首页> 外文会议>2016 SME annual conference amp; expo: the future for mining in data-driven world >3D FINITE ELEMENT SEISMIC ANALYSIS OF LARGE DIAMETER SEGMENT ALLY LINED SHAFTS
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3D FINITE ELEMENT SEISMIC ANALYSIS OF LARGE DIAMETER SEGMENT ALLY LINED SHAFTS

机译:大直径节段衬砌轴的3D有限元地震分析

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A three dimensional nonlinear finite element model was constructed to simulate and analyze the behavior of large diameter segmentally lined shafts when subjected to seismic waves. To reduce computation time, a less complex shell model was also constructed. Transient excitation was applied to the supported nodes of both models, at the base of the shaft, with a time-function representing the 1994 Northridge earthquake. The models are developed at the end of an original phased construction-stage analysis of the shaft. Displacements, forces and moments are monitored and compared during the analyses steps. During the initial 15 seconds of the earthquake, the top and bottom of the shaft show similar displacements. The maximum horizontal displacement within the shaft is approximately 3.5 inches in the solid model and the shell model results conform to this by a factor of 50%.
机译:建立了三维非线性有限元模型,以模拟和分析大直径分段衬砌轴在地震波作用下的行为。为了减少计算时间,还构建了一个不太复杂的外壳模型。瞬态激励应用于竖井底部两个模型的受支撑节点,其时函数代表1994年Northridge地震。这些模型是在竖井的原始阶段施工阶段分析结束时开发的。在分析步骤中监控并比较位移,力和力矩。在地震的最初15秒钟内,竖井的顶部和底部显示出相似的位移。在实体模型中,轴内的最大水平位移约为3.5英寸,而壳模型的结果与此相符,为50%。

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