Simulation of Deformations of Pre-Stressed Steel Trusses in Emergency Situations

I. Serpik, N. Tarasova
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Abstract

Purpose of research is to make methodology and algorithm for finite element modeling in a single computational scheme of deformation of flat steel trusses, previously stressed using high-strength ropes, in accordance with the chronology of impacts on the object in the form of prestresses, normative loads and emergency destruction of one of the bearing elements.Methods. The solution of the problem is carried out in geometrically nonlinear staging using numerical integration based on Newmark approach with the construction of equilibrium equations of the finite element model of the structure in a deformed state at each integration step. Structural nonlinearity related to structural restructuring and consideration of ropes operation for tension only is described. The application of gravity forces of the carrier system, sequential introduction of tightening and their prestress, the application of payload and emergency impact in the form of instantaneous local destruction are traced. Before failure occurs, static loading condition is simulated using dynamic relaxation method. Methodology of accounting within numerical integration of emergency impact is formulated by application of dummy forces, values of which are calculated in excluded structural element before its destruction.Results. Performance of presented computational procedure is illustrated by the example of a flat steel truss calculation with a span (54 m), including two ropes. Object behavior is considered considering the break of one of the ropes subjected to preliminary stress. It was revealed that the investigated emergency does not lead to the destruction of the second rope and the occurrence of plastic deformations in the truss rods.Conclusion: Completed developments can be used to ensure the survivability of pre-stressed steel trusses under beyond design basis effects, leading to the destruction of individual structural elements.
紧急情况下预应力钢桁架的变形模拟
研究的目的是根据预应力、规范荷载和其中一个承载单元的紧急破坏对目标的影响顺序,在单一计算方案中对先前使用高强度绳索受力的扁钢桁架的变形进行有限元建模的方法和算法。采用基于Newmark方法的数值积分,在几何非线性阶段进行求解,在每一步积分时建立结构在变形状态下的有限元模型平衡方程。结构非线性相关的结构重组和考虑绳操作的张力只被描述。跟踪了载体系统重力的应用,连续引入拧紧及其预应力,有效载荷的应用以及以瞬时局部破坏形式出现的紧急冲击。在破坏发生前,采用动态松弛法模拟静载荷状态。通过应用虚拟力,在排除的结构单元破坏之前计算虚拟力的值,建立了紧急冲击数值积分的计算方法。以一个跨度为54 m、含两根绳索的扁钢桁架为例,说明了所提计算方法的性能。考虑到其中一根绳索在初始应力作用下断裂,考虑了物体的行为。结果表明,所调查的紧急情况没有导致第二根绳索的破坏和桁架杆的塑性变形。结论:完成开发可以保证预应力钢桁架在超出设计基础作用下的生存能力,从而导致单个结构单元的破坏。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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