Moretti Giacomo, Rosati Papini Gastone Pietro, Daniele Luca, Forehand David, Ingram David, Vertechy Rocco, Fontana Marco
TeCIP Institute, Scuola Superiore Sant'Anna, Pisa, Italy.
Department of Industrial Engineering, The University of Trento, Trento, Italy.
Proc Math Phys Eng Sci. 2019 Feb;475(2222):20180566. doi: 10.1098/rspa.2018.0566. Epub 2019 Feb 13.
This paper introduces the analysis and design of a wave energy converter (WEC) that is equipped with a novel kind of electrostatic power take-off system, known as dielectric elastomer generator (DEG). We propose a modelling approach which relies on the combination of nonlinear potential-flow hydrodynamics and electro-hyperelastic theory. Such a model makes it possible to predict the system response in operational conditions, and thus it is employed to design and evaluate a DEG-based WEC that features an effective dynamic response. The model is validated through the design and test of a small-scale prototype, whose dynamics is tuned with waves at tank-scale using a set of scaling rules for the DEG dimensions introduced here in order to comply with Froude similarity laws. Wave-tank tests are conducted in regular and irregular waves with a functional DEG system that is controlled using a realistic prediction-free strategy. Remarkable average performance in realistically scaled sea states has been recorded during experiments, with peaks of power output of up to 3.8 W, corresponding to hundreds of kilowatts at full-scale. The obtained results demonstrated the concrete possibility of designing DEG-based WEC devices that are conceived for large-scale electrical energy production.
本文介绍了一种配备新型静电式能量采集系统(即介电弹性体发电机,DEG)的波能转换器(WEC)的分析与设计。我们提出了一种建模方法,该方法依赖于非线性势流流体动力学和电超弹性理论的结合。这样的模型能够预测系统在运行条件下的响应,因此可用于设计和评估具有有效动态响应的基于DEG的波能转换器。通过一个小型原型的设计和测试对该模型进行了验证,该原型的动力学特性在水槽尺度下通过一组此处引入的DEG尺寸缩放规则来与波浪进行匹配,以符合弗劳德相似定律。使用一个功能正常的DEG系统,通过无实际预测的策略进行控制,在规则波和不规则波中进行了水槽试验。在实验过程中,在实际缩放的海况下记录到了显著的平均性能,功率输出峰值高达3.8瓦,对应全尺度时可达数百千瓦。所得结果证明了设计用于大规模电能生产的基于DEG的波能转换器装置的切实可能性。