In this paper, we propose an eXtended Virtual Element Method (X-VEM) for two-dimensional linear elastic fracture. This approach, which is an extension of the standard Virtual Element Method (VEM), facilitates mesh-independent modeling of crack discontinuities and elastic crack-tip singularities on general polygonal meshes. For elastic fracture in the X-VEM, the standard virtual element space is augmented by additional basis functions that are constructed by multiplying standard virtual basis functions by suitable enrichment fields, such as asymptotic mixed-mode crack-tip solutions. The design of the X-VEM requires an extended projector that maps functions lying in the extended virtual element space onto a set spanned by linear polynomials and the enrichment fields. An efficient scheme to compute the mixed-mode stress intensity factors using the domain form of the interaction integral is described. The formulation permits integration of weakly singular functions to be performed over the boundary edges of the element. Numerical experiments are conducted on benchmark mixed-mode linear elastic fracture problems that demonstrate the sound accuracy and optimal convergence in energy of the proposed formulation.
翻译:在本文中,我们建议对二维线性弹性断裂使用一种氧化虚拟元素法(X-VEM),这是标准的虚拟元素法(VEM)的延伸,它有助于对一般多边多边形网外的裂缝和弹性裂缝奇点进行网状独立的模型模型。对于X-VEM的弹性断裂,标准的虚拟元素空间通过其他基础功能得到增强,这些功能是通过将标准虚拟基础功能乘以适当的浓缩场(例如:如:静态混合分子裂缝溶液)来构建的。X-VEM的设计需要一个扩展的投影仪,该投影仪将扩展虚拟元素空间的功能映射在以线性多元体和浓缩场为间距的成套虚拟元素上。描述了利用互动整体的域表形式对混合模式压力强度系数进行计算的有效办法。配方允许将微弱的单函数结合到该元素的边界边缘进行,例如:模拟混合分子裂缝裂解裂变的实验是在拟议的混合线性断裂变法中进行基准混合线性断裂问题。