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Energy balance during generation, propagation and absorption of gravity waves through the δ-LES-SPH model

机译:通过δ-LES-SPH模型产生,传播和吸收重力波时的能量平衡

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This paper presents a numerical analysis of the time behaviours of mechanical and internal fluid energies during generation, propagation and absorption of gravity waves. The analyses are performed through a Smoothed Particle Hydrodynamics (SPH) model in which the viscous and diffusive dissipations are determined through the turbulence closure model presented in Di Mascio et al. (2017) and therefore are a function of the local and instantaneous flow conditions. The wave generation is obtained through the action of a moving paddle. Particular attention is given to the analysis of the energy introduced in the fluid domain as the work made by the moving solid boundary on the fluid mass. In a first problem, a comparison on the time evolution of the energy components is presented for a wave reflecting case, obtained by a flat bottom flume which ends with a vertical wall, and a wave absorbing case, obtained through the generation of breaking waves induced by a sloping bottom. Successively, the energy analysis is applied to study the performances of waves interacting with a curtain breakwater for which reference data are available in the literature. The time evolutions of the single energy components are analyzed separately for two sub-regions of the domain: the first one is the wave propagation region, while the second one is the breakwater region. A specific analysis is thus devoted to determine the amount of energy dissipated, only due to the presence of the curtain breakwater.
机译:本文对重力波的产生,传播和吸收过程中的机械能和内部流体能的时间行为进行了数值分析。分析是通过光滑颗粒流体动力学(SPH)模型进行的,其中粘性和扩散耗散是通过Di Mascio等人提出的湍流闭合模型确定的。 (2017),因此是局部和瞬时流量条件的函数。波的产生是通过移动桨叶的作用获得的。特别要注意的是,作为在流体质量上移动的固体边界所做的功,对在流体域中引入的能量的分析。在第一个问题中,提出了一个反射波的能量分量随时间变化的比较,该反射波是通过一个平底的,以垂直壁作为末端的水槽获得的,而一个吸收波的情况是通过产生感应的破碎波而获得的。倾斜的底部。连续地,能量分析被用于研究波浪与帷幕防波堤相互作用的性能,在文献中可获得参考数据。对于该域的两个子区域,分别分析单个能量分量的时间演变:第一个是波传播区域,而第二个是防波堤区域。因此,仅由于幕布防波堤的存在,专门进行分析以确定耗散的能量。

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