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TASK-RELATED ROGUE WAVES EMBEDDED IN EXTREME SEAS

机译:极端情况下嵌入的任务相关行文

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This paper describes a new technique for the generation of tailored design wave sequences in extreme seas which are simulated under laboratory conditions. The wave field is fitted to predetermined global and local target characteristics defined in terms of significant wave height, peak period as well as wave height, crest height, and period of individual waves. The generation procedure is based on two steps: Firstly, a linear approximation of the desired wave train is computed by a Sequential Quadratic Programming (SQP) method which optimises an initially random phase spectrum for a given variance spectrum. The wave board motion derived from this initial guess serves as starting point for directly fitting the physical wave train to the target parameters. The subplex method developed by Rowan (1990) is applied to improve systematically a certain time frame of the wave board motion which is responsible for the evolution of the design wave sequence. The discrete wavelet transformation is introduced to reduce significantly the number of free variables to be considered in the fitting problem. Wavelet analysis allows to localise efficiently the relevant information of the electrical control signal of the wave maker in time and frequency scale. Nonlinear free surface effects, even wave breaking are included in the fitting process since the simulation of the physical wave evolution under laboratory conditions is an integral part of the new technique. This feature is especially important for simulating experimentally wave/structure interactions in rogue waves and critical wave groups. As an illustration of this technique the Draupner "New Year Wave" is simulated and generated in a physical model wave tank. Also a "Three Sisters" wave sequence with succeeding wave heights H_s... 2H_s ... H_s, embedded in an extreme sea, is synthesised.
机译:本文介绍了一种新技术,用于在实验室条件下模拟的极端海洋中生成量身定制的设计波序列。波场适合预先确定的全局和局部目标特性,这些特性是根据有效波高,峰值周期以及波高,波峰高度和单个波的周期来定义的。生成过程基于两个步骤:首先,通过顺序二次规划(SQP)方法计算所需波列的线性近似值,该方法针对给定方差谱优化了初始随机相位谱。从该初始猜测得出的波板运动用作将物理波列直接拟合到目标参数的起点。 Rowan(1990)开发的subplex方法用于系统地改善波板运动的某个时间范围,该时间范围负责设计波序列的演变。引入离散小波变换以显着减少在拟合问题中要考虑的自由变量的数量。小波分析允许在时间和频率范围内有效地定位造波器的电控制信号的相关信息。非线性自由表面效应,甚至是断波都包含在拟合过程中,因为在实验室条件下对物理波演化的仿真是新技术不可或缺的一部分。对于模拟流浪和临界波组中的波/结构相互作用,此功能特别重要。作为此技术的一个示例,Draupner的“ New Year Wave”在物理模型波箱中进行了模拟和生成。还合成了一个“三姐妹”波序列,其波高为H_s ... 2H_s ... H_s,嵌入海底。

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