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首页> 外文期刊>Weather and forecasting >Research Radar Analyses of the Internal Boundary Layer over Cape Canaveral, Florida, during the Landfall of Hurricane Frances (2004)
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Research Radar Analyses of the Internal Boundary Layer over Cape Canaveral, Florida, during the Landfall of Hurricane Frances (2004)

机译:飓风弗朗西斯登陆期间佛罗里达卡纳维拉尔角内边界的研究雷达分析(2004年)

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摘要

The structure of the coastal internal boundary layer (IBL) during a landfalling hurricane has important ramifications on operational forecasting, structural design, and poststorm damage assessment. Despite these important issues, the mean IBL structure at the coastline during landfall is poorly understood. Knowledge of the vertical kinematic structure within tropical cyclones over water has improved greatly through aircraft reconnaissance missions and the advent of GPS dropsondes and stepped frequency microwave radiometers. Unfortunately, reconnaissance and research aircraft are limited to overwater missions, resulting in a poor understanding of vertical kinematic structure near the coastal interface, where changes in IBL structure are expected due to changes in surface roughness. Composite single- and dual-Doppler radar observations collected by the Shared Mobile Atmospheric Research and Teaching Radars during the landfall of Hurricane Frances (2004) are presented. Data analyses from the Cape Canaveral, Florida, region reveal a pronounced IBL throughout the data collection period. As a result, significant variability in the analyzed wind speed and direction are found across and near the coastal interface. IBL height is found to be suppressed when compared to an accepted empirical growth model, while multiple abrupt roughness transitions associated with the Cape Canaveral region contribute to a complex mean IBL structure.
机译:登陆飓风期间的沿海内部边界层(IBL)的结构对运行预测,结构设计和暴风雨后破坏评估具有重要影响。尽管存在这些重要问题,人们对登陆期间海岸线上的平均IBL结构却知之甚少。通过飞机侦察任务以及GPS探空仪和步进频率微波辐射计的问世,对热带气旋水上垂直运动学结构的了解大大提高。不幸的是,侦察和研究飞机仅限于水上飞行任务,导致对沿海界面附近的垂直运动学结构了解甚少,在沿海界面,由于表面粗糙度的变化,预计IBL结构会发生变化。提出了在飓风弗朗西斯(2004)登陆期间由共享移动大气研究和教学雷达收集的单多普勒和双多普勒复合雷达观测资料。来自佛罗里达州卡纳维拉尔角地区的数据分析显示,在整个数据收集期间,都有明显的IBL。结果,在整个沿海界面及其附近发现了分析风速和风向的显着变化。与公认的经验增长模型相比,IBL高度受到抑制,而与卡纳维拉尔角地区相关的多个陡峭粗糙度过渡则造成了复杂的平均IBL结构。

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