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首页> 外文期刊>Journal of the Atmospheric Sciences >The Influence of Near-Surface, High-Entropy Air in Hurricane Eyes on Maximum Hurricane Intensity
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The Influence of Near-Surface, High-Entropy Air in Hurricane Eyes on Maximum Hurricane Intensity

机译:飓风眼中近表面的高熵空气对最大飓风强度的影响

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Using a time-dependent axisymmetric numerical model, the authors evaluate whether high-entropy air near the surface in hurricane eyes can substantially increase hurricanes' maximum intensity. This local high-entropy anomaly is ultimately created by surface entropy fluxes in the eye. Therefore, simulations are conducted in which these surface fluxes are set to zero; results show that the high-entropy anomaly is eliminated, yet the axisymmetric tangential wind speed is only slightly weakened (by similar to 4%, on average). These results contradict the hypothesis that transport of high-entropy air from the eye into the eyewall can significantly increase the maximum axisymmetric intensity of hurricanes. In fact, all simulations (with or without high-entropy anomalies) have an intensity that is 25-30 m s(-1) higher than Emanuel's theoretical maximum intensity. Further analysis demonstrates that less then 3% of the total surface-entropy input to the hurricane comes from the eye, and therefore the total magnitude of entropy transport between the eye and eyewall is a negligible component of the entropy budget of the simulated hurricanes. This latter finding is consistent with a cursory comparison with observations.
机译:使用时间相关的轴对称数值模型,作者评估了飓风眼表面附近的高熵空气是否能够实质性地增加飓风的最大强度。这种局部的高熵异常最终是由眼睛中的表面熵通量产生的。因此,进行了将这些表面通量设为零的模拟。结果表明,消除了高熵异常,但轴对称切向风速仅略微减弱(平均降低了约4%)。这些结果与以下假设相矛盾:高熵空气从眼睛进入眼壁会显着增加飓风的最大轴对称强度。实际上,所有模拟(有或没有高熵异常)的强度都比伊曼纽尔的理论最大强度高25-30 m s(-1)。进一步的分析表明,输入到飓风的总表面熵中只有不到3%来自眼睛,因此,眼睛与眼墙之间的熵传输的总大小在模拟飓风的熵预算中可忽略不计。后一个发现与对观察结果的粗略比较是一致的。

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