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HYSTERESIS MODEL FOR RC STRUCTURAL ELEMENT ACCOUNTING BI-DIRECTIONAL LATERAL LOAD INTERACTION

机译:RC结构元素核算双向横向载荷交互的滞后模型

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Experimental investigations on cyclic behaviour of reinforced concrete (RC) structures have demonstrated that, bidirectional flexural deformation is much more, compared to unidirectional responses separately. Biaxial lateral load interaction, therefore, has a significant role on the dynamic responses of structure. The present paper projected a new formulation of the biaxial force-deformation model, accounting strength and stiffness degradation in a rather simplistic manner. Also the modelling scheme dose not requires much computational rigour. The present effort is based on yield surface approach of biaxial modelling scheme. The validity of the proposed model is appraised through available biaxial test of RC column. Compared to other existing models, present model requires simple input parameters and the prediction of hysteretic responses are quite faithful. In the RC containment structures, which are the prime concern to the safety of nuclear power plant, this model may pertain to evaluate the hysteretic responses with fair accuracy during seismic loading.
机译:对钢筋混凝土(RC)结构的循环行为的实验研究表明,与单独的单向反应相比,双向弯曲变形远远大得多。因此,双轴横向载荷相互作用对结构的动态响应具有重要作用。本文以相当简单的方式投影了彼得力变形模型的新配方,核算强度和刚度降解。此外,建模方案剂量不需要大量计算严格。本努力是基于双轴建模方案的产量表面方法。通过RC色谱柱的可用双轴试验评估了所提出的模型的有效性。与其他现有模型相比,现在的模型需要简单的输入参数,滞后响应的预测非常忠实。在RC遏制结构中,这是核电站安全性的主要关注,该模型可能涉及在地震载荷期间以公平准确性评估滞后反应。

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