In this work we present the mathematical model and simulations of a particular wave energy converter, the so-called oscillating water column. In this device, waves governed by the one-dimensional nonlinear shallow water equations arrive from offshore, encounter a step in the bottom and then arrive into a chamber to change the volume of the air to activate the turbine. The system is reformulated as two transmission problems: one is related to the wave motion over the stepped topography and the other one is related to the wave-structure interaction at the entrance of the chamber. We finally use the characteristic equations of Riemann invariants to obtain the discretized transmission conditions and we implement the Lax-Friedrichs scheme to get numerical solutions.
翻译:在这项工作中,我们展示了一个特定的波能转换器的数学模型和模拟模型,即所谓的振荡式水柱。在这个装置中,由单维非线性浅水方程式管理的波浪从离岸而来,在底部遇到一个步骤,然后进入一个孔以改变空气量以激活涡轮机。这个系统被重新改写为两个传输问题:一个与升降式地形上的波动有关,另一个与室内入口处的波结构相互作用有关。我们最后使用里曼变异物的特性方程式以获得分解传输条件,我们实施拉克斯-弗里德里奇斯计划以获得数字解决方案。