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Rocking block simulation based on numerical dissipation

delete2024-07-26
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A
Antonio Maria D’Altri *
G
Georgios Vlachakis
S
Stefano de Miranda
P
Paulo B. Lourénço
DOI:10.1007/s11071-024-09974-1delete
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摘要

摘要

En 中文
In this paper, a computational approach based on numerical dissipation is proposed to simulate rocking blocks. A rocking block is idealized as a solid body interacting with its foundation through a contact-based formulation. An implicit time integration scheme with numerical dissipation, set to optimally treat dissipation in contact problems, is employed. The numerical dissipation is ruled by the time step and the rocking dissipative phenomenon at impacts is accurately predicted without any damping model. A broad numerical campaign is conducted to define a regression law in analytic form for the setting of the time step, depending on the block size and aspect ratio, the contact stiffness, as well as the coefficient of restitution selected. The so-obtained regression law appears accurate and an a posteriori validation with cases not in the training dataset confirms the effectiveness of the approach. Finally, the comparison with available experimental tests highlights the approach efficacy for free rocking and harmonic loading cases (in a deterministic sense), and for earthquake-like loading cases (in a statistical sense). It is found that rocking blocks with sizes of interest for structural engineering (e.g., cultural heritage structures) can be simulated with time steps within 10-3 divided by 10-1 s, so allowing very fast computations.
Keyword:
Rocking
Dynamics
Masonry
Out-of-plane collapse
Finite element method
Cultural heritage structures
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期刊

Nonlinear Dynamics 封面图
Nonlinear Dynamics
IF:
6
论文数:
1.4W
被引数:
4.1W

机构

U
universidade do minho
学者数:
1.1W
论文数: 1.1W
被引数: 10
U
University of Bologna
学者数:
4.5W
论文数: 3.8W
被引数: 4.1W