首页> 外文期刊>International Journal of Pressure Vessels and Piping >Validation of the Nonlinear Superposition Method (NSM) for elastic shakedown limit pressures via comparison with experimental test results of spherical vessels with radial and oblique nozzles
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Validation of the Nonlinear Superposition Method (NSM) for elastic shakedown limit pressures via comparison with experimental test results of spherical vessels with radial and oblique nozzles

机译:通过与径向和倾斜喷嘴的球体血管的实验测试结果相比,验证弹性叠加的限制压力的非线性叠加法(NSM)

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摘要

The present research revisits rare experiments which determined elastic shakedown (SD) limit pressures of full scale radial and oblique nozzles partially penetrating spherical vessels. The experiments were conducted at Berkeley Nuclear Laboratories in England [1]. The SD limit pressures were determined via conducting consecutive series of internal pressure cycles and observing cyclic strain variation recorded by strain gauges cemented at predetermined various critical locations within the junctions' vicinities. The Nonlinear Superposition Method (NSM), formulated for computing elastic SD limit loads based on Melan's lower bound SD theorem, is successfully validated against recorded experimental outcomes for both nozzle configurations. Furthermore, full elastic-plastic cyclic loading finite element simulations were executed and illustrated very good correlation to the NSM results.
机译:本研究重新定位罕见的实验,该实验确定了全尺度径向和倾斜喷嘴部分穿透球体的弹性振动(SD)限制压力。 该实验在英国伯克利核实验室进行了[1]。 通过传导连续系列内压循环和观察由应变仪记录的循环应变变化在结芯片内的预定的各个关键位置进行循环菌株测定的SD限制压力。 用于计算基于Melan的下限SD定理的弹性SD限制负载的非线性叠加方法(NSM),成功地验证了用于两个喷嘴配置的记录的实验结果。 此外,执行全弹性塑料循环加载有限元模拟,并说明与NSM结果非常好的相关性。

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