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Methodology for Regularization of Force-Based Elements to Model Reinforced Concrete Columns with Short Lap Splices

机译:基于力的元件正规化的方法,以便钢筋混凝土柱的模型钢筋混凝土柱

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摘要

In reinforced concrete structures built before the 1970s, it was common for columns to be constructed with short lap splices and widely spaced transverse bars at the column base, leading to increased likelihoods of pull-out failures and structural collapse during seismic events. In the modeling and analysis of reinforced concrete columns with short lap splices, several challenges arise, particularly with softening behavior that leads to strain localization and scaling and convergence issues in analyses. This research presents a methodology to regularize force-based beam-column elements with softening lap-splice material response. In the methodology, a constant energy release criterion is imposed with the constant postpeak energy of the lap-splice region determined from relevant experimental data.With the proposed regularization, the numerical model shows objective results that are independent of the length of the element and number of integration points used. Whereas the accuracy in estimating, for example, the displacement at 20% strength drop using existing nonregularized models changes with the number of integration points, the accuracy using the proposed model remains constant across numbers of integration points used with a mean accuracy of 94% compared with experimental tests. Results from static pushover and cyclic analyses show an order of magnitude decrease in standard deviation of the response using the regularized model. Increased accuracy and increased convergence for the method across the number of integration points used is shown in static and dynamic analyses. The proposed regularization approach is able to alleviate strain localization issues and facilitates the scaling of analyses from small-scale to full-scale structures.
机译:在20世纪70年代之前建造的钢筋混凝土结构中,柱子常用于柱底座的短圈接头和广泛间隔的横向杆,导致地震事件中的拉出故障和结构塌陷的似然增加。在短圈接头的钢筋混凝土柱的建模和分析中,出现了几种挑战,特别是随着柔软的行为,导致分析中的应变局部化和缩放和收敛性问题。该研究介绍了用软化液体剪接材料响应规范基于力的光束柱元件的方法。在方法中,恒定的能量释放标准施加从相关实验数据中确定的循环剪接区域的恒定延期能量施加。与所提出的正则化,数字模型显示了与元素和数量的长度无关的目标结果使用的集成点。虽然估计的准确性,例如,使用现有的非反革模型的20%强度下降的位移随着集成点的数量而变化,使用所提出的模型的准确度越常,跨多数量的集成点相比,相比的平均精度为94%用实验测试。静电推进器和循环分析的结果显示使用正则化模型的标准偏差的幅度降低。在静态和动态分析中显示了跨越使用数量的集成点数量的方法提高的准确性和增加的收敛。所提出的正则化方法能够缓解应变定位问题,并促进小规模到全规模结构的分析的缩放。

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