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Employing a fiber-based finite-length plastic hinge model for representing the cyclic and seismic behaviour of hollow steel columns

机译:采用基于纤维的有限长度塑料铰链模型,用于代表中空钢柱的循环和地震行为

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摘要

Numerical simulations are prevalently used to evaluate the seismic behaviour of structures. The accuracy of the simulation results depends directly on the accuracy of the modelling techniques employed to simulate the behaviour of individual structural members. An empirical modelling technique is employed in this paper to simulate the behaviour of column members under cyclic and seismic loading. Despite the common modelling techniques, this technique is capable of simulating two important aspects of the cyclic and seismic behaviour of columns simultaneously. The proposed fiber-based modelling technique captures explicitly the interaction between the bending moment and the axial force in columns, and the cyclic deterioration of the hysteretic behaviour of these members is implicitly taken into account. The fiber-based model is calibrated based on the cyclic behaviour of square hollow steel sections. The behaviour of several column archetypes is investigated under a dual cyclic loading protocol to develop a benchmark database before the calibration procedure. The dual loading protocol used in this study consists of both axial and lateral loading cycles with varying amplitudes. After the calibration procedure, a regression analysis is conducted to derive an equation for predicting a varying calibrated modelling parameter. Finally, several nonlinear time-history analyses are conducted on a 6-story steel special moment frame in order to investigate how the results of numerical simulations can be affected by employing the intended modelling technique for columns instead of other common modelling techniques.
机译:数值模拟普遍用来评估结构的地震行为。模拟结果的准确性直接取决于所用模拟技术模拟各个结构构件的行为的准确性。本文采用了经验建模技术,以模拟循环和地震载荷下柱成员的行为。尽管具有常见的建模技术,但这种技术能够同时模拟柱的循环和地震行为的两个重要方面。所提出的基于纤维的建模技术明确地捕获弯矩和柱力之间的相互作用,并且隐式地考虑了这些构件的滞后行为的循环劣化。基于方空钢部分的循环行为校准了基于纤维的模型。在双循环加载协议下研究了几个列原型的行为,以在校准过程之前开发基准数据库。本研究中使用的双加载协议包括具有不同振幅的轴向和横向装载循环。在校准过程之后,进行回归分析以导出用于预测变化校准建模参数的等式。最后,在6层钢的特殊力矩框架上进行了几个非线性时间历史分析,以调查如何通过采用针对列的预期建模技术来影响数值模拟的结果而不是其他常见的建模技术的影响。

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