半潜船螺旋条减少涡致运动的CFD模拟

Jiawei He, D. Wan, Zhiqiang Hu
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摘要

本文介绍了一套带和不带螺旋条的半潜器的VIM CFD模拟。采用基于开源框架OpenFOAM开发的求解器naoe-FOAM-SJTU进行了低雷诺数(Re)下的数值研究。采用自主开发的六自由度运动模块和系泊系统模块,分别对半潜船运动和系泊线约束进行建模。为了进行计算,湍流闭合选择了基于剪切应力输运(SST)的延迟分离涡模拟(DDES),该模拟在边界区域内使用RANS模型,在边界区域外使用LES模型。这允许在边界区域内进行真实的模拟,漩涡脱落正在发生,同时不使用不必要的计算能力。在不同减速速度(Ur)条件下,比较了半潜船带和不带螺旋桨条时的涡致运动(VIM)。基于旋涡脱落特性,研究了半潜式平台的流动特性。报道了不同入射角下半潜器在不同降速下的时程、轨迹和涡量。结果表明,本文提出的CFD求解器naoe-FOAM-SJTU适用于半潜器的涡流动力学研究。
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CFD Simulations of Helical Strakes Reducing Vortex Induced Motion of a Semi-Submersible
This paper describes a set of VIM CFD simulations for a semi-submersible with and without helical strakes. The numerical investigations are conducted under low Reynolds number (Re) using naoe-FOAM-SJTU, a solver developed based on the open source framework OpenFOAM. The self-developed six degree-of-freedom (6DoF) motion module and mooring system module are applied to model motions of semi-submersible and the constraint of mooring lines, respectively. To carry out the calculations, turbulence closure has been chosen the Shear Stress Transport (SST) based Delay Detached eddy simulation (DDES), which uses the RANS model inside the boundary region and LES model outside the boundary area. This allows a realistic simulation within the boundary region where the vortex shedding is taking place, while not using unnecessary amounts of computational power. The Vortex Induced Motion (VIM) of semi-submersible with and without helical strakes was compared against each other for different reduced velocities (Ur). The flow characteristics of the semi-submersible platform is studied based on the characteristics of vortex shedding. For different current incident angles, time histories, trajectories and vorticity of the semi-submersible at different reduced velocities are reported. The result shows our CFD solver naoe-FOAM-SJTU is applicable and reliable to study VIM of semi-submersibles.
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