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Effect of Thermal Parameters on Hydration Heat Temperature and Thermal Stress of Mass Concrete

机译:热参数对质量混凝土水合热温度和热应力的影响

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To explore the influence of concrete thermal parameters on the hydration heat temperature and thermal stress of mass concrete, four feature positions of a dam foundation were chosen to analyze the changing process of temperature and stress by varying the thermal parameters, including the thermal conductivity, specific heat, surface heat diffusion coefficient, temperature rise coefficient, solar absorption coefficient, and thermal expansion coefficient. Some conclusions were obtained as follows. Increasing the thermal conductivity and reducing the specific heat and temperature rise coefficient of concrete can effectively reduce the maximum temperature of the central concrete structure. Increasing the solar absorption coefficient, specific heat, and thermal expansion coefficient and reducing the thermal conductivity, surface heat diffusion coefficient, and temperature rise coefficient of concrete can reduce the maximum principal tensile stress in the structure to a certain extent. The maximum principal tensile stress at different positions of the structure has a linear functional relationship with the thermal conductivity, specific heat, and thermal expansion coefficient and has a quadratic function relationship with the surface heat diffusion coefficient, temperature rise coefficient, and solar absorption coefficient. Besides, this study also proposed a series of related anticracking measures. This study was expected to provide a theoretical reference for the design, construction, and cracking disease prevention of mass concrete structures.
机译:为了探讨混凝土热参数对质量混凝土水合热温度和热应力的影响,选择了坝基的四个特征位置,通过改变热参数来分析温度和应力的变化过程,包括导热率,具体热,表面热扩散系数,温度上升系数,太阳能吸收系数和热膨胀系数。一些结论如下取得了如下。增加导热性和降低混凝土的比热和升温系数可以有效地降低中央混凝土结构的最高温度。增加太阳能吸收系数,比热和热膨胀系数,并降低了热导率,表面热扩散系数和升温系数的混凝土可以在一定程度上降低结构中的最大主拉伸应力。该结构的不同位置处的最大主拉伸应力具有与导热率,比热和热膨胀系数的线性功能关系,并且具有与表面热扩散系数,温度上升系数和太阳能吸收系数的二次函数关系。此外,这项研究还提出了一系列相关的抗干扰措施。预计本研究将为预防大规模混凝土结构的设计,施工和开裂疾病提供理论参考。

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