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An Eigen-Based Theory For Structure-Dependent Integration Methods for Nonlinear Dynamic Analysis

delete2020-10-10
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Shuenn‐Yih Chang *
DOI:10.1142/S0219455420501308delete
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Abstract

Abstract

En 中文
An eigen-based theory for structure-dependent integration methods is constructed and it can provide the fundamental basis for the successful development of this type of integration methods. It is proved that a structure-dependent integration method can simultaneously combine unconditional stability and explicit formulation since it is proposed to accurately integrate low-frequency modes while no instability is guaranteed for high-frequency modes. In general, it is promising for solving inertial problems, where the total response is dominated by low-frequency modes. In addition, it can be explicitly and implicitly implemented for time integration although an explicit implementation is of practical significance since it can save many computational efforts due to the combination of unconditional stability and explicit formulation. A typical procedure to develop structure-dependent integration methods is constructed. In general, a coupled equation of motion for a multiple degree of freedom system can be decomposed into a set of uncoupled modal equations of motion by means of an eigen-decomposition technique. Next, an eigen-dependent integration method is developed to solve each modal equation of motion. Consequently, all the eigen-dependent integration methods are combined to form a structure-dependent integration method by employing a reverse procedure of the eigen-decomposition technique.
Keywords:
An eigen-based theory
unconditional stability
accuracy
eigen-dependent integration method
structure-dependent integration method
nonlinear systems

Journal

International Journal of Structural Stability and Dynamics cover
International Journal of Structural Stability and Dynamics
IF:
3.4
Papers:
3.1K
Citations:
6.3K

Organization

N
National Taipei University of Technology
Scholars:
7.1K
Papers: 7.3K
Citations: 6.8K