首页> 外文期刊>Journal of the Atmospheric Sciences >Why Do Model Tropical Cyclones Grow Progressively in Size and Decay in Intensity after Reaching Maturity?
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Why Do Model Tropical Cyclones Grow Progressively in Size and Decay in Intensity after Reaching Maturity?

机译:为什么模型热带气旋在达到成熟后逐渐生长大小和衰减强度?

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摘要

The long-term behavior of tropical cyclones in the prototype problem for cyclone intensification on an f plane is examined using a nonhydrostatic, three-dimensional numerical model. After reaching a mature intensity, the model storms progressively decay while both the inner-core size, characterized by the radius of the eyewall, and the size of the outer circulation-measured, for example, by the radius of the gale-force winds-progressively increase. This behavior is explained in terms of a boundary layer control mechanism in which the expansion of the swirling wind in the lower troposphere leads through boundary layer dynamics to an increase in the radii of forced eyewall ascent as well as to a reduction in the maximum tangential wind speed in the layer. These changes are accompanied by changes in the radial and vertical distribution of diabatic heating. As long as the aggregate effects of inner-core convection, characterized by the distribution of diabatic heating, are able to draw absolute angular momentum surfaces inward, the outer circulation will continue to expand. The quantitative effects of latitude on the foregoing processes are investigated also. The study provides new insight into the factors controlling the evolution of the size and intensity of a tropical cyclone. It provides also a plausible, and arguably simpler, explanation for the expansion of the inner core of Hurricane Isabel (2003) and Typhoon Megi (2010) than that given previously.
机译:采用非水压三维数值模型检查F平面上旋风强化的原型问题的热带气旋的长期行为。在达到成熟的强度之后,模型风暴逐渐衰减,同时内芯尺寸,其特征在于眼睛的半径,以及外循环的尺寸,例如,通过大势风的半径 - 递加。在边界层控制机制方面解释了这种行为,其中较低的对流层中旋转风的膨胀通过边界层动态导致强制眼罩上升的半径增加以及最大切向风的减少层里的速度。这些变化伴随着糖尿病加热的径向和垂直分布的变化。只要内核对流的总效应,以暗核对流的分布为特征,能够向内汲取绝对角动量的表面,外循环将继续膨胀。还研究了纬度对前述过程的定量影响。该研究为控制热带气旋的大小和强度的演变的因素提供了新的洞察。它还提供了一种合理的,可以说的更简单,解释飓风Isabel(2003)和台风Megi(2010)的内核的扩展而不是先前所提供的。

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