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Thermal Simulation of Rolled Concrete Dams: Influence of the Hydration Model and the Environmental Actions on the Thermal Field

机译:轧制混凝土水坝的热仿真:水化模型的影响与热场的环境动作

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摘要

Mathematical models for the simulation of the thermal evolution of roller-compacted concrete (RCC) dams during construction constitute an important tool for preventing excessive temperature rise, which may lead to cracking and losses of functionality. Here, we present a framework for the simulation of the thermal process. We define the boundary conditions of the problem using a careful description that incorporates the main heat exchange mechanisms. We adopt both a non-adiabatic and an adiabatic heat generation model for the simulation of the cement hydration. Our numerical framework lets us study the effect of the adopted heat generation model on the thermal field. Moreover, we study the influence of the weather conditions on the evolution of the hydration, and on the starting date of construction. Our simulations have shown that the hydration model has an important influence over the temperature field during the construction and the heat generation rate. Moreover, the hydration process and the temperature evolution are driven by the weather conditions. Once the next lift is cast, its thermal insulation effect makes the hydration take place under quasi-adiabatic conditions. As expected, dams built in cold months are prone to dissipate more heat than those built in warm seasons.
机译:施工过程中滚子压实混凝土(RCC)水坝热演化模拟的数学模型构成了防止过度温度升高的重要工具,这可能导致功能性和功能损失。在这里,我们提出了一种用于模拟热过程的框架。我们使用包含主要热交换机制的仔细描述来定义问题的边界条件。我们采用非绝热和绝热发热模型来模拟水泥水合。我们的数值框架让我们研究采用的发热模型对热场的影响。此外,我们研究了天气条件对水合的演变的影响,以及在建设的起始日期。我们的模拟表明,水合模型在施工期间对温度场具有重要影响和发热速率。此外,水合过程和温度演化由天气条件驱动。一旦铸造了下一升力,其绝热效果使水合在准防扩散条件下进行。正如预期的那样,在寒冷的月份建造的水坝易于比温暖季节内置的热量散发出来。

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