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首页> 外文期刊>Arabian journal of geosciences >Sensitivity analysis of overburden water-resistant strata stability based on the mechanical properties of backfill body
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Sensitivity analysis of overburden water-resistant strata stability based on the mechanical properties of backfill body

机译:基于回填体力学性能的覆盖层耐水层稳定性的敏感性分析

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摘要

Strata movement control during coal seam's backfill mining is very much related to the mechanical properties of backfill body in goaf. A mechanical model of the structural water-resistant strata (SWRS) of stope overburden in backfill water-preserved mining (BWPM) was established on the basis of the key strata theory in ground control. This approach was conducted to investigate the mechanical properties of backfill body on the overburden water-resistant strata stability. The proposed model was based on the compressive mechanical properties of the filled gangue, which considered the linear and nonlinear elastic mechanical properties of backfill body. The stability mechanics criterion of the SWRS of stope overburden in BWPM on the nonlinear elastic foundation was deduced by introducing the tensile yield criterion. The maximum tensile stress (MTS) that acts on the SWRS of stope overburden decreased with the increase of the backfill body's linear elastic foundation coefficient of k(1) and the nonlinear elastic foundation coefficients of k(2) and k(3). However, the MTS rapidly decreased with the increase of k(1) and slowly decreased with the increase of k(2) and k(3). The sensitivity analysis indicated that k(1) exhibited the greatest effect on the MTS that acts on the SWRS, thereby accounting for 72.38%. In addition, k(2) and k(3) showed less effect on the MTS that acts on the SWRS, thereby only accounting for 19.56% and 8.06%, respectively. Results showed that the backfill body's linear elastic foundation coefficient plays a very important role in controlling the stability of the SWRS of stope overburden in BWPM. Increasing k(1) is more beneficial to the stability control of the water-resistant strata of stope overburden than increasing k(2) and k(3), especially the latter.
机译:煤层回填采矿过程中的地层运动控制与粘性物质回填体的机械性能非常相关。在地面控制中的关键地层理论的基础上建立了回物水保存挖掘(BWPM)的结构耐水地层(SWRS)的机械模型。进行这种方法以研究回覆防水层稳定性回填体的机械性能。所提出的模型基于填充煤矸石的压缩力学性能,其认为回填体的线性和非线性弹性力学性能。通过引入拉伸屈服标准推断出非线性弹性基础上的BWPM中的稳定性力学标准。通过k(1)的回填体的线性弹性基础系数的增加和K(2)和k(3)的非线性弹性基础系数的增加,作用于Stope覆盖的SWR的最大拉伸应力(MTS)降低。然而,MTS随着K(1)的增加而迅速降低,随着K(2)和K(3)的增加而缓慢降低。敏感性分析表明K(1)表现出对SWRS作用的MTS的最大影响,从而占72.38%。此外,K(2)和K(3)对作用于SWRS的MTS的影响较小,从而分别占19.56%和8.06%。结果表明,回填体的线性弹性基础系数在控制BWPM中的稳定性覆盖的稳定性方面发挥着非常重要的作用。增加K(1)对稳定性控制的稳定性控制覆盖物的耐水层而不是增加K(2)和K(3),尤其是后者。

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