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基于SBFEM的心墙坝基座跨尺度精细应力分析

邹德高,陈楷,张仁怡,余翔   

  • 出版日期:2019-09-28 发布日期:2019-09-28

Cross-scale refined stress analysis on base-support of corewall concrete dam based on Scaled Boundary Finite Element Method

ZOU Degao,CHEN Kai,ZHANG Renyi,YU Xiang   

  • Online:2019-09-28 Published:2019-09-28

摘要: 基座是连接混凝土沥青心墙坝心墙和防渗墙的关键部件,其受力特性对结构安全评价至关重要。通过四分树快速离散技术建立5种网格密度的跨尺度分析模型,采用非线性多边形比例边界有限元与传统FEM耦合计算方法,研究了基座结构在施工期的应力性态以及改善对策。结果表明:基座及周围土体网格尺寸对二者相互作用存在较大影响;随着网格的细化,基座应力极值将增大,且压应力极值最大相差约57.4%,拉应力极值相差约59.3%,但最终应力分布规律和数值均趋于收敛;在基座周围局部设置高塑性黏土区可有效改善基座应力状态。建议沥青心墙坝分析中基座网格尺寸宜为0.05~0.10 m,基座周围局部土体网格尺寸宜为0.1~0.2 m,黏土区宽度可取1.0~1.5倍的基座宽度。基于比例边界有限元的跨尺度分析方法可实现高效精细化建模和计算,能更合理地评价高坝防渗系统安全性。

关键词: 跨尺度精细应力分析, 心墙基座, 四分树网格, 比例边界有限元, 沥青心墙坝

Abstract: The concrete base-support is a key component of concrete asphalt core dam connecting the core wall and the cut-off wall. Its mechanical characteristics are vital to the structural safety evaluation. In this paper, five cross-scale analysis models with different grid density are established by using rapid quadtree discretization technology. The stress behavior of the base-support during construction period and the improvement measures are investigated by using the coupled nonlinear polygon scaled boundary finite element method and traditional FEM. The results demonstrate that the grid size of the base-support and surrounding soil has a great influence on the interaction between soil and structure. The more refined the grid is, the higher the stress extreme values are, and the maximum difference of the compressive stress extreme value is about 57.4%, while the difference of the tensile stress extreme value is about 59.3%. However, the ultimate stress distribution and the numerical value tend to converge eventually. Local clay area around the base-support can effectively improve the stress state. In the refined analysis of asphalt core dam, it is suggested that the grid size of base-support should be 0.05~0.10m. The dimension of surrounding soil should be 0.1~0.2m, and the width of clay zone could be 1.0~1.5 times of the base width. The cross-scale analysis method based on SBFEM can achieve efficient, refined modeling and analysis, and the safety of high dam seepage control system can be evaluated more reasonably.

Key words: cross-scale refined stress analysis, base-support of core wall;quadtree mesh;scaled boundary finite element method;asphalt core dam