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Addressing Hurricane Intensity through Angular Momentum and Scale Energetics Approaches

机译:通过角动量和尺度能量学方法解决飓风强度

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摘要

This paper addresses two avenues for gaining insight into the hurricane intensity issue—the angular momentum approach and the scale interaction approach. In the angular momentum framework, the torques acting on a parcel's angular momentum are considered along an inflowing trajectory in order to construct the angular momentum budget. These torques are separable into three components: The pressure torque, the surface friction torque, and the cloud torque. All torques are found to diminish the angular momentum of an inflowing parcel, with the cloud torques having the most important role. In the scale interaction approach, energy exchanges among different scales within a hurricane are considered as a means of understanding hurricane intensity. It is found that the majority of kinetic energy contribution to the hurricane scales originates from potential-to-kinetic in-scale energy conversions. The contribution of mean-wave interactions in the kinetic energy varies with distance from the center and with the life stage of a storm. In the early stages, as the disorganized convection becomes organized on the hurricane scales, upscale energy transfers (i.e., from small to large scale) are found to take place in the outer radii of the storm. In a mature storm, the kinetic energy transfers are downscale, except for the inner radii.
机译:本文介绍了两种了解飓风强度问题的途径-角动量法和尺度相互作用法。在角动量框架中,考虑沿流入轨迹作用在包裹角动量上的转矩,以构造角动量预算。这些扭矩可分为三个部分:压力扭矩,表面摩擦扭矩和云扭矩。发现所有扭矩都会减小流入的包裹的角动量,其中云扭矩起着最重要的作用。在尺度相互作用方法中,飓风内不同尺度之间的能量交换被认为是理解飓风强度的一种手段。发现对飓风尺度的动能贡献主要来自势能到尺度内的能量转换。平均波相互作用对动能的贡献随距中心的距离以及风暴的生命阶段而变化。在早期阶段,随着混乱的对流在飓风尺度上变得井井有条,在风暴的外半径中发生了高级能量转移(即从小规模到大规模)。在成熟的风暴中,动能传递是除内部半径以外的小尺度转换。

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