首页> 外文期刊>Computers & Structures >Stability of cracked concrete hydraulic structures by nonlinear quasi-static explicit finite element and 3D limit equilibrium methods
【24h】

Stability of cracked concrete hydraulic structures by nonlinear quasi-static explicit finite element and 3D limit equilibrium methods

机译:非线性准静态显式有限元和3D极限平衡法求解开裂混凝土水工结构的稳定性

获取原文
获取原文并翻译 | 示例
           

摘要

Several hydraulic concrete structures suffer from severe tridimensional (3D) discrete cracking, producing an assembly of concrete blocks resting one on top of the other. It is important to consider the 3D particularities of the cracked surfaces in the nonlinear sliding safety evaluation of these structures. A methodology to assess a sliding safety factor (SSF) and a sliding direction D for any structure with an a priori known 3D discrete crack surface geometry using the quasi-static explicit nonlinear finite elements method (QSE-FEM) is presented herein in the context of the strength reduction approach. QSE-FEM is known for its efficiency in solving highly nonlinear problems compared to implicit FEM. However, in QSE-FEM, the determination of the incipient failure motion is challenging. In addition to the ratio of kinetic to internal strain energy, a new criterion is proposed to identify sliding initiation based on absolute displacements of a control point. As part of the proposed methodology, a complementary simple tool, 3D-LEM, has been developed as a 3D extension of the classical limit equilibrium method (LEM). It is useful in preliminary sliding analyses to estimate the critical friction coefficient inducing sliding and the corresponding direction D. Three benchmark examples, of increasing complexities, are presented to verify the performance of the proposed methodology. Finally, a case study is adapted from an existing cracked hydraulic structure to evaluate "its sliding stability using the QSE-FEM and 3D-LEM approaches. In the three benchmark examples, the same results are found for SSF and D for the two approaches. In the hydraulic structure example, SSFLEM, computed with 3D-LEM, is a lower bound of SSFFEM from QSEFEM, and a strong correlation is found between the sliding directions computed with the two approaches. (C) 2017 Published by Elsevier Ltd.
机译:几个水工混凝土结构遭受严重的三维(3D)离散裂纹,产生了一个混凝土砌块,一个砌在另一个之上。在这些结构的非线性滑动安全性评估中,考虑裂纹表面的3D特殊性很重要。本文中使用准静态显式非线性有限元方法(QSE-FEM)评估了具有先验已知3D离散裂纹表面几何形状的任何结构的滑动安全系数(SSF)和滑动方向D的方法强度降低方法。与隐式FEM相比,QSE-FEM以其解决高度非线性问题的效率而著称。但是,在QSE-FEM中,确定初始破坏运动具有挑战性。除了动能与内部应变能之比外,还提出了一种新的准则,用于基于控制点的绝对位移来识别滑动起始。作为提出的方法的一部分,已经开发了一种补充的简单工具3D-LEM,作为经典极限平衡方法(LEM)的3D扩展。在初步的滑动分析中,估计引起滑动的临界摩擦系数和相应的方向D很有用。提出了三个基准示例,其复杂性不断提高,以验证所提出方法的性能。最后,从一个现有的破裂水工结构改编了一个案例研究,以使用QSE-FEM和3D-LEM方法评估其滑动稳定性。在三个基准示例中,两种方法的SSF和D结果相同。在水力结构示例中,使用3D-LEM计算的SSFLEM是来自QSEFEM的SSFFEM的下限,并且发现通过两种方法计算出的滑动方向之间具有很强的相关性。(C)2017年由Elsevier Ltd发布。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号