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Contribution of the reflection to the attenuation properties of cancellous bone

机译:反射对松质骨衰减特性的贡献

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摘要

The article deals with the contribution of reflection effects to the attenuation properties of cancellous bone. The bone behaviour is simulated by the multiscale finite element method, a numerical homogenization approach, suitable for the modelling of heterogeneous material with a highly oscillatory microstructure. The focus is on the modelling of a novel type of the representative volume element, which apart from the solid framework filled with fluid marrow also includes an infinitesimally thin ‘transition’ layer at the contact of the phases. The mentioned layer is implemented in order to simulate the amplitude transformation of an incident wave and to take the loss of energy caused by the reflection into account. The given numerical examples consider the simulation of wave propagation through a sample while the excitation frequency is varied. The numerical values are compared with the results which are determined without considering the reflection, in order to point out the contribution of the newly introduced phenomenon.
机译:本文讨论了反射效应对松质骨衰减特性的影响。骨骼行为通过多尺度有限元方法(一种数值均化方法)进行仿真,适用于具有高振荡微结构的异质材料的建模。重点在于新型代表体积元素的建模,该模型除了充满流体骨髓的固体框架外,还包括在相接触处无限薄的“过渡”层。所提到的层是为了模拟入射波的振幅变换并考虑反射引起的能量损失而实现的。给定的数值示​​例考虑了在激发频率变化时通过样本的波传播的仿真。将数值与在不考虑反射的情况下确定的结果进行比较,以指出新出现的现象的贡献。

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