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Total and Effective Stresses in Backfilled Stopes during the Fill Placement on a Pervious Base for Barricade Design

机译:在路障设计的先前基础上进行填充时,回填停止处的总应力和有效应力

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Backfill is increasingly used in underground mines worldwide. Its successful application depends on the stability of the barricades built at the base of the stopes to hold the backfill in place, which in turn depends on the knowledge of the pore water pressure (PWP) and stresses during, or shortly after, the placement of the slurried backfill. Until now, self-weight consolidation is usually considered for the estimation of the PWP. There is no solution available to evaluate the total and effective stresses during, and shortly after, the filling operation. As excess PWP can simultaneously be generated (increased) and dissipated (decreased) during the backfilling operation, effective stresses can develop when the filling rate is low and/or hydraulic conductivity of the backfill is high. The arching effect has to be considered to evaluate the effective and total stresses in the backfilled stopes. In this paper, a pseudo-analytical solution is proposed to evaluate the effective and total stresses in backfilled stopes during the backfill deposition on a permeable base, by considering the self-weight consolidation and arching effect. The proposed solution is validated by numerical results obtained by Plaxis2D. A few sample applications of the proposed solution are shown.
机译:回填在全球的地下矿山中越来越多地使用。它的成功应用取决于在采煤场底部建立的路障的稳定性,以将回填物固定在适当的位置,而路堤的稳定性又取决于对孔隙水压力(PWP)的了解以及在放置期间或之后不久的应力。泥浆回填。到目前为止,通常考虑使用自重合并来估计PWP。没有可用于评估填充操作期间和之后不久的总应力和有效应力的解决方案。由于在回填操作期间会同时生成(增加)和消散(减少)多余的PWP,因此当填充率低和/或回填的水力传导率高时,会产生有效应力。必须考虑拱效应来评估回填采场的有效应力和总应力。本文提出了一种拟解析方法,通过考虑自重固结和拱形效应来评估回填采场在可渗透基底上的有效应力和总应力。通过Plaxis2D获得的数值结果验证了所提出的解决方案。显示了所提出解决方案的一些示例应用程序。

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