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Bearing Capacity of Slender Concrete Columns

机译:细长混凝土柱的承载力

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The European standard for the design of concrete structures using nonlinear methods contains a deficit in global reliability for cases when concrete columns fail due to a loss of stability before reaching the design resistance in the critical cross-sections. A buckling failure is a brittle failure which occurs without warning, and the probability of its formation is markedly influenced by the slenderness of the column. The calculation results presented herein are compared with the results from experimental data. The paper aims to compare the global reliability of slender concrete columns with a slenderness of 90 and higher. The columns are designed according to the methods stated in EN 1992-1-1, namely, a general nonlinear method and methods based on nominal stiffness and nominal curvature. The mentioned experiments also served, on the one hand, as a basis for the deterministic nonlinear modeling of the columns and, subsequently, for the probabilistic evaluation of the variability of the structural response. Finally, the results may be utilized as thresholds for the loading of the structural elements produced. The paper aims at presenting a probabilistic design that is less conservative than the classic partial safety factor-based design and alternative ECOV method.
机译:对于使用非线性方法进行混凝土结构设计的欧洲标准,在混凝土柱由于在关键截面处达到设计阻力之前由于稳定性损失而导致柱失效的情况下,整体可靠性存在缺陷。屈曲破坏是一种脆性破坏,在没有预警的情况下发生,并且其形成的可能性显着地受到柱子细长度的影响。将此处提供的计算结果与实验数据的结果进行比较。本文旨在比较细长度为90或更高的细长混凝土柱的整体可靠性。根据EN 1992-1-1中规定的方法(即,一般的非线性方法和基于标称刚度和标称曲率的方法)设计圆柱。所提到的实验一方面也用作确定性的柱非线性建模的基础,并随后作为对结构响应变化的概率评估的基础。最后,该结果可以用作所产生的结构元​​件的加载的阈值。本文旨在提出一种概率设计,其比经典的基于部分安全系数的设计和替代ECOV方法要保守一些。

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