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Influence of storm timing and forward speed on tides and storm surge during Hurricane Matthew

机译:Storm时序和前进速度对潮汐和风暴潮潮流潮流的影响

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摘要

The amount and extent of coastal flooding caused by hurricanes can be sensitive to the timing or speed of the storm. For storms moving parallel to the coast, the hazards can be stretched over a larger area. Hurricane Matthew was a powerful storm that impacted the southeastern U.S. during October 2016, moving mostly parallel to the coastline from Florida through North Carolina. In this study, three sources for atmospheric forcing are considered for a simulation of Matthew's water levels, which are validated against extensive observations, and then the storm's effects are explored on this long coastline. It is hypothesized that the spatial variability of Matthew's effects on total water levels is partly due to the surge interacting nonlinearly with tides. By changing the time of occurrence of the storm, differences in storm surge are observed in different regions due to the storm coinciding with other periods in the tidal cycles. These differences are found to be as large as 1 m and comparable to the tidal amplitude. A change in forward speed of the storm also should alter its associated flooding due to differences in the duration over which the storm impacts the coastal waters. With respect to the forward speed, the present study contributes to established results by considering the scenario of a shore-parallel hurricane. A faster storm caused an increase in peak water levels along the coast but a decrease in the overall volume of inundation. On the other hand, a slower storm pushed more water into the estuaries and bays and flooded a larger section of the coast. Implications for short-term forecasting and long-term design studies for storms moving parallel to long coastlines are discussed herein.
机译:由飓风引起的沿海洪水的数量和程度可以对风暴的时机或速度敏感。对于平行于海岸移动的暴风雨,危险可以在更大的区域上伸展。马修飓风是一场强大的风暴,影响了美国东南部2016年10月,主要平行于佛罗里达州的海岸线,通过北卡罗来纳州。在这项研究中,考虑了三种大气强迫来源,用于模拟马修的水位,这是针对广泛观察的验证,然后在这种长海岸线上探讨了风暴的影响。假设马修对总水平的影响的空间可变性部分原因是由于潮汐与潮汐非线性相互作用。通过改变风暴的发生时间,由于暴风雨与潮汐循环中的其他时期重合,在不同地区观察到风暴浪涌的差异。这些差异被发现与潮汐幅度相比大。暴风雨的前向速度的变化也应该改变其相关的洪水,因为风暴影响沿海水域的持续时间差异。关于前进速度,本研究通过考虑岸平行飓风的情景,有助于确定结果。较快的风暴导致沿着海岸的水平增加,但淹没的总体积减少。另一方面,较慢的风暴将更多的水推入河口和海湾,并淹没了较大的海岸。本文讨论了对长期预测和长期设计研究的对长期预测和长期设计研究的影响。

著录项

  • 来源
    《Ocean modelling》 |2019年第2019期|共19页
  • 作者单位

    North Carolina State Univ Dept Civil Construct &

    Environm Engn 2501 Stinson Dr Raleigh NC 27607 USA;

    North Carolina State Univ Dept Civil Construct &

    Environm Engn 2501 Stinson Dr Raleigh NC 27607 USA;

    Univ N Carolina Inst Marine Sci 150 Coker Hall 3431 Arendell St Morehead City NC 28557 USA;

    WeatherFlow Inc 320 East Vine Dr Ft Collins CO 80524 USA;

    Renaissance Comp Inst 100 Europa Dr Suite 540 Chapel Hill NC 27517 USA;

    WeatherFlow Inc 320 East Vine Dr Ft Collins CO 80524 USA;

    Oceanweather Inc 350 Bedford St Suite 404 Stamford CT 06901 USA;

    Univ Texas Austin Inst Computat Engn &

    Sci Austin TX 78712 USA;

    Seahorse Coastal Consulting 3103 Mandy Lane Morehead City NC 28557 USA;

    Univ N Carolina Inst Marine Sci 150 Coker Hall 3431 Arendell St Morehead City NC 28557 USA;

  • 收录信息
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 海洋学;
  • 关键词

    ADCIRC; SWAN; Inundation; Hindcasting; HSOFS mesh; OWI wind fields;

    机译:Adcirc;天鹅;淹没;Hindcasting;HSOFS网格;猫头鹰风;

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