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HAMS: A Frequency-Domain Preprocessor for Wave-Structure Interactions—Theory, Development, and Application

机译:HAMS:一种用于波结构相互作用的频域预处理器—理论,开发和应用

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This paper presents the theoretical background, the numerical implementation, and the applications of a new software that has been developed in recent years for the analysis of wave-structure interactions. The software is developed in the frequency domain, as a preprocessor of computing the wave excitation force, the added mass, and the wave radiation damping, for the input to a time-domain solver via the Fourier cosine and sine transforms. In addition, it can also predict the motion responses of a marine structure with sufficient accuracy, with or without the presence of a mooring system. Unlike other frequency-domain software, such as WAMIT ? and Hydrostar ? , the present software currently employs the least squares method in association with a partially extended boundary integral equation method to remove the so-called “irregular frequencies”. Calculation of the free-surface Green’s function employs a combination of fast-convergent series expansions in different parametric sub-regions. The solution of the resultant linear algebraic system employs the lower-upper (LU) decomposition method. Symmetry properties can be exploited, and the open multi-processing (OpenMP) parallelization technique can be applied to reduce the computation burden. The accuracy and the efficiency of the developed software are finally confirmed by numerical validations on three benchmark cases of a floating ellipsoid, a truncated circular cylinder and the OC4 DeepCwind semisubmersible floating wind turbine. A free executable version of the software is available to the research communities with a hope of facilitating the advancements in the researches that are relevant to ocean engineering and marine renewable energies.
机译:本文介绍了近年来开发的用于分析波-结构相互作用的新软件的理论背景,数值实现和应用。该软件是在频域中开发的,作为计算波激发力,附加质量和波辐射阻尼的预处理器,用于通过傅立叶余弦和正弦变换输入到时域求解器。另外,在有或没有系泊系统的情况下,它也可以以足够的精度预测海洋结构的运动响应。与其他频域软件不同,例如WAMIT?和Hydrostar? ,本软件当前采用最小二乘法结合部分扩展的边界积分方程法来去除所谓的“不规则频率”。自由表面格林函数的计算采用了在不同参数子区域中的快速收敛级数展开的组合。所得线性代数系统的解决方案采用下-上(LU)分解方法。可以利用对称属性,并且可以应用开放式多处理(OpenMP)并行化技术来减少计算负担。最终,通过对浮动椭球体,截头圆柱体和OC4 DeepCwind半潜式浮动风力涡轮机这三个基准案例的数值验证,证实了所开发软件的准确性和效率。研究社区可以使用该软件的免费可执行版本,以期促进与海洋工程和海洋可再生能源相关的研究进展。

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