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Finite Particle Method-Based Collapse Simulation of Space Steel Frame Subjected to Earthquake Excitation

机译:基于有限元方法的空间钢框架地震激励倒塌模拟

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摘要

In the process of collapse failure of the space steel frame subjected to earthquake excitation, complex behaviors often are involved, including geometric nonlinearity, material nonlinearity, fracture, contact, and collisions. In view of the unique advantages of the finite particle method to analyze complex structural nonlinear problems, this paper utilized the finite particle method as the basic means of analysis and used MATLAB software for computational analysis. This paper first derived a finite particle method-based space steel frame model, conducted static analysis and dynamic response analysis under earthquake excitation, and compared findings with ANSYS analysis results to validate reliability. This paper established the fracture criterion and failure mode of a steel frame member. Theoretical derivation and numerical simulation indicate that the finite particle method is a feasible and effective way to simulate the collapse of space steel frame structures subjected to earthquake excitation. This method provides a new approach to study the collapse and anticollapse seismic design of space steel frame structures subjected to earthquake excitation.
机译:在遭受地震激励的空间钢框架坍塌破坏过程中,通常涉及复杂的行为,包括几何非线性,材料非线性,断裂,接触和碰撞。鉴于有限颗粒法在分析复杂的结构非线性问题方面的独特优势,本文将有限颗粒法用作基本分析方法,并使用MATLAB软件进行计算分析。本文首先导出了基于有限粒子法的空间钢框架模型,在地震激励下进行了静力分析和动力响应分析,并将结果与​​ANSYS分析结果进行了比较,以验证其可靠性。建立了钢框架构件的断裂准则和破坏模式。理论推导和数值模拟表明,有限元法是模拟空间钢框架结构在地震激励下倒塌的一种可行而有效的方法。该方法为研究空间钢框架结构在地震激励下的倒塌和抗倒塌地震设计提供了一种新方法。

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