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首页> 外文期刊>International Journal of Naval Architecture and Ocean Engineering >Numerical simulation of wave and current interaction with a fixed offshore substructure
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Numerical simulation of wave and current interaction with a fixed offshore substructure

机译:海上固定结构波浪与水流相互作用的数值模拟

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Offshore substructures have been developed to support structures against complex offshore environments. The load at offshore substructures is dominated by waves, and deformation of waves caused by interactions with the current is an important phenomena. Wave load simulation of fixed offshore substructures in waves with the presence of uniform current was carried out by numerical wave tank technique using the commercial software, FLUENT. The continuity and Navier–Stokes equations were applied as the governing equations for incompressible fluid motion, and numerical wavemaker was employed to reproduce offshore wave environment. Convergence test against grids number was carried out to investigate grid dependency and optimized conditions for numerical wave generation were derived including investigation of the damping effect against length of the damping domain. Numerical simulation of wave and current interactions with fixed offshore substructure was carried out by computational fluid dynamics, and comparison with other experiments and simulations results was conducted.
机译:已经开发了海上子结构来为复杂的海上环境提供支撑。海上子结构的载荷以波浪为主,与潮流相互作用引起的波浪变形是一个重要现象。使用商业软件FLUENT,通过数值波箱技术,对存在均匀电流的波浪中固定海上子结构的波浪载荷进行了仿真。连续性方程和Navier-Stokes方程被用作不可压缩流体运动的控制方程,数值造波器被用于再现海上波浪环境。进行了针对网格数的收敛性测试,以研究网格依赖性,并推导了产生数字波的最佳条件,其中包括研究针对阻尼域长度的阻尼效应。通过计算流体动力学进行了与固定海上子结构相互作用的波和流相互作用的数值模拟,并与其他实验和模拟结果进行了比较。

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