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A FOURIER APPROXIMATION METHOD FOR THE MULTI-PUMP MULTI-PISTON POWER TAKE-OFF SYSTEM

机译:多泵多活塞动力输出系统的傅里叶逼近方法

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In this work, a frequency-domain method for the numerical solution of the nonlinear dynamics of a wave energy converter with a pumping system is presented. To this end, a finite Fourier series is used to describe the nonlinear force components, i.e., the pumping force. The dynamics of the buoy and the piston are obtained by solving a set of linear motion equations. The numerical model is validated by comparing it with experimental results. The dynamic characteristics of the pumping system are investigated by performing a series of numerical simulations for several approximation orders under various wave conditions. The advantages and limitations of this method are also discussed in the paper. This work provides great insight into the mechanism of a WEC with a pumping unit under various sea states, which can guide the design of a multi-piston pump (MPP) system. This model will be applied to investigate the optimal configuration for the MPP system in the future.
机译:在这项工作中,提出了一种频域方法,用于数值模拟带泵系统的波能转换器的非线性动力学。为此,使用有限傅里叶级数来描述非线性力分量,即泵送力。浮标和活塞的动力学是通过求解一组线性运动方程获得的。通过将其与实验结果进行比较来验证该数值模型。通过在各种波浪条件下对几个近似阶数执行一系列数值模拟,研究了抽水系统的动态特性。本文还讨论了这种方法的优点和局限性。这项工作对在各种海况下带有抽油机的WEC的机理提供了深刻的见解,这可以指导多活塞泵(MPP)系统的设计。将来,该模型将用于研究MPP系统的最佳配置。

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