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首页> 外文期刊>International journal for numerical methods in biomedical engineering >Simulation of ultrasonic wave propagation in anisotropic poroelastic bone plate using hybrid spectral/finite element method
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Simulation of ultrasonic wave propagation in anisotropic poroelastic bone plate using hybrid spectral/finite element method

机译:混合谱/有限元法模拟各向异性多孔弹性骨板中超声波的传播

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摘要

This paper deals with the modeling of guided waves propagation in in vivo cortical long bone, which is known to be anisotropic medium with functionally graded porosity. The bone is modeled as an anisotropic poroelastic material by using Biot's theory formulated in high frequency domain. A hybrid spectral/finite element formulation has been developed to find the time-domain solution of ultrasonic waves propagating in a poroelastic plate immersed in two fluid halfspaces. The numerical technique is based on a combined Laplace-Fourier transform, which allows to obtain a reduced dimension problem in the frequency-wavenumber domain. In the spectral domain, as radiation conditions representing infinite fluid halfspaces may be exactly introduced, only the heterogeneous solid layer needs to be analyzed by using finite element method. Several numerical tests are presented showing very good performance of the proposed procedure. A preliminary study on the first arrived signal velocities computed by using equivalent elastic and poroelastic models will be presented.
机译:本文研究了在体内皮层长骨中传播的导波的建模,已知该长骨是具有功能梯度孔隙度的各向异性介质。通过使用在高频域中制定的比奥理论,将骨骼建模为各向异性的多孔弹性材料。已经开发出一种混合频谱/有限元公式,以找到在浸没在两个流体半空间中的多孔弹性板中传播的超声波的时域解决方案。数值技术基于组合的Laplace-Fourier变换,该变换允许在频率-波数域中获得降维问题。在光谱域中,由于可以精确地引入表示无限流体半空间的辐射条件,因此仅需要使用有限元方法分析非均质固体层。提出了几个数值测试,显示了所建议程序的良好性能。将介绍使用等效弹性和多孔弹性模型计算的初到信号速度的初步研究。

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