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Numerical investigation on the creep response of concrete structures by means of a multi-scale strategy

机译:多尺度策略借助混凝土结构蠕变响应的数值研究

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In this paper, a multi-scale modelling strategy is proposed to investigate the creep behaviour of reinforced concrete structures. A Mean Field homogenisation procedure is adopted to compute the overall response of a high-strength concrete made of limestone inclusions embedded in a cement paste matrix. Finite element models of beams subjected to sustained bending loads are fully coupled to the time-dependant effective material law delivered by the homogenisation method. Furthermore, a Genetic Algorithm is used to improve the accuracy of the finite element predictions. The influence of relevant structural parameters, such as beam height, steel reinforcement ratio in tension and compression, and cement volume fraction, is assessed on the long term creep deflection over a period of five years. The long term multiplier factor, lambda(Delta), defined as the creep deflection over the immediate deflection, is calculated numerically and discussed in detail. The above results provide further insight into the time-dependent deformation mechanisms present in concrete structures which are still not well-understood, and may shed more light on the improvement of current design equations and the development of complementary design guidelines. (C) 2020 Elsevier Ltd. All rights reserved.
机译:本文提出了一种多规模建模策略来研究钢筋混凝土结构的蠕变行为。采用平均场均化程序来计算由嵌入水泥浆料基质中的石灰石夹杂物制成的高强度混凝土的总响应。经过持续弯曲载荷的梁的有限元模型完全耦合到均质化方法递送的时间依赖性有效材料法。此外,遗传算法用于提高有限元预测的准确性。在五年后的长期蠕变偏转上评估了相关结构参数的影响,如梁高,钢筋强度,钢筋加固比,以及水泥体积分数。在数值上计算长期乘法因子,定义为立即偏转的蠕变偏转的长期乘法因子λ(Δ)。和详细讨论。上述结果提供了进一步深入了解存在于混凝土结构中存在的时间依赖性变形机制,这些机制仍然没有很好地理解,并且可以更轻松地阐明当前设计方程的改善和互补设计指南的发展。 (c)2020 elestvier有限公司保留所有权利。

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