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某加坝扩容的改良中线法尾矿库三维渗流及稳定性计算

Three-dimensional seepage and stability calculation of a tailings pond with dam heightening and capacity expansion based on improved central-line method

  • 摘要: 为节约土地资源并降低尾矿库对周边环境的影响,探索了一种尾矿库加坝扩容新方法——“改良中线法”,即在原采用上游式尾矿筑坝法的尾矿库基础上,运用中线式尾矿筑坝法进行加坝扩容。基于该尾矿库原始地形资料,通过MADIS软件构建了符合实际地形的三维有限元模型,采用数值模拟方法分析“改良中线法”尾矿库的渗流规律,并利用强度折减法对尾矿坝的稳定性展开研究。结果表明:该尾矿库总水头与孔隙水压力分布符合尾矿库渗流的一般性规律,浸润线最小埋深满足规范安全要求;3种工况下坝体抗滑稳定性能均符合现行规范要求,整体处于稳定状态。“改良中线法”在继承传统中线式筑坝工艺优势的基础上,通过与上游式原有坝体的协同设计,既实现了尾矿库库容的有效提升,又保障了工程安全性能。研究成果可为类似尾矿库加坝扩容工程提供参考。

     

    Abstract: The "improved central-line method", a novel method for dam heightening and capacity expansion of tailings ponds, was investigated to conserve land resources and mitigate the influence of tailings ponds on the surrounding environment. This method is to carry out dam heightening and capacity expansion by employing the middle-line tailings dam construction method based on the original tailings pond that adopts the upstream tailings dam construction method. Based on the original topographic data of the tailings pond, a three-dimensional finite element model consistent with the actual terrain was built by adopting MADIS software. Meanwhile, the numerical simulation method was adopted to analyze the seepage laws of the tailings pond under the "improved central-line method", with the strength reduction method utilized to research the stability of tailings dams. The results indicate that the distributions of the total water head and pore water pressure in the tailings pond conform to the general seepage laws of tailings ponds, and the minimum burial depth of the phreatic line meets the safety requirements specified in relevant codes. Additionally, the anti-slide stability performance of dam bodies in three working conditions all complies with the current specifications, showing the overall stability of the structure. Inheriting the advantages of the traditional central-line dam construction technology, the "improved central-line method" not only achieves effective improvement of the tailings pond’s capacity but also ensures the engineering safety performance by carrying out the collaborative design with the existing upstream dam bodies. The research findings can provide a reference for similar projects involving dam heightening and capacity expansion of tailings ponds.

     

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