首页> 外文期刊>Tunnelling and underground space technology >Robust retrofitting design for rehabilitation of segmental tunnel linings: Using the example of steel plates
【24h】

Robust retrofitting design for rehabilitation of segmental tunnel linings: Using the example of steel plates

机译:分段隧道衬砌修复的稳健改造设计:以钢板为例

获取原文
获取原文并翻译 | 示例
       

摘要

This paper presents a general framework for the robust retrofitting design for rehabilitation of segmental tunnel linings installed using shield tunnelling, and specifically using steel plates bonded to the lining as a typical example of such a rehabilitation design. A two-dimensional finite element model is established as part of the robust design which can simulate the deformational response of the steel plates reinforced segmental tunnel lining. The surrounding soil, the tunnel lining, the steel plates and the interactions between each of these are all properly simulated in this model and verified by full-scale test results. The change in horizontal convergence (ΔDhs) subjected to environmental impact, such as unexpected placement of ground surface surcharge is measured to reflect the performance of segmental tunnel linings reinforced by steel plates. The standard deviation of the reinforced tunnel performance due to uncertainties in the soil conditions and the ground surface surcharge is derived to measure the design robustness. A robust rehabilitation design is then accomplished by varying the steel plates sizes (i.e. width and thickness) to maximize the design robustness and minimize the cost using a multi-objective algorithm, also considering the safety requirement constraints. The optimal designs are determined as a set of design points, namely a Pareto Front, which presents a trade-off relationship between the design objectives and is demonstrated as being useful for decision making. Finally, the robust rehabilitation design method is applied to the retrofitting design of tunnel lining using steel plates in a real case study, and a comparison between the actual design and the design derived by the proposed method has been made to show its applicability and potentially significant advantages for designers, as the method allows consideration of both the highest robustness and the lowest cost simultaneously.
机译:本文介绍了一种稳健的翻新设计的总体框架,该设计用于修复使用盾构隧道施工的分段隧道衬砌,特别是使用粘结在衬砌上的钢板作为这种修复设计的典型示例。作为鲁棒性设计的一部分,建立了一个二维有限元模型,该模型可以模拟钢板增强的分段式隧道衬砌的变形响应。在此模型中,对周围的土壤,隧道衬砌,钢板以及它们之间的相互作用都进行了适当的模拟,并通过全面测试结果进行了验证。测量受到环境影响(例如意外地表附加费)的水平会聚度(ΔDhs)的变化,以反映由钢板加固的分段式隧道衬砌的性能。推导了由于土壤条件和地面附加费的不确定性而导致的加固隧道性能的标准偏差,以测量设计的稳健性。然后,通过考虑到安全要求的约束,通过使用多目标算法来改变钢板的尺寸(即宽度和厚度)以最大化设计的坚固性并最小化成本,从而实现稳健的修复设计。最佳设计被确定为一组设计点,即Pareto Front,它代表了设计目标之间的折衷关系,并被证明对决策有用。最后,在实际案例研究中,将鲁棒的修复设计方法应用于使用钢板的隧道衬砌改造设计中,并对实际设计与该方法得出的设计进行了比较,以显示其适用性和潜在的意义。该方法可以同时考虑到最高的鲁棒性和最低的成本,因此对设计人员具有很大的优势。

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