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FULLY COUPLED FLUID-STRUCTURE INTERACTION SIMULATIONS OF VOCAL FOLD VIBRATION

机译:声褶振动的全耦合流固耦合模拟

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摘要

The human vocal folds are modeled and simulated using a fully coupled fluid-structure interaction method. This numerical approach is efficient in simulating fluid and deformable structure interactions. The two domains are fully coupled using an interpolation scheme without expensive mesh updating or re-meshing. The method has been validated through rigorous convergence and accuracy tests. The response of the fluid affects the elastic structure deformation and vice versa. The goal of this study is to utilize this numerical tool to examine the entire fluid-structure system and predict the motion and vocal folds by providing constant inlet and outlet pressure. The input parameters and material properties, i.e. elastic and density of the vocal folds used in the model are physiological. In our numerical results, the glottal jet can be clearly identified; the corresponding pressure field distribution and velocity field are presented.
机译:使用完全耦合的流固耦合方法对人的声带进行建模和仿真。这种数值方法可以有效地模拟流体和可变形结构的相互作用。使用插值方案将两个域完全耦合,而无需进行昂贵的网格更新或重新网格化。该方法已通过严格的收敛性和准确性测试验证。流体的响应影响弹性结构的变形,反之亦然。这项研究的目的是利用这种数值工具来检查整个流体结构系统,并通过提供恒定的入口和出口压力来预测运动和声带。输入参数和材料属性,即模型中使用的声带的弹性和密度是生理性的。在我们的数值结果中,可以清楚地识别声门喷射。给出了相应的压力场分布和速度场。

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