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Simulation Analysis of Thermal Stress of CFST Arch Bridge During Exothermic Hydration Process

机译:放热水合过程中CFST拱桥热应力的仿真分析

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In recent decades, concrete-filled steel tube (CFST) arch bridges have been widely constructed in China. With the increasing span and arch rib diameter of CFST arch bridges, the hydration heat of pumped mass concrete in the CFST arch causes greater temperature changes during the period of construction, leading to potential thermal stress-induced cracking of mass concrete enclosed in the steel tube. In this paper, a finite element model was established to simulate the hydration heat transfer process of large-meter CFST arch which was compared with the measured data from the literature. Subsequently, the variation of thermal stress during hardening process was revealed combining with numerical implementation and analytical study, and there is a reasonable agreement between the analytical solutions and those obtained by numerical implementation. In addition, the effect of concrete creep on the thermal stresses due to hydration heat was taking into account in the calculation based on the relaxation coefficient method. The results show that the nonlinear temperature field generated from the hydration heat determines the nonlinear variation of the thermal stress of CFST structure during hardening process. The thermal stress increases rapidly at the beginning of the concrete hydration, and there is a large stress gradient along the radial direction of the arch cross section; the stress slowly decreases after peak, and there is residual thermal tensile stress in the concrete after the heat release. Concrete creep significantly reduces the thermal stress of the concrete in the early age, but the effect on the thermal stress of the steel tube is negligible.
机译:近几十年来,在中国广泛建造了混凝土钢管(CFST)拱桥。随着CFST拱桥的跨度和拱形直径的增加,CFST拱泵质量混凝土的水合热在施工期间导致更大的温度变化,导致围绕钢管封闭的质量混凝土的潜在热应力诱导的裂缝。在本文中,建立了有限元模型,以模拟大米CFST拱的水化传热过程,与文献中的测量数据进行比较。随后,揭示了与数值实施和分析研究相结合的硬化过程中热应力的变化,并且在分析解决方案之间存在合理的一致性,通过数值实现得到的那些。此外,在基于弛豫系数法的计算中考虑了混凝土蠕变对由于水化热量引起的热应力的影响。结果表明,从水合热产生的非线性温度场决定了硬化过程中CFST结构热应力的非线性变化。热应力在混凝土水合开始时迅速增加,沿着拱形横截面的径向存在大的应力梯度;峰后应力缓慢降低,热释放后的混凝土中存在残留的热拉伸应力。混凝土蠕变在休息时期显着降低了混凝土的热应力,但对钢管的热应力的影响可忽略不计。

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