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Visualization analysis of tunnel face stability during shield tunnelling in soft grounds

机译:软土地基盾构施工隧道面稳定性可视化分析

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The aim of this paper is to determine the face stability of a circular tunnel driven by a pressurized shield. The analysis is performed by a novel visual platform named as TBM Studio, which is developed to perform automatic analytical and visualization analysis on the tunnel face stability during shield tunnelling in soft grounds. Data modeling, analysis, and visualization are programmed separately in different C# projects which are integrated together. The hydrogeological profile of the analysis domain can be automatically generated, and the analysis cross sections can be automatically identified. Several user-friendly interfaces are created to facilitate data input, model calculation, and result visualization. The platform provides users with different analytical and empirical methods to calculate face support pressure and associated ground settlement. The data structure and database are established based on object-oriented programming method. Data-driven dynamic modeling schemes are developed for 3D visualization of the ground and the tunnel, which is efficient and flexible. The application example indicates that visualization analysis by TBM Studio is useful for practicing engineers to select the most appropriate face support pressure calculation model, to determine the safe range of face support pressure, and to identify the critical sections for shield tunnelling prior to excavation.
机译:本文的目的是确定由加压盾构驱动的圆形隧道的工作面稳定性。该分析由名为TBM Studio的新型可视平台进行,该平台开发用于对软土地层中盾构施工期间的隧道面稳定性进行自动分析和可视化分析。数据建模,分析和可视化在集成在一起的不同C#项目中分别进行编程。可以自动生成分析域的水文地质剖面,并可以自动识别分析截面。创建了几个用户友好的界面,以方便数据输入,模型计算和结果可视化。该平台为用户提供了不同的分析和经验方法来计算面部支撑压力和相关的地面沉降。基于面向对象的编程方法建立数据结构和数据库。开发了数据驱动的动态建模方案,用于地面和隧道的3D可视化,既高效又灵活。该应用示例表明,TBM Studio的可视化分析可帮助实践工程师选择最合适的工作面支撑压力计算模型,确定工作面支撑压力的安全范围以及确定基坑开挖前的关键断面。

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