...
首页> 外文期刊>International Journal of Information Technology >Estimation of Geotechnical Parameters by Comparing Monitoring Data with Numerical Results: Case Study of Arash–Esfandiar-Niayesh Under-Passing Tunnel, Africa Tunnel, Tehran, Iran
【24h】

Estimation of Geotechnical Parameters by Comparing Monitoring Data with Numerical Results: Case Study of Arash–Esfandiar-Niayesh Under-Passing Tunnel, Africa Tunnel, Tehran, Iran

机译:通过将监测数据与数值结果进行比较来估算岩土工程参数:伊朗德黑兰非洲隧道Arash–Esfandiar-Niayesh地下过隧道的案例研究

获取原文
   

获取外文期刊封面封底 >>

       

摘要

The under passing tunnels are strongly influenced by the soils around. There are some complexities in the specification of real soil behavior, owing to the fact that lots of uncertainties exist in soil properties, and additionally, inappropriate soil constitutive models. Such mentioned factors may cause incompatible settlements in numerical analysis with the obtained values in actual construction. This paper aims to report a case study on a specific tunnel constructed by NATM. The tunnel has a depth of 11.4 m, height of 12.2 m, and width of 14.4 m with 2.5 lanes. The numerical modeling was based on a 2D finite element program. The soil material behavior was modeled by hardening soil model. According to the field observations, the numerical estimated settlement at the ground surface was approximately four times more than the measured one, after the entire installation of the initial lining, indicating that some unknown factors affect the values. Consequently, the geotechnical parameters are accurately revised by a numerical back-analysis using laboratory and field test data and based on the obtained monitoring data. The obtained result confirms that typically, the soil parameters are conservatively low-estimated. And additionally, the constitutive models cannot be applied properly for all soil conditions.
机译:地下通道受到周围土壤的强烈影响。由于在土壤特性中存在许多不确定性以及不适当的土壤本构模型,因此在实际土壤行为的规范中存在一些复杂性。这些提及的因素可能导致数值分析中的沉降与实际构造中获得的值不兼容。本文旨在报告由NATM建造的特定隧道的案例研究。该隧道的深度为11.4 m,高度为12.2 m,宽度为14.4 m,带2.5条车道。数值建模基于2D有限元程序。通过硬化土壤模型来模拟土壤物质行为。根据现场观察,在整个初始衬砌安装之后,地面上的数字估计沉降量约为实测值的四倍,表明一些未知因素会影响该值。因此,通过使用实验室和现场测试数据并基于获得的监测数据进行数值反分析,可以准确地修改岩土参数。所获得的结果证实,通常,土壤参数被保守地低估了。另外,本构模型不能适当地应用于所有土壤条件。

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