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Effect of placement Schedule on the Thermal and Structural Response of RCC Dams, Using Finite Element Analysis

机译:使用有限元分析的布置时间表对碾压混凝土坝的热和结构响应的影响

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In Comparison with other massive concrete structures, thermal stresses of RCC dams have an important rule in the structural analysis, due to their construction method. Throughout this paper the Finite-Element based computer code, called STARD, along with other necessary relationships for determination of temperature and stresses are introduced. The code is then applied to the real field-scale problem of Roodbar RCC dam, to determine the impact of placement schedule on the thermal stresses of the dam. The finite element model of the dam is generated for every construction phase, by applying Birth & Death of Elements technique. The entire procedure is repeated until the whole dam is constructed. Throughout the analyses, in addition to placement schedule, , the impact of some other influencing factors, such as daily variations of temperature, hydration induced heat generation, initial temperature of rock foundation, placement temperature of each layer, various boundary conditions and module of elasticity , are also investigated. Based on the results of this study, it might be concluded that for a given RCC dam, placement operation, if started on the warm season, would lead to higher thermal stresses in long-term, because of which thermal cracks may form and propagate throughout the entire body, particularly near dam foundation.
机译:与其他大型混凝土结构相比,RCC大坝的热应力由于其施工方法而在结构分析中具有重要的规则。在本文中,介绍了基于有限元的计算机代码STARD,以及确定温度和应力的其他必要关系。然后将该代码应用于Roodbar RCC大坝的实际现场规模问题,以确定布置时间表对大坝热应力的影响。大坝的有限元模型是在每个施工阶段通过应用“生与死”技术生成的。重复整个过程,直到建造了整个大坝。在整个分析过程中,除了布置时间表外,还影响其他一些影响因素,例如温度的每日变化,水化诱导的热量生成,岩石基础的初始温度,每一层的布置温度,各种边界条件和弹性模量。 ,也进行了调查。根据这项研究的结果,可以得出结论,对于给定的RCC大坝,如果在温暖的季节开始进行浇筑操作,则长期会导致较高的热应力,因为热应力可能会形成并在整个过程中传播。整个身体,特别是在大坝基础附近。

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