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Seismic Behavior Analysis for Intake Tower of Luding Hydropower Station

机译:泸定水电站摄入塔的地震行为分析

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The safety of the structure in the spillway tunnel intake of the hydropower station is very important in the security and benefit of the entire hydropower station. The spillway tunnel intake of luding hydropower station is a large-scale project, especially, with the high NO.2 spillway tunnel intake tower, which has a complex body form and boundary conditions. Through the 3D-FEM static and dynamic analysis of the NO.2 spillway tunnel, the self-vibration characteristics of the intake tower structure is studied. Furthermore, this paper, through the response spectrum method, researched the dynamic response of the intake tower structure, including the dynamic displacement, dynamic stress and the acceleration distribution, by the horizontal earthquake, and demonstrated the safety of the earthquake resistance. The result shows that, the deformation and intensity of the intake tower structure meet demands, however, the stress is very high in the weak region of earthquake-resistant where special measures should be taken to ensure the security of the tower structure. The results of computation will provide a scientific base for the design of the intake tower structure.
机译:水电站溢洪道隧道摄入的结构的安全性在整个水电站的安全性和利益方面非常重要。泸定水电站的溢洪道隧道摄入量是一个大型项目,特别是高2号溢洪道隧道进气塔,具有复杂的身体形态和边界条件。通过3D-FEM静态和动态分析No.2溢洪道隧道,研究了进气塔结构的自振特性。此外,本文通过响应频谱法研究了进气塔结构的动态响应,包括水平地震,包括动态位移,动态应力和加速度分布,并证明了地震阻力的安全性。结果表明,进气塔结构的变形和强度满足要求,然而,应对抗震区弱区的应力非常高,其中应采取特殊措施确保塔结构的安全性。计算结果将为进气塔结构设计提供科学基础。

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