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首页> 外文期刊>Engineering analysis with boundary elements >Explicit edge-based smoothed numerical manifold method for transient dynamic modeling of two-dimensional stationary cracks
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Explicit edge-based smoothed numerical manifold method for transient dynamic modeling of two-dimensional stationary cracks

机译:基于明确的边缘平滑的数字歧管方法,用于二维固定裂缝的瞬态动态建模

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摘要

Modeling and prediction of dynamic behaviors of cracked bodies are vital to the safety evaluation of structures. The numerical manifold method (NMM) has achieved considerable success in crack analysis as it provides a powerful representation of complex discontinuities. Strain smoothing has been incorporated into enriched methods such as NMM to improve their accuracy, efficiency, and tolerance to mesh distortion. However, conventional strain smoothing cannot reproduce the large spatial variance in the strain surrounding crack tips. Consequently, the accuracy is reduced when it is applied to crack-tip enrichment bases. High-fidelity representation of crack-tip fields can be achieved by crack-tip enrichment. Therefore, it is desirable to combine compatible strain for the enriched areas with edge-based smoothed strain for the remaining areas. When explicit time integration is employed, it is beneficial to use a lumped mass matrix because it provides a larger critical time step and a straightforward solution of the linear algebraic equation. A local-approximation-based mass lumping strategy is used to obtain a block-diagonal mass matrix with small blocks. Finally, the proposed methodology is applied to various static and dynamic crack analyses, and highly accurate and stable results are obtained.
机译:建模和打击机构的动态行为的预测是结构的安全性评价是至关重要的。数值流形方法(NMM)已取得相当大的成功在裂纹分析,因为它提供复杂的不连续性的一个功能强大的表示。应变平滑已纳入富集方法诸如NMM,以提高其精确度,效率,和耐受性网格畸变。然而,常规的应变平滑不能再现在应变周围裂纹尖端的大的空间方差。因此,当它被施加到裂纹尖端富集碱基的精度降低。裂纹尖端场的高保真表示可以由裂纹尖端富集来实现。因此,期望的是兼容应变与用于其余区域基于边缘的平滑应变富集区域结合起来。当采用显式时间积分,这是有益的是使用集中质量矩阵,因为它提供更大的临界时间步长和线性代数方程的一个简单的解决方案。一种基于局部近似质量结块策略用于获得具有小的块的块对角质量矩阵。最后,所提出的方法适用于各种静态和动态分析裂缝,并获得高度精确和稳定的结果。

著录项

  • 来源
    《Engineering analysis with boundary elements》 |2021年第7期|310-325|共16页
  • 作者单位

    College of Civil Engineering and Mechanics Lanzhou University Lanzhou Gansu 730000 China Key Laboratory of Mechanics on Disaster and Environment in Western China (Lanzhou University) Ministry of Education Lanzhou Gansu 730000 China;

    College of Civil Engineering and Mechanics Lanzhou University Lanzhou Gansu 730000 China Key Laboratory of Mechanics on Disaster and Environment in Western China (Lanzhou University) Ministry of Education Lanzhou Gansu 730000 China;

    College of Civil Engineering and Architecture Henan University of Technology Zhengzhou Henan 450001 China;

    Wuhan Municipal Construction Group Co. Lt± Wuhan Hubei 430023 China;

    State Key Laboratory of Hydraulic Engineering Simulation and Safety School of Civil Engineering Tianjin University Tianjin 300072 China;

    Key Laboratory of Urban Security and Disaster Engineering Ministry of Education Beijing University of Technology Beijing 100124 China;

  • 收录信息 美国《科学引文索引》(SCI);美国《工程索引》(EI);
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    Numerical manifold method (NMM); Smoothed numerical manifold method (SNMM); Smoothed extended finite element method(SXFEM); Smoothed finite element method (SFEM); Dynamic stress intensity factor; Lump mass;

    机译:数值歧管方法(NMM);平滑的数字歧管方法(SNMM);平滑的延长有限元方法(SXFEM);平滑有限元法(SFEM);动态应力强度因子;块状;

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