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首页> 外文期刊>Ocean Engineering >Modelling physical wave tank with flap paddle and porous beach in OpenFOAM
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Modelling physical wave tank with flap paddle and porous beach in OpenFOAM

机译:在OpenFOAM中用襟翼桨和多孔海滩模拟物理波箱

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The capability of a numerical model to mimic the operation of a physical wave tank allows us to carry out complementary numerical tests to explore various aspects or to investigate the insights of the physical tests, which are otherwise not feasible with limited measured data. The numerical model could also be extended beyond the physical limitation of a laboratory facility, such as "full-scale" tests with realistic conditions at lower cost and shorter turnaround time. In this paper, we present a construction of such a numerical model of a physical wave tank with flap paddles and porous beaches. The model is built based on the Navier-Stokes solver and the Volume of Fluids method in the open-source software Open Field Operation and Manipulation (OpenFOAM). The paddles and the beaches are explicitly modelled to mimic the behaviours of the physical counterparts in the tank. High quality laboratory experiments of regular and focused waves were conducted for the validation of the numerical model. Extension of the numerical model to a three-dimensional wave tank with individually controlled paddles is also demonstrated.
机译:数值模型模仿物理波箱运行的能力使我们能够进行补充性数值测试,以探索各个方面或研究物理测试的见解,否则,在有限的测量数据下这是不可行的。数值模型还可以扩展到实验室设施的物理限制之外,例如以实际条件以较低的成本和较短的周转时间进行“全面”测试。在本文中,我们提出了具有襟翼桨和多孔海滩的物理波箱的这种数值模型的构造。该模型是基于Navier-Stokes求解器和开源软件“开放域操作与操纵”(OpenFOAM)中的“流体体积”方法构建的。桨和海滩经过明确建模,以模仿水箱中物理对应物的行为。进行了规则波和聚焦波的高质量实验室实验,以验证数值模型。还演示了将数值模型扩展到具有单独控制的桨叶的三维波箱的功能。

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