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Numerical Study on the Effectiveness of Grouting Reinforcement on the Large Heaving Floor of the Deep Retained Goaf-Side Gateroad: A Case Study in China

机译:深部留空采空巷道大沉陷底板注浆加固效果的数值研究:以中国为例

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To study the effectiveness of grouting reinforcement on a large heaving floor of the retained goaf-side gateroad (RGSG) at a 900 m depth in the Zhuji coal mine, a numerical model involving strain softening constitutive material was built. First, the simulated deformations of the RGSG were compared with field data to verify the reliability of the numerical model. Then, the dynamic distribution of the stress in the RGSG floor was examined to reveal the mechanism of floor heave. Finally, grouting reinforcement was proposed to control the RGSG floor, and the corresponding effectiveness was verified by improving the rock mechanics of the floor strata based on the results of numerical uniaxial compressive tests. The results demonstrated that a fairly good match was achieved between the field and numerical data, and the proposed FLAC3D (Fast Lagrangian Analysis of Continua) numerical model was an effective approach to study the stability of the deep RGSG. A variation of the ratio between horizontal stress to vertical stress in the floor strata was the root cause of floor heave in the deep RGSG. Ideally, the floor heave could be reduced by 41%, 62%, and 79% when the floor strata of 1 m depth were reinforced with grouting schemes I, II, and III, respectively.
机译:为研究诸暨煤矿在900 m深度的留空侧闸(RGSG)的大隆起底板上注浆加固的有效性,建立了包含应变软化本构材料的数值模型。首先,将RGSG的模拟变形与现场数据进行比较,以验证数值模型的可靠性。然后,研究了RGSG地板中应力的动态分布,以揭示地板起伏的机理。最后,提出了灌浆加固的方法来控制RGSG地板,并基于数值单轴压缩试验的结果,通过改善地板地层的岩石力学来验证相应的有效性。结果表明,现场和数值数据之间取得了相当好的匹配,所提出的FLAC3D(连续拉格朗日快速分析)数值模型是研究深RGSG稳定性的有效方法。地层中水平应力与垂直应力之比的变化是深层RGSG地基隆起的根本原因。理想情况下,当采用灌浆方案I,II和III分别加固1 m深度的地面层时,地面起伏可减少41%,62%和79%。

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