首页> 外文期刊>Soil Dynamics and Earthquake Engineering >Dynamic soil-structure interaction analysis of a telescope at the Javalambre Astrophysical Observatory
【24h】

Dynamic soil-structure interaction analysis of a telescope at the Javalambre Astrophysical Observatory

机译:爪哇兰天体天文台望远镜的动态土-结构相互作用分析

获取原文
获取原文并翻译 | 示例
           

摘要

This paper presents the dynamic soil-structure analysis of the main telescope 1250 of the Observatorio Astroffsico de Javalambre (OAJ, Javalambre Astrophysical Observatory) on the Pico del Buitre. Vibration control has been of prime concern in the design, since astrophysical observations may be hindered by mechanical vibration of optical equipment due to wind loading. The telescope manufacturer therefore has imposed a minimal natural frequency of 10 Hz for the supporting telescope pier. Dynamic soilstructure interaction may significantly influence the lowest natural frequency of a massive construction as a telescope pier. The structure clamped at its base has a resonance frequency of 14.3 Hz. A coupled finite element-boundary element (FE-BE) model of the telescope pier that accounts for the dynamic interaction of the piled foundation and the soil predicts a resonance frequency of 11.2 Hz, demonstrating the significant effect of dynamic soil-structure interaction. It is further investigated to what extent the coupled FE-BE model can be simplified in order to reduce computation time. The assumption of a rigid pile cap allows us to account for dynamic soil-structure interaction in a simplified way. A coupled FE-BE analysis with a rigid pile cap predicts a resonance frequency of 11.7 Hz, demonstrating a minor effect of the pile cap flexibility on the resonance frequency of the telescope pier. The use of an analytical model for the pile group results in an overestimation of the dynamic soil stiffness. This error is due to the large difference between the actual geometry and the square pile cap model for which the parameters have been tuned. (C) 2014 Elsevier Ltd. All rights reserved.
机译:本文介绍了位于皮科德尔布埃特(Pico del Buitre)的Javalambre天文台(OAJ,Javalambre天体物理天文台)主望远镜1250的动态土壤结构分析。振动控制一直是设计中最主要的问题,因为由于风的作用,光学设备的机械振动可能会阻碍天体观测。因此,望远镜制造商为支撑望远镜墩施加了10 Hz的最小固有频率。动态的土壤结构相互作用可能会极大地影响作为望远镜墩的大型建筑的最低固有频率。固定在其底部的结构的共振频率为14.3 Hz。望远镜墩的耦合有限元边界元(FE-BE)模型考虑了桩基与土壤的动力相互作用,其共振频率为11.2 Hz,证明了土壤与结构动力相互作用的显著作用。进一步研究了耦合FE-BE模型可以简化到什么程度,以减少计算时间。刚性桩帽的假设使我们能够以简化的方式考虑动态土-结构相互作用。带有刚性桩帽的耦合FE-BE分析预测共振频率为11.7 Hz,这表明桩帽柔韧性对望远镜墩的共振频率影响较小。对桩组使用分析模型会导致高估了动态土壤刚度。此错误是由于实际几何形状与已针对其参数进行了调整的方形桩帽模型之间存在较大差异。 (C)2014 Elsevier Ltd.保留所有权利。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号