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Complex failure analysis of a cable-roofed stadium structure based on diagnostics and tests

机译:基于诊断和测试的电缆屋顶体育场结构复杂故障分析

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摘要

Results of comprehensive failure-related diagnostics, non-destructive and destructive tests, geodetic surveying, numerical modelling, time-dependent nonlinear static analysis and reliability assessment of a stadium structure with a suspension cable roof in the form of hyperbolic paraboloid cable net after fifty years of operation are presented in the paper. The main goal is the determination of the current degree of damage and resistance of the structure. Results of the metallographic analysis confirmed that the upper layers of the steel wires of carrying and stabilizing cables which were in contact with condensed moisture in the areas of the roof located above the ice surface are damaged by atmospheric corrosion. Current resistances of the diminished cable members obtained by tension tests and their creep constitutive equations are characterized. The geodetic surveying of the selected nodes of the cable net confirmed the significant change of the initial geometry of the cable structure subjected to corrosion and creep over a period of fifty years. Results obtained by time-dependent nonlinear finite element analysis considering rheological phenomena (shrinkage, creep and degradation of mechanical properties) affecting concrete arches and reliability assessment of the cable net with current properties showed that the reliability conditions are not fulfilled, preventing the cables from safely performing its function and consequently requiring the replacement of the cable net with a new cable structure exhibiting the required properties.
机译:综合失败相关诊断,无损和破坏性测试,大地测量,数值模型,时间依赖性非线性静态分析和50年后双曲抛物面电缆网的悬架电缆屋顶的体育场结构的可靠性评估操作中的操作。主要目标是确定当前的损伤程度和结构的阻力。金相分析的结果证实,在位于冰表面上方的屋顶区域中的承载和稳定电缆的钢丝的上层通过大气腐蚀损坏。通过张力试验获得的减少电缆构件的电流电阻及其蠕变构成方程。电缆网的所选节点的大地测量确认了在五十年内经受腐蚀和蠕变的电缆结构初始几何形状的显着变化。考虑时间依赖性非线性有限元分析所获得的结果,考虑流变现象(机械性能的收缩,蠕变和降解)影响混凝土拱门的电缆网和电缆网的可靠性评估,具有电流性质的可靠性条件,防止电缆安全地防止电缆执行其功能并因此要求使用呈现所需特性的新电缆结构更换电缆网。

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