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浮筏隔振装置的超单元建模方法 总被引:2,自引:1,他引:1
浮筏是一种集弹簧、阻尼器、刚体和弹性体为一体的混合动力学系统,对其建立合适的动力学模型存在困难,为此本文提出一种超单元建模方法。该方法首先在物理空间中对装置中弹性体的有限元模型进行降阶,并建立相应的超单元,然后与普通单元一样把它们直接组装到总体模型中。用该方法建立起来的动力学降价模型不仅在规模上远小于未降阶的有限元模型,而且能很好地保留原模型在中、低频段内的动态特性。数值示例表明,本文提出的超单元建模方法是一种有效的浮筏隔振装置建模方法。 相似文献
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In this paper, we describe a method to investigate the fluid-structure interaction of a floating wind turbine and to analyze the global deformations and the corresponding stresses with a detailed finite element model. To solve the fluid-structure interaction problem, a partitioned approach is chosen. The in-house C++ library comana, which was developed to solve multi-physic problems by coupling existing solvers, is extended to couple the fluid solver panMARE and the structural solver ANSYS. The significance of the interaction of structural deformations and the fluid loads is pointed out for the rotor of the wind turbine. In order to enable the use of a detailed finite element model in the fluid-structure interaction simulation, a model reduction method is applied in ANSYS. As a result, an efficient stress analysis can be performed under consideration of the fluid-structure interaction. 相似文献
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