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Research on risk assessment system for water inrush in the karst tunnel construction based on GIS: Case study on the diversion tunnel groups of the Jinping Ⅱ Hydropower Station

机译:基于GIS的岩溶隧道施工风险评估系统研究 - 津平Ⅱ水电站转移隧道群体案例研究

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摘要

This paper studies the risk assessment system for water inrush in the karst tunnel using geographic information system (GIS) technology to predict dynamically the water inrush risk and to develop appropriate protective measures. The risk assessment of the water inrush with geological flaws is conducted where the weight is set using the analytic hierarchy process (AHP) to establish the assessment models, whereas that with no geological flaws is made using the rock mass mechanics theories. The technical route to predict the water inrush risk is based on the geological data obtained prior to prospecting, and the prediction is introduced into the assessment system as background database. The geological and underground water data during construction are combined to correct the water inrush model parameters. The corrected parameters are used to update the basic database of the assessment, and the updated data are employed to assess the water inrush risk before construction. During this research, GIS is introduced into the specialized model of risk assessment of the water inrush. MAPGIS geographic information system software is selected as the basic platform of GIS, and VC++ is selected as the development tool. The assessment of the water inrush model adopted in the system is tested in water inrush cases in the auxiliary tunnel in Jinping II Hydropower Station. The results validate the reliability of the model. The system realizes a realtime assessment of the water rush in the karst tunnel by providing a relatively correct and direct geological basis for the design of waterproof tunnel excavation and offers a practical guide on safe tunnel construction.
机译:本文采用地理信息系统(GIS)技术研究了岩溶隧道中的水中涌入风险评估系统,以便动态地预测水涌风险并制定适当的保护措施。使用分析层次过程(AHP)设定了重量来建立评估模型的重量进行了与地质缺陷的水涌出的风险评估,而没有使用岩石大规模力学理论进行地质缺陷。预测水中涌入风险的技术路线基于在探矿前获得的地质数据,并且将预测引入到评估系统中作为背景数据库。施工过程中的地质和地下水数据组合以纠正水中模型参数。校正的参数用于更新评估的基本数据库,并且使用更新的数据来评估建设前的水涌入风险。在这项研究期间,GIS被引入了浪涌风险评估的专业模型。 MAPGIS地理信息系统软件被选为GIS的基本平台,并选择VC ++作为开发工具。在金坪II水电站辅助隧道中采用的系统采用的水中涌入模型的评估。结果验证了模型的可靠性。该系统通过为防水隧道挖掘设计提供相对正确和直接的地质基础,实现了岩溶隧道中的水冲击的实时评估,并提供了安全隧道施工的实用指南。

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