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Rip Channel Morphodynamics at Pensacola Beach, Florida

机译:佛罗里达彭萨科拉海滩的翻录频道形态动力学

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摘要

80% of all lifeguard related rescues along the beaches of northwest Florida are believed to be related to rip currents. A rip current is the strong flow of water, seaward extending from the beach to the breaker line. It has previously been shown that there are rip current hot spots at Pensacola Beach, forced by a ridge and swale topography offshore, but the annual evolution/behavior of these hotspots (i.e. location, size, frequency, and orientation) have not been examined in detail. Remote imagery from Casino Beach was rectified to a planar view in order to examine the rip channel characteristics. These characteristics were analyzed to determine variations and patterns on a daily, monthly, and seasonal basis and in relation to reset storms, wind and wave characteristics, and the beach states of Casino Beach in order to characterize the rip development and variation throughout a year. Beach states and rip configurations were impacted by many frontal storms and one tropical storm, which were classified as a reset storm when reconfigurations of the beach state and rips occurred. Given sufficient time between reset storms, the bar migrated onshore in a manner consistent with the Wright and Short (1984) model, transitioning from LBT, to RBB, and finally to TBR state. The lack of reset storms after March 2010 resulted in a large frequency of observed rip channels (64) between April and May. It is shown that these rip channels are clustered into 7 statistically significant groups based on their location alongshore at the 95 % confidence interval. It is argued that the rip channel clusters are a direct result of the wave forcing caused by the ridge and swale topography. This situation causes the bar to move onshore that without interruption of a reset storm will attach at certain locations creating a transverse bar and rip morphology. The bar appears to attach to the beach at consistent locations throughout the year creating similar rip locations and subsequently the rip clusters. The risk posed to beach users by these rip currents is concentrated in certain locations which are persistent throughout the year.
机译:佛罗里达州西北部海滩上所有与救生员有关的营救中,有80%被认为与裂谷电流有关。激流是水的强烈流动,向海从海滩延伸到断路器线。以前的研究表明,彭萨科拉海滩上有一些裂谷热点,是由于海脊和沼泽地势所致,但是这些热点的年度演变/行为(即位置,大小,频率和方向)尚未得到研究。详情。为了检查裂谷通道的特征,将来自Casino Beach的远程图像校正为平面视图。分析这些特征以确定每日,每月和季节性的变化和模式,并与重置的风暴,风浪特征以及Casino Beach的海滩状态相关,以表征全年的河道发展和变化。海滩状态和裂谷构造受到许多正面风暴和一场热带风暴的影响,当对海滩状态和裂谷进行重新配置时,这些风暴被归类为重置风暴。在两次重置风暴之间有足够的时间,钢筋以与Wright和Short(1984)模型一致的方式从岸上迁移,从LBT过渡到RBB,最后过渡到TBR状态。 2010年3月之后没有重置风暴,导致在4月至5月之间观测到的裂隙通道(64)的频率很高。结果表明,这些裂隙通道基于其沿海岸的位置(95%置信区间)被分为7个具有统计学意义的组。有人认为,裂谷河道团簇是由脊和and形地形引起的波浪强迫的直接结果。这种情况导致钢筋移动到岸上,而不会受到重置风暴的干扰,它将附着在某些位置,从而形成横向钢筋和裂隙形态。该条似乎全年都固定在海滩上,形成相似的裂口位置,并随后形成裂口群集。这些裂隙水流给海滩使用者带来的风险集中在全年持续存在的某些地区。

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    Labude Daniel;

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