一种基于质量比例阻尼的三维黏弹性边界单元

A THREE-DIMENSIONAL VISCOUS-SPRING BOUNDARY ELEMENT USING MASS-PROPORTIONAL DAMPING

  • 摘要: 本文利用质量比例阻尼矩阵等效集中阻尼器元件,提出了一种新的三维黏弹性边界单元表示方式,利用单元矩阵等效的原理,推导了所提出单元的阻尼系数。和传统阻尼与刚度成正比的表示形式相比,本文所提出的黏弹性边界单元阻尼矩阵为对角矩阵,此时传统中心差分法仍为显式计算格式,同时阻尼矩阵与单元厚度无关,实际应用更加灵活。局部子系统谱半径方法分析表明,相比传统表示方法,本文所提出的三维黏弹性边界单元具备更为宽松的数值稳定性条件。以三维Lamb问题和拱坝-库水-地基系统内源激励问题为例,证明了所提出三维黏弹性边界单元的计算精度。

     

    Abstract: This study presents a three-dimensional viscous-spring boundary element based on the mass-proportional damping. The damping coefficients are derived by using the principle of element matrix equivalence. Compared to the traditional viscous-spring boundary element using the stiffness-proportional damping, the proposed element maintains the explicit format of the conventional central difference method due to the diagonal damping matrix. Numerical stability analysis indicates that the explicit numerical stability of the viscous-spring elements proposed is slightly superior to that using the stiffness-proportional damping. Taking the three-dimensional the Lamb problem and the endogenous excitation problem of an arch dam-reservoir-foundation system as examples, the calculation accuracy of the three-dimensional viscoelastic boundary element proposed is proved.

     

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