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Evaluation and Application of the Flexural Rigidity of a Reinforced Concrete Pipe

机译:钢筋混凝土管抗弯刚度的评估与应用

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摘要

Design of reinforced concrete pipes focuses on circumferential bending moment. Analytical or numerical methods can be used to estimate these, but an adequate representation of the soil conditions and pipe properties is necessary. The objective of this research study is to use simple experiments (three-edge bearing tests) along with closed-form solutions to obtain the circumferential flexural rigidity of a 600 mm reinforced concrete pipe for use in calculating moments from experimental measurements of changes in curvature (without knowledge of the soil and loading conditions). The data from the experiments were also used to calculate an elastic modulus that can be used to represent the circumferential flexural rigidity of the specimen in numerical simulations without having to model the reinforcement. An assessment of the methods used in this research study is also presented. Finally, use of the circumferential flexural rigidity in interpretation of buried pipe experiments is illustrated where moments in a reinforced concrete pipeline subjected to live loading are inferred from measured strains, comparing pipes for different burial depths and configurations.
机译:钢筋混凝土管的设计重点在于周向弯矩。可以使用分析或数值方法来估计这些,但是必须充分代表土壤条件和管道特性。这项研究的目的是使用简单的实验(三边缘轴承测试)以及封闭形式的解决方案,获得600 mm钢筋混凝土管的周向抗弯刚度,用于根据曲率变化的实验测量值计算弯矩(不了解土壤和负载条件)。来自实验的数据还用于计算弹性模量,该弹性模量可用于在数值模拟中表示样品的周向弯曲刚度,而不必对增强材料进行建模。还介绍了本研究使用的方法的评估。最后,说明了使用周向抗弯刚度解释埋管实验的结果,其中根据测量的应变推导了钢筋混凝土管道中承受活荷载的弯矩,并比较了不同埋藏深度和构造的管道。

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