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Finite Element Analysis and Test Study on Restraint of High-energy Pipe Whip in Conventional Island

机译:常规岛高能鞭子约束的有限元分析与试验研究

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The effects of high-energy pipe whipping after rupturing are very important in an AP1000 nuclear power plant's conventional island and restraints of pipe whipping should be considered in the design. It is the first time in the country when reinforced concrete shear walls are used as restraint services. In this paper, the behaviors of walls and restraint services subjected to pipe whipping are analyzed through static and dynamic methods in the finite element software (ABAQUS), in which all kinds of nonlinearities are considered. In addition, a test study on the restraint of pipe whipping is conducted. The results show that the wall and the restraint service can prevent pipe whipping effectively under the design load, and anchor plates arranged around the wall opening can improve the local concrete compression performance of concrete to reduce the damage of concrete. Meanwhile, the study also provides the valuable reference for wall designing to prevent from pipe whipping.
机译:在AP1000核电站的常规孤岛中,破裂后高能管道搅动的影响非常重要,在设计中应考虑限制管道搅动。这是该国首次使用钢筋混凝土剪力墙作为约束服务。本文通过有限元软件(ABAQUS)中的静态和动态方法,分析了考虑到各种非线性因素的墙体和约束服务受到鞭打的行为。另外,进行了抑制管道搅动的试验研究。结果表明,在设计荷载作用下,墙体和约束服务能有效地防止管道搅动,而在墙体开口处布置锚固板可以提高混凝土的局部抗压性能,减少混凝土的破坏。同时,该研究也为墙体设计防止管道搅动提供了有价值的参考。

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