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HYDRO-ELASTIC FINITE ELEMENT MODEL OF A VOCAL FOLD REPLICA

机译:声带复制品的水力弹性有限元模型

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Experimental vocal fold replicas are currently used in speech production studies in order to validate simplified models on controllable devices. In addition to in-situ mechanical characterization, it is important to be able to understand their behavior when changing assembly properties or using parameters control to tune the folds, by developing a model able to predict their static and dynamic motions. This also enables to describe more complex vibration behaviors which could be harder to observe experimentally. This paper first presents a hydro-elastic finite element model of a single vocal fold. Numerical results are discussed, along with a parametric analysis. Then this model is extended to take into account the effect of the water pressure on the inflation of the folds and on the resonance frequencies. A hyper-elastic calculation is first used to simulate the latex inflation. An updated Lagrangian approach processes it as a pre-stress term in a modal analysis calculation for the small amplitude vibrations of the hydro-elastic structure, which allows to model the water pressure influence on the mechanical resonances of the simulated replica.
机译:实验声音折叠副本目前用于语音生产研究,以便在可控设备上验证简化模型。除了原始机械表征之外,重要的是通过开发能够预测其静态和动态运动的模型来调整折叠来调谐折叠时,能够理解其行为。这也能够描述更复杂的振动行为,这可能更难通过实验观察。本文首先介绍了单声道折叠的水力弹性有限元模型。讨论了数值结果,以及参数分析。然后,该模型扩展到考虑水压对折叠膨胀和谐振频率的影响。首先使用超弹性计算来模拟乳胶通胀。更新的拉格朗日方法在水力弹性结构的小幅度振动的模态分析计算中将其作为预应力术语处理,这允许对模拟模拟复制品的机械谐振进行模拟水压影响。

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