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Numerical Studies of Coupling Effect of Sloshing on 3D Ship Motions

机译:晃荡对3D船舶运动的耦合效应的数值研究

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摘要

The present work describes the development of an approach to study the problem of ship motions coupled with internal sloshing effects. A hybrid solution algorithm is developed that integrates a three-dimensional potential flow solver for ship motions into a viscous flow solver for sloshing loads. A three-dimensional time-domain forward-speed boundary element method (BEM), based on the transient Green's function technique, is employed to capture the external ship hydrodynamics, while the open source finite volume method (FVM)-based solver, OpenFOAM, which incorporates an incompressible multiphase viscous flow model into an interface-capturing volume of fluid (VOF) technique, is employed to capture the internal sloshing hydrodynamics. After the individual solvers are validated against the experiments and other computations available in the literature, the solution from the coupled solver is discussed, and the influence of the coupling effects of sloshing loads on ship motions is brought out.
机译:本工作描述了一种研究船舶运动与内部晃荡效应相结合的方法的方法。开发了一种混合解决方案算法,该算法将船舶运动的三维势流求解器集成到用于晃荡载荷的粘性流求解器中。基于瞬态格林函数技术的三维时域正向速度边界元方法(BEM)用于捕获外部船舶流体动力学,而基于开源有限体积法(FVM)的求解器OpenFOAM该模型将不可压缩的多相粘性流模型合并到界面捕获流体体积(VOF)技术中,用于捕获内部晃动流体动力学。在针对各个解算器通过文献中的实验和其他计算进行了验证之后,讨论了耦合解算器的解,并提出了晃荡载荷的耦合效应对船舶运动的影响。

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