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Long-term deflections of reinforced concrete elements: accuracy analysis of predictions by different methods

机译:钢筋混凝土构件的长期挠度:不同方法的预测精度分析

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Long-term deflection response of reinforced concrete flexural members is influenced by the interaction of complex physical phenomena, such as concrete creep, shrinkage and cracking, which makes their prediction difficult. A number of approaches are proposed by design codes with different degrees of simplification and accuracy. This paper statistically investigates accuracy of long-term deflection predictions made by some of the most widely used design codes (Eurocode 2, ACI 318, ACI 435, and the new Russian code SP 52-101) and a numerical technique proposed by the authors. The accuracy is analyzed using test data of 322 reinforced concrete members from 27 test programs reported in the literature. The predictions of each technique are discussed, and a comparative analysis is made showing the influence of different parameters, such as sustained loading duration, compressive strength of concrete, loading intensity and reinforcement ratio, on the prediction accuracy.
机译:钢筋混凝土受弯构件的长期挠度响应受复杂物理现象(如混凝土蠕变,收缩和开裂)的相互作用的影响,这使其难以预测。设计规范提出了许多具有不同程度的简化和准确性的方法。本文对一些最广泛使用的设计规范(欧洲规范2,ACI 318,ACI 435和新的俄罗斯规范SP 52-101)以及作者提出的一种数值技术进行了统计学上的研究。使用文献中报道的27个测试程序中的322个钢筋混凝土构件的测试数据对精度进行了分析。讨论了每种技术的预测,并进行了比较分析,显示了不同参数(如持续荷载持续时间,混凝土抗压强度,荷载强度和配筋率)对预测精度的影响。

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