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Modeling of combined thermal and mechanical action in roller compacted concrete dam by three-dimensional finite element method

机译:碾压混凝土坝热工作用组合的三维有限元建模

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摘要

A combined thermal and mechanical action in roller compacted concrete (RCC) dam analysis is carried out using a three-dimensional finite element method. In this work a numerical procedure for the simulation of construction process and service life of RCC dams is presented. It takes into account the more relevant features of the behavior of concrete such as hydration, ageing and creep. A viscoelastic model, including ageing effects and thermal dependent properties is adopted for the concrete. The different isothermal temperature influence on creep and elastic modulus is taken into account by the maturity concept, and the influence of the change of temperature on creep is considered by introducing a transient thermal creep term. Crack index is used to assess the risk of occurrence of crack either at short or long term. This study demonstrates that, the increase of the elastic modulus has been accelerated due to the high temperature of hydration at the initial stage, and consequently stresses are increased.
机译:使用三维有限元方法,在碾压混凝土(RCC)大坝分析中结合了热力和机械作用。在这项工作中,提出了数值模拟RCC大坝的施工过程和使用寿命的程序。它考虑到了混凝土性能的更多相关特征,例如水合,老化和蠕变。混凝土采用了包括时效和热依赖性的粘弹性模型。成熟度概念考虑了不同的等温温度对蠕变和弹性模量的影响,并通过引入瞬态热蠕变项来考虑温度变化对蠕变的影响。裂纹指数用于评估短期或长期裂纹发生的风险。这项研究表明,由于初始阶段的高温水合,弹性模量的增加已经加速,因此应力增加了。

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