化之前的关键结构变化。通过一系列理想化的数值模拟,本研究表明,包括模拟中的辐射会影响那些结构变化的时间和可变性。这些效果的潜在原因是背景热力学型材,可降低能量,以燃料强下降装置;这样的型材导致较弱的较低的较低的云层的通风,云和沉淀的更大方位角覆盖,以及较小的涡流与辐射倾斜。因此,具有辐射的仿真允许更早地强化剪切幅度而不是辐射。这项工作的意外发现是涡流倾斜和强度可变性的降低,在具有5米S(-1)深层剪切的环境中的辐射。这种减少源于下部对流层通风,冷池,对流和涡旋倾斜之间的非线性反馈中的降低变化。敏感性实验证实了这些过程之间的关系,并表明微微药物过程(例如,雨蒸发)是数值天气预报模型中弱,剪切的热带气旋的代表中的不确定性的主要来源。

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