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Prediction of cast-in-place concrete strength of the extradosed bridge deck based on temperature monitoring and numerical simulations

机译:基于温度监测和数值模拟预测胶带桥墩铸造混凝土强度

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The work is devoted to the implementation of a monitoring system for high performance concrete embedded in the span of an extradosed bridge deck using a modified maturity method augmented by numerical simulations conducted by the authors' FEM code. The paper presents all research stages of bridge construction and considers the conclusions drawn from the results of laboratory tests, field measurements, and numerical calculations. The monitored structure is the largest extradosed bridge in Europe in terms of the span's length. Due to the considerable size and duration of the investment, it was beneficial to use an alternative method for estimating the compressive strength of concrete based on the maturity function. The bridge sections were investigated in three stages: in summer, autumn, and early spring (in June, September, and March). The monitoring of in-place concrete provided information on the actual temperature of the concrete and its gradients. Based on recorded temperatures and proposed numerical procedures, the actual strength of the cast-in-place concrete and the optimal dates of prestressing were determined. This contributed to shortening the work cycle and speeding up the work schedule. (C) 2020 The Authors. Published by Elsevier Ltd.
机译:使用由作者有限元代码进行的数值模拟增强的修改成熟度方法,在嵌入在引导桥甲板的跨度中嵌入的高性能混凝土监测系统的实施。本文介绍了桥梁建设的所有研究阶段,并考虑了从实验室测试,现场测量和数值计算结果中得出的结论。受监测的结构是跨度长度的欧洲最大的引用桥梁。由于投资的大小和持续时间,利用基于成熟度函数估计混凝土抗压强度的替代方法是有益的。在三个阶段研究了桥接部分:在夏季,秋季和早春(6月,9月和3月)。对现实混凝土的监测提供了关于混凝土的实际温度及其梯度的信息。基于记录的温度和提出的数值手术,确定了铸造混凝土的实际强度和预应力的最佳日期。这有助于缩短工作周期并加快工作时间表。 (c)2020作者。 elsevier有限公司出版

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