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Shear design procedure for reinforced normal and high-strength concrete beams using artificial neural networks. Part Ⅰ: beams without stirrups

机译:使用人工神经网络的普通和高强度钢筋混凝土梁的剪力设计程序。第一部分:无箍筋的梁

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摘要

Over the last decades, a great number of experimental campaigns on the behavior of high- and normal-strength reinforced concrete beams without shear reinforcement failing in shear have been published, and some excellent rational models to explain the physical phenomena have been developed. However, their implementation into design codes still requires considerable simplification. With the aim of taking into account this large amount of information available and to re-evaluate the current codes of practice extensive research was performed. An artificial neural network was developed to predict the shear strength of reinforced beams and, based on its results, a parametric study was carried out to determine the influence of each parameter affecting the failure shear strength of beams without web reinforcement. Finally, new simple expressions are proposed for the design of high-strength and normal-strength reinforced concrete beams without shear reinforcement. The new expressions correlate with the empirical tests better than any current code of practice does.
机译:在过去的几十年中,已经发表了许多关于高强度和正常强度的钢筋混凝土梁的性能的试验方案,这些钢筋在剪切作用下没有剪切补强失效,并且已经开发了一些解释物理现象的出色的理性模型。但是,将其实施到设计规范中仍然需要进行大量简化。为了考虑到大量可用信息并重新评估当前的行为准则,进行了广泛的研究。开发了一个人工神经网络来预测增强梁的抗剪强度,并基于其结果,进行了参数研究,以确定每个参数对无腹板增强梁的破坏抗剪强度的影响。最后,提出了新的简单表达式,用于设计高强度和正常强度的无剪切配筋混凝土梁。与当前的任何实践准则相比,新的表达方式与经验测试的相关性更好。

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