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Hazard-based evaluation model of water inrush disaster sources in karst tunnels and its engineering application

机译:基于岩溶隧道突水灾害源灾害评估模型及其工程应用

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摘要

Water inrush is one of the typical geological hazards that may occur during tunnel construction in a karst area. In this paper, a potential model is established based on attribute mathematics, to assess the risk of water inrush. First, the CaCO3 content of regional strong karst, thickness of the regional strong karst layer, groundwater recharge area, discharge of groundwater, average temperature characteristic, groundwater level, groundwater cycle characteristic, surface karst morphology, fault structure, fold structure, and monoclinal structure are chosen as evaluation indexes of water inrush based on the principles of scientificity, rationality, operability, and representativeness. Second, the objective weight calculation formula is used to calculate the weights of the evaluation indices, and attribute measurement functions of each evaluation index are constructed to reckon the attribute measurement of a single index and synthetic attribute measurement. Lately, the identification and classification of water and mud inrush hazard in tunnels have been performed using a confidence criterion. In this paper, hazard level is graded as one of four types. The hazard-based assessment methodology is applied to the construction site of the Jigongling Tunnel along the entire Fanba Expressway route, and the findings are compared against the site's actual situation. The results of the engineering practice show that the evaluation result is consistent with the actual construction situation; thus, the method can provide scientific guidance for tunnel construction units.
机译:突水是岩溶地区隧道施工过程中可能发生的典型地质灾害之一。在本文中,基于属性数学建立了潜在模型,以评估水灾的风险。首先,区域性强岩溶的CaCO3含量,区域性强岩溶层的厚度,地下水补给区,地下水排放,平均温度特征,地下水位,地下水循环特征,地表岩溶形态,断层结构,褶皱结构和单斜构造基于科学性,合理性,可操作性和代表性的原则,选择渗水评价指标。其次,使用客观权重计算公式来计算评估指标的权重,并构建每个评估指标的属性度量函数以计算单个索引的属性度量和综合属性度量。最近,已经使用可信度标准对隧道中的水和泥浆涌入危害进行了识别和分类。在本文中,危害等级被划分为四种类型之一。基于危害的评估方法被应用于沿整个范坝高速公路路线的鸡公岭隧道的施工现场,并将调查结果与现场的实际情况进行比较。工程实践结果表明,评价结果与实际施工情况相吻合。因此,该方法可以为隧道施工单位提供科学指导。

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