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首页> 外文期刊>Journal of Fluid Mechanics >Nonlinear and dispersive free surface waves propagating over fluids with weak vertical and horizontal density variation
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Nonlinear and dispersive free surface waves propagating over fluids with weak vertical and horizontal density variation

机译:在垂直和水平密度变化较弱的流体上传播的非线性和分散自由表面波

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We consider the change in fluid density in a depth-integrated long-wave model. By allowing horizontal and vertical variation of fluid density, a depth-integrated model for long gravity waves over a variable-density fluid has been developed, where density change effects are included as correction terms. In particular, a two-layer fluid system is chosen to represent vertical density variations, where interfacial wave effects on the free surface are accounted for through direct inclusion of the velocity component of the interfacial wave. For the numerical implementation of the model, a finite-volume scheme coupled with an approximate Riemann solver is adopted for leading-order terms while cell-centred finite-volume methods are utilized for others. Numerical tests in which the density field is configured to vary either horizontally or vertically have been performed to verify the model. For horizontal variation of fluid density, a pneumatic breakwater system is simulated and fair agreement is observed between computed and measured data, indicating that the current induced by the upward bubble flux is responsible for wave attenuation to some degree. To investigate the effects of internal motion on the free surface, a two-layer fluid system with monochromatic internal wave motion is tested numerically. Simulated results agree well with the measured and analytical data. Lastly, nonlinear interactions between external- and internal-mode surface waves are studied numerically and analytically, and the model is shown to have nonlinear accuracy limitations similar to existing Boussinesq-type models.
机译:我们在深度积分长波模型中考虑流体密度的变化。通过允许流体密度的水平和垂直变化,已经开发出了在可变密度流体上长重力波的深度积分模型,其中包括密度变化效应作为校正项。特别地,选择两层流体系统来表示垂直密度变化,其中通过直接包含界面波的速度分量来解决自由表面上的界面波效应。对于模型的数值实现,对于前导项采用有限体积方案与近似Riemann解算器相结合,而对于其他单元则采用单元为中心的有限体积方法。已经执行了将密度场配置为水平或垂直变化的数值测试,以验证模型。对于流体密度的水平变化,模拟了一个气动防波堤系统,并且在计算数据和测量数据之间观察到合理的一致性,表明向上气泡通量所感应的电流在某种程度上造成了波衰减。为了研究内部运动对自由表面的影响,对具有单色内部波动的两层流体系统进行了数值测试。模拟结果与实测和分析数据吻合良好。最后,对内外模表面波之间的非线性相互作用进行了数值和分析研究,结果表明该模型具有类似于现有Boussinesq型模型的非线性精度限制。

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