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An explicit time integration scheme of numerical manifold method

机译:数值流形方法的显式时间积分方案

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摘要

The traditional numerical manifold method (NMM) has the advantage of simulating a continuum and a discontinuum in a unified framework based on a dual cover system. However, since an implicit time integration algorithm is used, the computational efficiency of the original NMM is very low, especially when more contacts are involved. The present study proposes an explicit version of the NMM. Since a lumped mass matrix is used for the manifold element, the accelerations by the corresponding physical covers can be solved explicitly without forming a global stiffness matrix. The open-close iteration is still applied to ensure computational accuracy. The developed method is first validated by two examples, and a highly fractured rock slope is subsequently simulated. Results show that the computational efficiency of the proposed explicit NMM has been significantly improved without losing the accuracy. The explicit NMM is more suitable for large-scale rock mass stability analysis and it deserves to be further developed for engineering computations in rock engineering.
机译:传统的数值流形方法(NMM)的优点是可以在基于双重覆盖系统的统一框架中模拟连续体和不连续体。但是,由于使用了隐式时间积分算法,因此原始NMM的计算效率非常低,尤其是在涉及更多联系人的情况下。本研究提出了NMM的显式版本。由于集总质量矩阵用于歧管元件,因此可以在不形成整体刚度矩阵的情况下显式求解相应物理盖的加速度。开-关迭代仍被应用以确保计算精度。首先通过两个实例验证了所开发的方法,然后模拟了高裂隙岩质边坡。结果表明,所提出的显式NMM的计算效率得到了显着提高,而不会损失准确性。显式NMM更适合于大规模岩体稳定性分析,值得为岩石工程中的工程计算进行进一步开发。

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