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Methodology to quantify vertical accelerations of planing craft in irregular waves.

机译:量化不规则波浪中滑行船垂直加速度的方法。

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摘要

Planing craft operating in waves at high speeds can experience high, repetitive vertical accelerations that are random and nonlinear in relation to the sea condition. A proper understanding of vertical accelerations is critical to meet statistically based criteria for structural design, habitability, and equipment selection. Historically, it was assumed that planing craft vertical accelerations fit the Exponential distribution, and design methods adopted this conclusion. However, several published papers have raised doubts regarding the accuracy and validity of this Exponential distribution assumption.;The statistical behavior of planing craft vertical accelerations are examined for the Parent and Peak data sets from twenty-eight (28) full-scale and model-scale tests of different hulls operating in irregular waves. Comparisons are made with Exponential, Rayleigh, Gumbel, and Lognormal distributions. Sensitivity studies regarding Peak Identification methods and threshold values are considered. Methods to extend legacy data, including the use of the Monte Carlo simulation technique and correlations between statistical parameters of Parent data sets and Peak data sets are examined.;The results of this research prove that the Exponential distribution is not appropriate for Peak or Parent vertical accelerations. For modern planing craft, the best fit for both the Peak and Parent vertical accelerations is the Gumbel distribution. The Monte Carlo method proved to be accurate in simulating the experimental data using the Gumbel distribution and only limited knowledge of the statistics of the experimental data. A strong linear correlation was found between statistical parameters of the Parent and Peak data sets and relationships are provided as guidance to planing craft designers. Additional statistical values, including Probability of Exceedance values, are included.
机译:在海浪中高速运行的滑行艇可能会经历高重复性的垂直加速度,该加速度相对于海况而言是随机且非线性的。正确理解垂直加速度对于满足基于统计的结构设计,可居住性和设备选择标准至关重要。从历史上看,一直认为刨船的垂直加速度符合指数分布,因此设计方法采用了这一结论。但是,有几篇已发表的论文对此指数分布假设的准确性和有效性提出了疑问。;从28(28)个满刻度和模型中检查了父级和峰级数据集的滑行飞行器垂直加速度的统计行为,在不规则波浪中运行的不同船体的比例测试。使用指数分布,瑞利分布,居姆贝尔分布和对数正态分布进行比较。考虑有关峰鉴定方法和阈值的敏感性研究。研究了扩展传统数据的方法,包括使用蒙特卡洛模拟技术以及父数据集和峰数据集的统计参数之间的相关性。;研究结果证明,指数分布不适用于峰或父垂直加速度。对于现代刨床,最适合峰和母体垂直加速度的是Gumbel分布。事实证明,蒙特卡洛方法在使用Gumbel分布模拟实验数据方面是准确的,并且只有有限的实验数据统计知识。在父级和峰级数据集的统计参数之间发现了很强的线性相关性,并将这些关系提供给刨光工艺设计师。还包括其他统计值,包括“超出概率”值。

著录项

  • 作者

    Grimsley, Jennifer Suzanne.;

  • 作者单位

    Old Dominion University.;

  • 授予单位 Old Dominion University.;
  • 学科 Engineering Naval.;Engineering Marine and Ocean.
  • 学位 Ph.D.
  • 年度 2010
  • 页码 157 p.
  • 总页数 157
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 古生物学;
  • 关键词

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