充液断裂相场建模中的裂缝开口计算:基于应变的稳健高效方法

IF 5.3 1区 工程技术 Q1 COMPUTER SCIENCE, INTERDISCIPLINARY APPLICATIONS
Fan Fei , Jinhyun Choo
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引用次数: 0

摘要

相场法能在不使用算法的情况下表示复杂的断裂几何形状,因此在充满流体的断裂数值建模中很受欢迎。然而,无算法表示断裂几何形状给计算相场断裂的裂缝开口(孔径)带来了巨大挑战,而裂缝开口决定了断裂渗透率,进而影响整体水力学行为。虽然已经设计了几种方法来计算相场断裂的裂缝开口,但这些方法都需要复杂的算法来对相场值进行后处理,或者需要一个对元素尺寸和排列敏感的附加参数。在此,我们开发了一种计算充满流体的相场断裂裂缝开口的新方法,无需额外的算法或参数即可获得裂缝开口。我们将基于位移-跳跃的断裂运动学转换为基于连续应变的版本,将其插入断裂的力平衡方程,并应用相场近似。通过这一过程,我们得到了一个简单的裂缝张开方程,该方程可以用单个材料点的数量进行计算。我们用基于离散断裂表示法获得的分析和数值解验证了所提出的方法,证明了该方法无论元素大小或排列方式如何,都能计算裂缝开度。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Crack opening calculation in phase-field modeling of fluid-filled fracture: A robust and efficient strain-based method
The phase-field method has become popular for the numerical modeling of fluid-filled fractures, thanks to its ability to represent complex fracture geometry without algorithms. However, the algorithm-free representation of fracture geometry poses a significant challenge in calculating the crack opening (aperture) of phase-field fracture, which governs the fracture permeability and hence the overall hydromechanical behavior. Although several approaches have been devised to compute the crack opening of phase-field fracture, they require a sophisticated algorithm for post-processing the phase-field values or an additional parameter sensitive to the element size and alignment. Here, we develop a novel method for calculating the crack opening of fluid-filled phase-field fracture, which enables one to obtain the crack opening without additional algorithms or parameters. We transform the displacement-jump-based kinematics of a fracture into a continuous strain-based version, insert it into a force balance equation on the fracture, and apply the phase-field approximation. Through this procedure, we obtain a simple equation for the crack opening which can be calculated with quantities at individual material points. We verify the proposed method with analytical and numerical solutions obtained based on discrete representations of fractures, demonstrating its capability to calculate the crack opening regardless of the element size or alignment.
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来源期刊
Computers and Geotechnics
Computers and Geotechnics 地学-地球科学综合
CiteScore
9.10
自引率
15.10%
发文量
438
审稿时长
45 days
期刊介绍: The use of computers is firmly established in geotechnical engineering and continues to grow rapidly in both engineering practice and academe. The development of advanced numerical techniques and constitutive modeling, in conjunction with rapid developments in computer hardware, enables problems to be tackled that were unthinkable even a few years ago. Computers and Geotechnics provides an up-to-date reference for engineers and researchers engaged in computer aided analysis and research in geotechnical engineering. The journal is intended for an expeditious dissemination of advanced computer applications across a broad range of geotechnical topics. Contributions on advances in numerical algorithms, computer implementation of new constitutive models and probabilistic methods are especially encouraged.
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