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Hydrodynamics of onshore oscillating water column devices: A numerical study using smoothed particle hydrodynamics

机译:陆上振荡水柱装置的流体动力学:使用平滑粒子动力学的数值研究

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摘要

y Oscillating water column (OWC) device is possibly the most studied among various wave energy converters and many different realizations of the technology have been investigated. To study the complex hydrodynamic behaviour of an OWC, a two-dimensional numerical wave tank based on the weakly compressible smoothed particle hydrodynamics (SPH) method is developed in this paper. A simplified pneumatic model is proposed here to simulate the effect induced by a pneumatic power take-off system within the framework of a singlephase SPH model, and implemented to determine the air pressure imposed on the free surface inside the OWC chamber. Additionally, a regional ghost particle approach, as boundary condition in SPH, is proposed to better simulate fluid dynamics near a thin wall. The overall computation cost is reduced dramatically due to the employment of the regional ghost particle boundary condition method. First, the numerical model is validated under regular waves using published physical and numerical data. An extensive campaign of computational tests is then carried out, studying the performance of the OWC for various wall thicknesses and damping coefficient under various wave conditions. The results demonstrate that the present SPH model can be used as a practical tool for the development of high-performance OWCs.
机译:Y振荡水柱(OWC)装置可能是各种波能转换器中的最多研究,并且已经研究了许多不同的技术实现。为研究OWC的复杂流体动力学行为,本文开发了一种基于弱可压缩平滑粒子流体动力学(SPH)方法的二维数值波箱。这里提出了一种简化的气动模型来模拟单位SPH模型框架内的气动功率起飞系统引起的效果,并实现以确定施加在OWC室内的自由表面上的空气压力。另外,提出了一种区域幽灵颗粒方法,作为SPH中的边界条件,以更好地模拟薄壁附近的流体动力学。由于采用区域鬼粒子边界条件方法,整体计算成本显着降低。首先,使用已发布的物理和数值数据在常规波下验证数值模型。然后进行广泛的计算测试运动,研究OWC在各种波条件下的各种壁厚和阻尼系数的性能。结果表明,目前的SPH模型可以用作开发高性能OWC的实用工具。

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