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NONLINEAR ANALYSIS OF A HEAVING POINT ABSORBER IN FREQUENCY DOMAIN VIA STATISTICAL LINEARIZATION

机译:通过统计线性化对频域中垂点的非线性进行分析

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摘要

The majority of wave energy devices operate close to resonant conditions to enhance energy conversion resulting in large displacements. As a result, nonlinearities significantly contribute to the dynamics of the system. A typical approach to predict the behavior of the system and power output relies on the derivation of a mathematical model in the time domain to simulate the dynamics through some numerical codes. However, a relatively high computational demand is required for those simulations. In this regard, the present work deals with the nonlinearities in the frequency domain via Statistical Linearization. Two different power-take-off systems are investigated, a linear and a hydraulic one, and their mean power calculations are derived based on the Statistical Linearization. The reliability of the method is verified against the Power Spectrum Density (PSD) of nonlinear time domain simulations. Only the heave motion is analyzed, and several nonlinearities commonly reported for Point Absorbers (PA) were considered, such as cubic stiffness, geometric nonlinearities, drag forces, and Coulomb forces. The approach employed in this work offers a reliable estimation of body dynamics for all nonlinearities considered. In addition, the present method produced a fast estimation, which can be valuable for the assessment of several designs and sea load conditions.
机译:大多数波能设备在接近谐振条件下工作以增强能量转换,从而导致大位移。结果,非线性极大地促进了系统的动力学。预测系统行为和功率输出的典型方法依赖于时域数学模型的推导,以通过一些数字代码来模拟动力学。但是,这些模拟需要相对较高的计算需求。在这方面,本工作通过统计线性化处理频域中的非线性。研究了两种不同的动力输出系统,线性系统和液压系统,并基于统计线性化推导了它们的平均功率计算。通过非线性时域仿真的功率谱密度(PSD)验证了该方法的可靠性。仅分析了升沉运动,并考虑了通常针对点吸收器(PA)报告的一些非线性,例如立方刚度,几何非线性,拖曳力和库仑力。在这项工作中采用的方法为所考虑的所有非线性提供了可靠的人体动力学估计。另外,本方法产生了快速估计,这对于评估几种设计和海载荷条件可能是有价值的。

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