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Numerical study of confinement effectiveness in solid and hollow reinforced concrete bridge piers: Analysis results and discussion

机译:实心和空心钢筋混凝土桥墩约束效果的数值研究:分析结果与讨论

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This paper presents the outcome of a large parametric numerical analysis of solid and hollow reinforced concrete piers taken from actually constructed bridges, based on a consistent three-dimensional nonlinear finite element methodology that was presented in a companion paper. Various transverse reinforcement arrangements and spacings were examined, as well as the effect of high-strength concrete on confinement effectiveness. The interpretation of numerical results mainly focuses on identifying the most convenient confinement configurations in terms of enhanced strength and ductility, as well as ease of construction and cost effectiveness. Furthermore, issues regarding confinement arrangements (often used in practice) that result in reduced section ductility are investigated and possible remedies are suggested. Finally, the broad applicability of the proposed methodology is established by application to a particularly complex (in terms of geometry and reinforcement detailing) hollow pylon section.
机译:本文介绍了对固体和空心钢筋混凝土墩的大参数数值分析的结果,这些墩来自于实际建造的桥梁,其依据是在相伴文件中提出的一致的三维非线性有限元方法。研究了各种横向钢筋布置和间距,以及高强度混凝土对约束效果的影响。数值结果的解释主要着眼于确定最方便的约束构型,以增强强度和延展性,并简化构造和成本效益。此外,研究了有关限制布置(通常在实践中使用)的问题,这些问题导致截面的延展性降低,并提出了可能的补救措施。最后,通过将其应用于特别复杂(就几何形状和钢筋细化而言)的空心塔截面,可以确立所提出方法的广泛适用性。

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