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首页> 外文期刊>Mathematical Problems in Engineering: Theory, Methods and Applications >Influences of Vorticity to Vertical Motion of Two-Dimensional Moonpool under Forced Heave Motion
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Influences of Vorticity to Vertical Motion of Two-Dimensional Moonpool under Forced Heave Motion

机译:强迫升沉运动下涡度对二维月池垂直运动的影响

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Potential (inviscid-irrotational) and Navier-Stokes equation-based (viscous) flows were numerically simulated around a 2D floating rectangular body with a moonpool; particular emphasis was placed on the piston mode through the use of finite volume method (FVM) and boundary element method (BEM) solvers. The resultant wave height and phase shift inside and outside the moonpool were compared with experimental results by Faltinsen et al. (2007) for various heaving frequencies. Hydrodynamic coefficients were compared for the viscous and potential solvers and sway and heave forces were discussed. The effects of the viscosity and vortex shedding were investigated by changing the gap size, corner shape, and viscosity. The viscous flow fields were thoroughly discussed to better understand the relevant physics and shed light on the detail flow structure at resonant frequency. Vortex shedding was found to account for the most of the damping. The viscous flow simulations agreed well with the experimental results, showing the actual role and contribution of viscosity compared to potential flow simulations.
机译:在带有月池的2D漂浮矩形体周围,对基于势(无粘性)和基于Navier-Stokes方程(粘性)的流动进行了数值模拟。通过使用有限体积法(FVM)和边界元法(BEM)求解器,特别强调了活塞模式。 Faltinsen等人将月池内外的合成波高和相移与实验结果进行了比较。 (2007年)对于各种起伏频率。比较了粘性和潜在求解器的流体力学系数,并讨论了摇摆力和升沉力。通过改变间隙尺寸,拐角形状和粘度来研究粘度和涡流脱落的影响。深入讨论了粘性流场,以更好地了解相关物理原理,并阐明了共振频率下的详细流结构。发现涡流脱落是造成大部分阻尼的原因。粘性流动模拟与实验结果非常吻合,表明与潜在流动模拟相比,粘度的实际作用和贡献。

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