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首页> 外文期刊>International journal of computational methods >3D Finite Element Modeling of GFRP-Reinforced Concrete Deep Beams without Shear Reinforcement
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3D Finite Element Modeling of GFRP-Reinforced Concrete Deep Beams without Shear Reinforcement

机译:GFRP钢筋混凝土深梁没有剪切钢筋的3D有限元建模

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This paper presents the numerical investigation of nine Glass Fiber-Reinforced Polymer (GFRP) concrete deep beams through the use of numerically-efficient 20-noded hexahedral elements. Cracking is taken into account by means of the smeared crack approach and the bars are simulated as embedded rod elements. The developed numerical models are validated against published experimental results. The validation beams spanned a practical range of varying design parameters; namely, shear span-to-depth ratio, concrete specified compressive strength and flexural reinforcement ratio. The motivation for this research is to accurately yet efficiently capture the mechanical behavior of the GFRP-reinforced concrete deep beams. The presented numerical investigation demonstrated close correlations of the force-deformation relationships that are numerically predicted and their experimental counterparts. Moreover, the numerically predicted modes of failure are also found to be conformal to those observed experimentally. The proposed modeling approach that overcame previous computational limitations has further demonstrated its capability to accurately model larger and deeper beams in a computationally efficient manner. The validated modeling technique can then be efficiently used to perform extensive parametric investigations related to behavior of this type of structural members. The modeling method presented in this work paves the way for further parametric investigations of the mechanical behavior of GFRP-reinforced deep beams without shear reinforcement that will serve as the base for proposing new design guidelines. As a deeper understanding of the behavior and the effect of the design parameters is attained, more economical and safer designs will emerge.
机译:本文通过使用数值高效的20点六面六面元素介绍了九玻璃纤维增​​强聚合物(GFRP)混凝土深梁的数值研究。通过涂抹裂缝方法考虑破裂,并且杆被模拟为嵌入式杆元件。开发的数值模型针对已发表的实验结果验证。验证光束跨越实际范围的不同设计参数;即,剪切跨越深度比,混凝土规定的抗压强度和弯曲强化比。本研究的动机是准确且有效地捕获GFRP钢筋混凝土深梁的力学行为。呈现的数值研究表明了数目预测的力变形关系的紧密相关性及其实验对应物。此外,还发现数值预测的失败模式是针对实验观察的那些。克服以前的计算限制的建议建模方法进一步证明了其能够以计算上有效的方式准确地模拟更大和更深的光束。然后可以有效地使用验证的建模技术来执行与这种类型的结构构件的行为相关的广泛参数调查。本作作品中提出的建模方法为GFRP加强的深梁的机械行为进行了进一步的参数调查,没有剪切增强,这将作为提出新设计准则的基础。作为对行为的更深理解,实现了设计参数的效果,将出现更经济和更安全的设计。

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