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首页> 外文期刊>Applied Ocean Research >A novel decomposition of the quadratic transfer function (QTF) for the time-domain simulation of non-linear wave forces on floating bodies
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A novel decomposition of the quadratic transfer function (QTF) for the time-domain simulation of non-linear wave forces on floating bodies

机译:浮体上非线性波力时域模拟的二次传递函数(QTF)的新颖分解

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摘要

In the present study, a novel method is proposed for the separation of the second-order sum-and difference-frequency wave forces that is, quadratic transfer functions (QTFs) on a floating body into three components due to wave-wave, wave-motion, and motion-motion action. By applying the new QTF components, the second-order wave forces on a floating body can be strictly computed in the time domain. In this work, the boundary value problems (BVPs) corresponding to the three kinds of QTF components were derived, and non-homogeneous boundary conditions on the free surface and the body surface were obtained. The second-order diffraction potentials were determined using the boundary integral equation method. In the solution procedure, the highly oscillatory and slowly converging integral on the free surface was evaluated in an accurate and effective manner. Furthermore, the application of the QTF components in the time domain was demonstrated. The second-order exciting forces in the time domain were divided into three parts. Each part of these forces was computed via a two-term Volterra series model based on the incident waves, the first-order motion response, and the QTF components. This method was applied to several numerical examples. The results demonstrated that this decomposition yields satisfactory results. (C) 2017 Elsevier Ltd. All rights reserved.
机译:在本研究中,提出了一种新的方法,用于分离二阶和频率波力,即由于波浪波,波 - 波 - 运动和运动动作动作。通过应用新的QTF组件,浮体上的二阶波力可以在时域中严格计算。在这项工作中,得到了与三种QTF分量相对应的边值问题(BVP),并且获得了自由表面和体表面上的非均匀边界条件。使用边界积分方程法测定二阶衍射电位。在解决方案过程中,以准确和有效的方式评估自由表面上的高度振荡和缓慢的整体。此外,证明了在时域中的QTF组分的应用。时域中的二阶激动力分为三个部分。这些力的每个部分是通过基于入射波,一阶运动响应和QTF组件的双级Volterra系列模型计算的。将该方法应用于几个数值例子。结果表明,这种分解产生令人满意的结果。 (c)2017 Elsevier Ltd.保留所有权利。

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