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首页> 外文期刊>Journal of the Atmospheric Sciences >Impact of the Tropopause Temperature on the Intensity of Tropical Cyclones: An Idealized Study Using a Mesoscale Model
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Impact of the Tropopause Temperature on the Intensity of Tropical Cyclones: An Idealized Study Using a Mesoscale Model

机译:对流线温度对热带气旋强度的影响:使用中尺度模型的理想化研究

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摘要

This study investigates the impact of the tropopause temperature on the intensity of idealized tropical cyclones (TCs) superimposed on background states of radiative–convective equilibrium (RCE) in a threedimensional (3D) mesoscale model. Simulations are performed with constant sea surface temperature and an isothermal stratosphere with constant tropopause temperature. The potential intensity (PI) computed from the thermodynamic profiles of theRCE state (before the TCs are superimposed on it) increases by 0.4–1ms~(-1) for each 1 K of tropopause temperature reduction. The 3D TC experiments yield intense tropical cyclones whose intensities exceed the PI value substantially. It is further shown that the discrepancy may be largely explained by the supergradient wind in the 3D simulations. The intensities of these 3D TCs increase by ~0.4ms~(-1) per 1 K of cooling in the tropopause temperature in RCE, on the low end of the PI dependence on the tropopause temperature. Sensitivity experiments with a larger horizontal grid spacing of 8 kmproduce less intense TCs, as expected, but similar dependence (~20.5ms~(-1)K~(-1)) on tropopause temperature. Equilibrium TC solutions are further obtained in 200-day experiments with different values of constant stratospheric temperature. Similar relationships between TC intensity and tropopause temperature are also found in these equilibrium TC solutions.
机译:这项研究调查了对流层顶温度对理想的热带气旋(TCs)强度的影响,该强度叠加在三维(3D)中尺度模型的辐射对流平衡(RCE)背景状态下。在恒定的海面温度和恒定的对流层顶温度等温平流层中进行模拟。根据对流层顶温度每降低1 K,从RCE状态的热力学曲线(在TC叠加之前)计算出的电势强度(PI)增加0.4-1ms〜(-1)。 3D TC实验产生了强烈的热带气旋,其强度大大超过了PI值。进一步显示,差异可能在很大程度上由3D模拟中的超梯度风解释。这些3D TC的强度在RCE的对流层顶温度中每冷却1 K会增加〜0.4ms〜(-1),这是PI对对流层顶温度的依赖性较低。如预期的那样,在较大水平网格间距为8 km的敏感性实验中,产生的TC强度较低,但是对对流层顶温度的依赖性相似(〜20.5ms〜(-1)K〜(-1))。在200天的实验中,使用不同的恒定平流层温度值进一步获得了TC平衡溶液。在这些平衡TC溶液中也发现了TC强度和对流层顶温度之间的相似关系。

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