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Stratified coastal ocean interactions with tropical cyclones

机译:沿海海洋与热带气旋的分层相互作用

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摘要

Hurricane-intensity forecast improvements currently lag the progress achieved for hurricane tracks. Integrated ocean observations and simulations during hurricane Irene (2011) reveal that the wind-forced two-layer circulation of the stratified coastal ocean, and resultant shear-induced mixing, led to significant and rapid ahead-of-eye-centre cooling (at least 6 °C and up to 11 °C) over a wide swath of the continental shelf. Atmospheric simulations establish this cooling as the missing contribution required to reproduce Irene's accelerated intensity reduction. Historical buoys from 1985 to 2015 show that ahead-of-eye-centre cooling occurred beneath all 11 tropical cyclones that traversed the Mid-Atlantic Bight continental shelf during stratified summer conditions. A Yellow Sea buoy similarly revealed significant and rapid ahead-of-eye-centre cooling during Typhoon Muifa (2011). These findings establish that including realistic coastal baroclinic processes in forecasts of storm intensity and impacts will be increasingly critical to mid-latitude population centres as sea levels rise and tropical cyclone maximum intensities migrate poleward.
机译:飓风强度预报的改进目前落后于飓风轨道所取得的进展。艾琳飓风(2011)期间对海洋的综合​​观测和模拟表明,分层沿海海洋的风强迫两层环流以及由此产生的切变引起的混合导致了眼前中心的显着快速冷却(至少在整个大陆架上覆盖6°C至11°C。大气模拟将这种冷却确定为再现艾琳加速强度降低所需的缺失贡献。 1985年至2015年的历史浮标显示,在夏季分层情况下,穿过中大西洋湾大陆架的所有11个热带气旋下都发生了眼前中心降温。同样,一个黄海浮标显示出在台风梅法(2011)发生时眼前中心明显而迅速地冷却。这些发现表明,随着海平面上升和热带气旋最大强度向极地迁移,将现实的沿海斜压过程包括在风暴强度和影响的预测中对中纬度人口中心将越来越关键。

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