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Uncertainties of Estimating Extreme Significant Wave Height for Engineering Applications Depending on the Approach and Fitting Technique—Adriatic Sea Case Study

机译:根据方法和拟合技术 - 拟亚洲案例研究估算工程应用极端显着波高的不确定性

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摘要

Studies on the extrapolation of extreme significant wave height, based on long-term databases, are extensively covered in literature. An engineer, working in the field of naval architecture, marine engineering, or maritime operation planning, when tackling the problem of extreme wave prediction, would typically follow relevant codes and standards. Currently, authorities in the field of offshore operation within its guidelines propose several methods: the initial-distribution, extreme value, and peak-over threshold approaches. Furthermore, for each proposed method, different mathematical fitting techniques are applicable to optimize the candidate distribution parameters: the least-square method, the method of moments, and the maximum likelihood method. A comprehensive analysis was done to determine the difference in the results depending on the choice of method and fitting technique. All combinations were tested on a long-term database for a location in the Adriatic Sea. The variability of the results and trends of extreme wave height estimates for long return periods are presented, and the limitations of certain methods and techniques are noted.
机译:基于长期数据库的基于长期数据库的极端显着波高的外推的研究在文献中广泛覆盖。在解决极端波预测问题时,在海军架构,海洋工程或海上运营规划中工作的工程师通常遵循相关的代码和标准。目前,其准则内海上行动领域的当局提出了几种方法:初始分布,极值和峰值阈值接近。此外,对于每个所提出的方法,不同的数学拟合技术适用于优化候选分布参数:最小二乘法,矩和最大似然方法。完成综合分析以确定结果的差异,这取决于方法和拟合技术的选择。所有组合都在长期数据库中测试了亚得里亚海中的一个位置。提出了长返回周期的极端波高估计结果的变化和趋势,并注意到某些方法和技术的局限性。

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