Nguyen Vu-Hieu, Naili Salah
a Laboratoire Modélisation et Simulation Multi Echelle , Université Paris-Est , MSME UMR 8208 CNRS, 61 avenue du Général de Gaulle, 94010 , Créteil Cedex , France.
Comput Methods Biomech Biomed Engin. 2013;16(9):963-74. doi: 10.1080/10255842.2011.645811. Epub 2012 Jan 30.
This work deals with the ultrasonic wave propagation in the cortical layer of long bones which is known as being a functionally graded anisotropic material coupled with fluids. The viscous effects are taken into account. The geometrical configuration mimics the one of axial transmission technique used for evaluating the bone quality. We present a numerical procedure adapted for this purpose which is based on the spectral finite element method (FEM). By using a combined Laplace-Fourier transform, the vibroacoustic problem may be transformed into the frequency-wavenumber domain in which, as radiation conditions may be exactly introduced in the infinite fluid halfspaces, only the heterogeneous solid layer needs to be analysed using FEM. Several numerical tests are presented showing very good performance of the proposed approach. We present some results to study the influence of the frequency on the first arriving signal velocity in (visco)elastic bone plate.
这项工作研究超声波在长骨皮质层中的传播,长骨皮质层是一种与流体耦合的功能梯度各向异性材料。考虑了粘性效应。几何结构模拟了用于评估骨质量的轴向传输技术的结构。我们提出了一种基于谱有限元法(FEM)的适用于此目的的数值方法。通过使用拉普拉斯 - 傅里叶变换组合,振动声学问题可以转换到频率 - 波数域,在该域中,由于可以在无限流体半空间中精确引入辐射条件,因此只需要使用有限元法分析非均匀固体层。给出了几个数值测试,显示了所提出方法的良好性能。我们给出了一些结果来研究频率对(粘)弹性骨板中首个到达信号速度的影响。