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Generating Water Waves on Steady Currents Using Mass Source Wave Maker Coupled with Analytical Relaxation Wave Absorber

机译:使用质量源造波器与分析弛豫波吸收器联用在稳流上产生水波

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摘要

In order to numerically simulate the wave-current interaction problems frequently encountered by aquaculture structures, a two-dimensional numerical wave-current tank model was established here based on a mass source wave maker coupled with an analytical relaxation wave absorber. The wave-maker model and the wave-absorber model were embedded into a two-dimensional RANS solver, which was closed with RSM turbulence scheme. The volume of fluid (VOF) method was adapted to accurately capture the free surface between water and air. To generate a steady uniform current flow, the uniform current flow velocity was calculated at the left-hand-side (LHS) and right-had-side (RHS) outflow boundaries, respectively. Once the steady uniform current flow was generated over the whole computational domain, the target water wave was marked within a specified region by embedding the mass source function based on wave theory into the mass conservation equation and then propagated on the generated uniform current flow. To verify the accuracy of the numerical wave-current tank established here, some of the obtained numerical results were then compared with the experimental results and the analytical solutions, and they agreed well with each other, indicating that the model developed here has great ability in simulating water waves on uniform currents over constant water depth. The established numerical wave-current tank was then used to study the optimal layout of the mass source region and the effects of water current velocity on water surface wave parameters during regular wave coupling with uniform water currents. Meanwhile, the established model was extended to generate steep wave and apply in deep water conditions. Finally, the proposed methods were applied to investigate the wave-current-structure interaction problems and the propagation of solitary waves traveling with coplanar/counter currents. Model-data comparisons show that the developed model here is potentially useful and efficient for investigating the inevitable wave-current-structure interaction problems in aquaculture technologies.
机译:为了数值模拟水产养殖结构经常遇到的波浪-电流相互作用问题,本文基于质量源波发生器与解析弛豫波吸收器相结合,建立了二维数值波浪-电流池模型。将造波模型和吸波器模型嵌入到二维RANS求解器中,并采用RSM湍流方案进行闭合。采用流体体积(VOF)方法,准确捕获水和空气之间的自由表面。为了产生稳定的均匀电流,分别在左侧(LHS)和右侧(RHS)流出边界处计算均匀电流流速。在整个计算域上产生稳定均匀的电流后,通过将基于波浪理论的质量源函数嵌入到质量守恒方程中,在指定区域内标记目标水波,然后在生成的均匀电流上传播。为了验证所建立的数值波流槽的准确性,将所得到的数值结果与实验结果和解析解进行了比较,结果吻合较好,表明该模型在恒定水深下均匀水流下具有较强的模拟能力。然后,利用建立的数值波流槽,研究了质量源区的优化布局,研究了均匀水流与规则波浪耦合过程中水流速度对水面波浪参数的影响。同时,将建立的模型扩展到产生陡波并应用于深水条件。最后,应用所提方法研究了波-流-结构相互作用问题以及孤立波在共面/逆流下传播的问题。模型-数据对比表明,本文建立的模型对于研究水产养殖技术中不可避免的波浪-水流-结构相互作用问题具有潜在的有用性和效率。

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