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Temperature Control Measures and Temperature Stress of Mass Concrete during Construction Period in High-Altitude Regions

机译:高海拔地区大体积混凝土施工期温度控制措施及温度应力

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摘要

The focus on the development of China's vast hydropower resources has shifted to Tibet and other plateau regions.These areas are high-altitude regions whose basic climatic characteristics are as follows: dry climate, significant differences in daily temperature, and strong solar radiation. If a dam is built under such special climate conditions, specific and strict temperature control and crack prevention measures should be taken. therefore, this study explores the temperature control standards, as well as temperature control and crack prevention measures, for concrete in high-altitude regions using three-dimensional finite element methods and based on the concrete gravity dam in Tibet in combination with the characteristics of material properties that are disadvantageous to temperature control and crack prevention. The temperature drop process can be optimized in time, and the temperature drop rate can be controlled to prevent excessive scale and temperature drop rates. Moreover, the temperature gradient can be spatially optimized, and thus, the differences in foundation temperatures, upper- and lower-layer temperatures, and internal and external temperatures can also be reduced. The research shows that the recommended temperature control and crack prevention measures can effectively reduce temperature stress. This study has a significant value as a reference for similar projects in high-altitude regions.
机译:中国广大水电资源的开发重点已转移到西藏等高原地区,这些地区属于高海拔地区,其基本气候特征如下:干旱气候,日温差异明显,太阳辐射强。如果在这种特殊的气候条件下建造大坝,则应采取具体而严格的温度控制和防裂措施。因此,本研究利用三维有限元方法,结合西藏地区的混凝土重力坝,结合材料的特性,探索了高海拔地区混凝土的温度控制标准以及温度控制和防裂措施。不利于温度控制和防裂的性能。可以及时优化降温过程,并且可以控制降温速率以防止过度的结垢和降温速率。而且,可以在空间上优化温度梯度,因此,也可以减小基础温度,上层和下层温度以及内部和外部温度之间的差异。研究表明,推荐的温度控制和防裂措施可以有效降低温度应力。此项研究对于高海拔地区的类似项目具有重要的参考价值。

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  • 来源
    《Advances in civil engineering》 |2018年第6期|9249382.1-9249382.12|共12页
  • 作者单位

    Natl Energy Adm, Large Dam Safety Supervis Ctr, Hangzhou 311122, Zhejiang, Peoples R China;

    China Inst Water Resources & Hydropower Res, State Key Lab Simulat & Regulat Water Cycle River, Beijing 100038, Peoples R China;

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