用于储能的高速复合材料飞轮随机建模

M. Riley, Justin Pettingill
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引用次数: 0

摘要

这项工作将展示随机模型的发展和实验验证,以预测复合材料的机械和电磁响应作为组成增强材料的函数。首先,将针对多种不同支撑材料的情况建立随机微观力学模型。这些微观力学模型将在可行参数空间上与传统有限元模型和实验结果进行验证。开发的模型将用于定义复合材料飞轮的最佳几何形状,包括位移、应力、磁通、磁场密度和可制造性等约束条件。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Stochastic Modeling of a High Speed Composite Flywheel for Energy Storage
This work will demonstrate the development and experimental validation of the stochastic models to predict the composite material’s mechanical and electromagnetic response as a function of the constituent reinforcing materials. First, stochastic micromechanics models will be developed for the case of multiple disparate supporting materials. These micromechanics models will then be validated against traditional finite element models and experimental results over the feasible parameter space. The developed models will then be utilized to define the optimal geometry of the composite flywheel including constraints such as displacement, stress, flux, magnetic field density, and manufacturability.
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