Dazel Olivier, Brouard Bruno, Depollier Claude, Griffiths Stéphane
Laboratoire d'Acoustique de l'Université du Maine-UMR CNRS 6613, Avenue Olivier Messiaen, F-72 085 Le Mans Cedex France.
J Acoust Soc Am. 2007 Jun;121(6):3509-16. doi: 10.1121/1.2734482.
This paper proposes an alternative displacement formulation of Biot's linear model for poroelastic materials. Its advantage is a simplification of the formalism without making any additional assumptions. The main difference between the method proposed in this paper and the original one is the choice of the generalized coordinates. In the present approach, the generalized coordinates are chosen in order to simplify the expression of the strain energy, which is expressed as the sum of two decoupled terms. Hence, new equations of motion are obtained whose elastic forces are decoupled. The simplification of the formalism is extended to Biot and Willis thought experiments, and simpler expressions of the parameters of the three Biot waves are also provided. A rigorous derivation of equivalent and limp models is then proposed. It is finally shown that, for the particular case of sound-absorbing materials, additional simplifications of the formalism can be obtained.
本文提出了一种用于多孔弹性材料的比奥线性模型的替代位移公式。其优点是在不做任何额外假设的情况下简化了形式体系。本文提出的方法与原始方法的主要区别在于广义坐标的选择。在当前方法中,选择广义坐标是为了简化应变能的表达式,应变能表示为两个解耦项的和。因此,得到了弹性力解耦的新运动方程。形式体系的简化扩展到了比奥和威利斯思想实验,并且还给出了三个比奥波参数的更简单表达式。然后提出了等效模型和松弛模型的严格推导。最后表明,对于吸声材料的特殊情况,可以进一步简化形式体系。