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Structural Fatigue Analysis on Expansion Joints of Diversion Penstock of Hydropower Station

机译:水电站转移钢板膨胀关节的结构疲劳分析

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The section of diversion penstock near the powerhouse behind dam in some hydropower station is equipped with expansion joints, which is used to remedy deformation of penstock in axial and lateral due to the variation of temperature and foundation subsidence. When the hydropower station is in normal water diversion and power generation, the discharged flow generates fluctuating loads, induces structural vibration of guide cylinder of expansion joints, gives rise to cumulative fatigue damage of guide cylinder and also leads to weld joints in guide cylinder cracking to fall off. When generating unit is in the condition of load rejection, expansion joints bears not only the fluctuating pressure loads of the flow, but also undergoes the shock from water-hammer pressure as well, so this demands higher requirement for the safety and reliability of expansion joints structure. It has important engineering value for ensuring safety and reliability of water-diverting power generating system to conduct researches on dynamic effect that fluctuating loads having on expansion joints guide cylinder structure and cumulative fatigue damage of terminal weld of guide cylinder.
机译:在一些水电站后面的大坝后面的电力房子附近的转移钢板部分配备了伸缩缝,该膨胀接头由于温度和基础沉降的变化而在轴向和横向上进行钢板的变形。当水电站处于正常的进水和发电时,排出的流量会产生波动负载,引起膨胀接头的引导缸的结构振动,导致引导缸的累积疲劳损坏,并且还导致导向缸体中的焊接接头裂开脱掉。当产生单元处于负载抑制的条件时,伸缩接头不仅承受了流量的波动压力,而且也经历了水锤压力的冲击,因此这需要对膨胀接头的安全性和可靠性来说需要更高的要求结构体。它具有重要的工程价值,可确保水转移发电系统的安全性和可靠性进行动态效果的研究,使得波动负荷对膨胀接头引导缸结构和导筒末端焊缝的累积疲劳损坏。

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