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BIM-Based Tunnel Information Modeling Framework for Visualization, Management, and Simulation of Drill-and-Blast Tunneling Projects

机译:基于BIM的隧道信息建模钻头,管理和模拟钻孔隧穿工程

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Tunnel construction fundamentally differs from building and aboveground civil infrastructure projects. Drill-and-blast is one of the most common and flexible tunnel construction methods. However, it is complex and challenging because a large amount of data is generated from dispersed, independent, and heterogeneous sources. The tunneling industry still uses traditional project management techniques to manage complex interactions between these data sources that are hardly linked, and independent decisions are often made without considering all the relevant aspects. In this context, tunnel construction exhibits uncertainties and risks due to unforeseen circumstances, intricate design, and ineffective information management. Building information modeling (BIM) in the construction industry provides a solution to such issues with effective data information modeling. Existing research has considered a very general BIM semantic model and focused only a small portion of the entire drill-and-blast construction process. Tunnel boring machine (TBM) projects have successfully applied linked data models and multimodel concepts in BIM, but those technologies have yet to be adopted in drill-and-blast tunneling. To address that gap, a novel BIM-based multimodel tunnel information modeling (TIM) framework is presented here to improve project management, construction, and delivery by integrating five interlinked data models and project performance data for drill-and-blast tunnel construction. Data models of tunnel construction processes are linked to propose the Industry Foundation Classes (IFC)-Tunnel classes based on the objects, relationships, and property set definitions of the IFC schema. To validate the proposed framework, an implementation case study of a hydropower tunneling project is presented. The results indicate that the framework facilitates data sharing, information integration, data accessibility, design optimization, project communication, efficient project management, and visualization of tunnel design and construction processes.
机译:隧道施工从根本上不同于建筑物和地上的民用基础设施项目。钻头和爆炸是最常见且灵活的隧道施工方法之一。然而,它是复杂的并且具有挑战性,因为从分散,独立和异质源产生了大量数据。隧道行业仍然使用传统的项目管理技术来管理这些数据源之间几乎没有链接的复杂交互,并且经常在不考虑所有相关方面的情况下进行独立决策。在这种情况下,由于不可预见的情况,错综复杂的设计和无效信息管理,隧道结构具有不确定性和风险。建筑业建筑信息建模(BIM)为具有有效数据信息建模的问题提供了解决方案。现有的研究已经考虑了一个非常一般的BIM语义模型,只关注整个钻孔和爆破施工过程的一小部分。隧道镗床(TBM)项目已成功应用于BIM中的链接数据模型和多模型概念,但这些技术尚未采用钻爆隧道。为了解决该差距,这里提出了一种新的基于BIM的多模隧道信息建模(TIM)框架,以改善项目管理,构造和交付,通过集成五个互通的数据模型和用于钻探隧道构造的项目性能数据。隧道施工过程的数据模型链接以提出基于IFC模式的对象,关系和属性集定义的行业基础类(IFC)-Tunnel类。为了验证拟议的框架,提出了一种实施水电隧道项目的实施方式研究。结果表明,该框架有助于数据共享,信息集成,数据可访问性,设计优化,项目通信,高效项目管理和隧道设计和施工过程的可视化。

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