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How does the eye warm? Part II: Sensitivity to vertical wind shear and a trajectory analysis

机译:眼睛如何保暖?第二部分:对垂直风切变的敏感性和轨迹分析

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In Part II of this study, idealized simulations of tropical cyclones are used to investigate the influence of vertical wind shear on the structure of warming and descent in the eye; results are compared with the no-shear simulation that was analyzed in Part I. During intensification of a tropical cyclone in a quiescent environment, time-averaged eye descent is maximized at 12-13-km height. Warming is not generally maximized at these levels, however, because the static stability is at a minimum. Consequently, the perturbation temperature is maximized at midlevels. Each of the above results remains valid for sheared tropical cyclones, and therefore shear does not systematically alter the height of the warm core. An analysis of over 90 000 parcel trajectories yields further insight into the mechanisms of eye warming and addresses several outstanding questions regarding the character of eye descent. The rate at which parcels are stirred from the eye into the eyewall is a strong function of intensity. While stirring is large at the beginning of rapid intensification (RI), once a sufficient intensity is achieved, most parcels originating near the storm center can remain inside the eye for at least several days. Many parcels in the upper troposphere are able to descend within the eye by 5-10 km. The above results are relatively insensitive to the presence of up to 10 m s21 of shear. In contrast, stirring in the eye-eyewall interface region is substantially enhanced by shear.
机译:在本研究的第二部分中,使用热带气旋的理想模拟来研究垂直风切变对眼睛变暖和下降结构的影响。将结果与第一部分中分析的无剪切模拟进行了比较。在静止环境中热带气旋的加剧过程中,时间平均眼球下降在12-13公里的高度处最大。但是,由于静态稳定性是最小的,因此通常不会在这些级别上使升温最大化。因此,摄动温度在中间水平处最大。以上每个结果对于剪切的热带气旋仍然有效,因此剪切不会系统地改变暖芯的高度。对超过9万个包裹轨迹进行分析,可以进一步了解眼睛变暖的机理,并解决有关眼睛下降特性的几个突出问题。从眼睛到眼墙的包裹搅拌速度是强度的强函数。尽管在快速增强(RI)开始时搅拌很大,但是一旦达到足够的强度,大多数来自风暴中心附近的包裹就会在眼内保留至少几天。对流层上的许多包裹能够在眼内下降5-10 km。上述结果对剪切力高达10 m s21的存在相对不敏感。相反,在眼-眼壁界面区域中的搅拌通过剪切作用而显着增强。

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