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Prediction of thermal stresses in mass concrete structures with experimental and analytical results

机译:实验分析结果预测大规模混凝土结构的热应力

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摘要

Accurate prediction of concrete properties is needed for the thermal stress analysis of mass concrete structures because analysis results are mainly dependent on concrete properties. However, it is uneconomic or impractical to evaluate directly concrete properties, such as thermal expansion coefficient, elastic modulus, shrinkage and creep etc. by experiments because the concrete properties at early ages drastically change with time and curing conditions, which cause thermal deformation of the specimens and the experimental devices. The purpose of this study is to predict thermal stresses in mass concrete structures by the proposed method, which uses experimental and analytical results. To achieve this goal, experiments of elastic modulus, stress-independent strain and thermal stresses are suggested and conducted. Elastic modulus and stress-independent strain are used for elastic analysis, while thermal stresses are used to evaluate the creep effects on thermal stresses. Based on the step-by-step method, thermal stresses in mass concrete structures are obtained by integrating the incremental stresses which are the sum of elastic stress and the stress affected by creep. For the verification, the predicted stresses are compared to the stresses measured from the experiments of mass concrete structures with internal and external restraints. As a result of the comparison, it showed good prediction results for compressive stresses, while the tensile stresses at the surface showed the difference from measured stresses due to the surface cracking in concrete. (C) 2020 Elsevier Ltd. All rights reserved.
机译:对于质量混凝土结构的热应力分析,需要精确预测混凝土特性,因为分析结果主要取决于混凝土性能。然而,通过实验评估直接混凝土性能,例如通过实验来评估热膨胀系数,弹性模量,收缩和蠕变等是不经济的或不切实际的。由于早期时代的混凝土性能随着时间和固化条件而变化,这导致热变形标本和实验装置。本研究的目的是通过所提出的方法预测大规模混凝土结构的热应力,该方法采用实验和分析结果。为了实现这一目标,提出并进行了弹性模量,应力无关的应变和热应力的实验。弹性模量和应力 - 无关的菌株用于弹性分析,而热应力用于评估对热应力的蠕变效应。基于逐步的方法,通过积分是弹性应力和受蠕变影响的应力的增量应力来获得质量混凝土结构中的热应力。为了验证,将预测的应力与来自具有内部和外部限制的大规模混凝土结构的实验测量的应力进行比较。作为比较的结果,它显示了对压缩应力的良好预测结果,而表面的拉伸应力表现出与混凝土的表面裂缝引起的测量应力的差异。 (c)2020 elestvier有限公司保留所有权利。

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