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Influence of design parameters on the structural and fatigue behaviors of a floating point wave energy converter

机译:设计参数对浮点波能量转换器结构和疲劳行为的影响

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The demand for electricity production has been consistently raising since the last century. In the future, the tendency is to grow even further. Concerning this fact, renewable energy and specifically, wave energy should be considered as an alternative for energy production. However, devices suitable to harness this renewable energy source and convert it into electricity are not yet commercially competitive. This paper is focused on the structural analysis of a wave energy converter (WEC) through the numerical study of several design parameters. Tridimensional computer aided design (3D CAD) numerical models were built and several Finite Element Analyses (FEA) were performed using a commercial finite element code. The main components of the WEC were simulated assuming different materials. The Von Mises stress gradients and displacement fields determined by FEA demonstrated that, regardless of the WEC component, materials with low Young’s modulus seems to be unsuitable for this application. The same is valid for the material yield strength since materials with higher yield strength lead to a better structural behavior of the WEC components. The developed 3D CAD numerical model showed to be suitable to analyze different combinations of structural conditions.
机译:自上个世纪以来,对电力生产的需求一直持续增长。将来,趋势是进一步发展。关于这一事实,可再生能源,特别是波浪能,应被视为替代能源生产。但是,适合利用这种可再生能源并将其转化为电能的设备在商业上还没有竞争力。通过对几个设计参数的数值研究,本文着重于波能转换器(WEC)的结构分析。建立了三维计算机辅助设计(3D CAD)数值模型,并使用商业有限元代码执行了几个有限元分析(FEA)。假设使用不同的材料,则模拟了WEC的主要组件。由FEA确定的Von Mises应力梯度和位移场表明,不管WEC组件如何,低杨氏模量的材料似乎都不适合此应用。这对于材料的屈服强度也是有效的,因为具有较高屈服强度的材料导致WEC组件具有更好的结构性能。所开发的3D CAD数值模型显示出适合分析结构条件的不同组合。

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