Data analysis methodologies for hydrodynamic experiments in waves

IF 1.2 Q3 ENGINEERING, MARINE
M. Islam, F. Jahra, Scott Hiscock
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引用次数: 13

Abstract

This paper presents the methodologies developed in order to quality control and analyze the data acquired in hydrodynamic seakeeping experiments of physical models in waves. In such experiments, the data file consists of wave elevations and directions, loads, motions, velocities and accelerations of one or multiple bodies. Additionally, mooring, slamming, sea-fastening, fender and other vessel specific load data may be acquired, which requires special analysis technique. Data products of such experiments are primarily consist of the basic statistics of each of the acquired data channels selected segments. Various wave statistics are produced to estimate the significant and other percentile of peaks/troughs/heights of each relevant data signal. This is done for the wave segment using zero crossing analysis. The response amplitude operator analysis is done through spectral analysis. Weibull analysis is done to estimate the maximum and minimum of an occurrence in a projected time. Analysis routines are written to incorporate each of these analysis techniques to produce results both in tabular and graphical formats. Analysis technique for decay experiments in multiple directions of motion, which are integral parts of any sea-keeping experiments, is also presented. Examples of all such analysis are provided where appropriate.
波浪中水动力实验的数据分析方法
本文介绍了为控制和分析波浪中物理模型水动力耐浪性实验数据而发展起来的方法。在这种实验中,数据文件由一个或多个物体的波高和波向、载荷、运动、速度和加速度组成。此外,系泊、撞击、海上紧固、挡泥板和其他船舶特定载荷数据可能会获得,这需要特殊的分析技术。这类实验的数据产品主要是由所采集的每条数据通道所选段的基本统计数据组成。产生各种波统计来估计每个相关数据信号的峰/谷/高的显著和其他百分位数。这是用零交叉分析对波段完成的。通过谱分析进行响应幅值算子分析。威布尔分析是用来估计一个事件在预计时间内的最大值和最小值。分析例程的编写结合了这些分析技术,以生成表格和图形格式的结果。本文还介绍了多运动方向衰减实验的分析技术,这是任何保海实验的组成部分。在适当的地方提供了所有这些分析的例子。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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来源期刊
CiteScore
2.50
自引率
5.60%
发文量
0
审稿时长
20 weeks
期刊介绍: TJPRC: Journal of Naval Architecture and Marine Engineering (JNAME) is a peer reviewed journal and it provides a forum for engineers and scientists from a wide range of disciplines to present and discuss various phenomena in the utilization and preservation of ocean environment. Without being limited by the traditional categorization, it is encouraged to present advanced technology development and scientific research, as long as they are aimed for more and better human engagement with ocean environment. Topics include, but not limited to: marine hydrodynamics; structural mechanics; marine propulsion system; design methodology & practice; production technology; system dynamics & control; marine equipment technology; materials science; under-water acoustics; satellite observations; and information technology related to ship and marine systems; ocean energy systems; marine environmental engineering; maritime safety engineering; polar & arctic engineering; coastal & port engineering; aqua-cultural engineering; sub-sea engineering; and specialized water-craft engineering. International Journal of Naval Architecture and Ocean Engineering is published quarterly by the Society of Naval Architects of Korea. In addition to original, full-length, refereed papers, review articles by leading authorities and articulated technical discussions of highly technical interest are also published.
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