大埋深煤层开采覆岩离层发育层位定位方法研究

    Study on positioning method of separation in large embedding depth coal seam mining

    • 摘要: 离层注浆是减少开采后地面沉降,以及防治离层水害的重要手段,其中,确定注浆层位作为注浆工程的首要难题,影响着地面减沉和水害防治效果,在离层形成过程中,不同的覆岩结构对离层的发育影响至关重要。本文以门克庆煤矿11-3101工作面地质条件为工程研究背景,基于Winkler弹性地基上的薄板理论,推导了岩板竖向挠度计算公式,结合“关键层”理论,建立了覆岩离层发育层位及其空间特征预计模型。同时,利用三维离散元技术研究了工作面覆岩离层的发育规律。通过在11-3101工作面开展离层注浆工程,应用钻孔冲洗液漏失量观测和钻孔彩色电视成像技术对离层发育层位进行现场实测,将模型预计成果和数值模拟结果与实测结果对比,验证了理论预计和模拟模型预测结果的可靠性。同时,通过观测注浆前后地表沉降情况可知,下沉速率减少了58.6%,注浆减沉效果显著。该模型可为后续该地区离层注浆和离层水害防治提供更加精确的层位选择。

       

      Abstract: Separation grouting is an important means to reduce post-mining surface subsidence and prevent separation water disaster, in which the determination of grouting horizon is the primary problem of grouting engineering. It affects the effect of ground subsidence reduction and water disaster prevention. In the process of separation formation, different overburden structures have a very important impact on the development of separation. This paper takes the geological conditions of 11-3101 working face in Menkeqing Coal Mine as the engineering research background, based on the thin plate theory on Winkler’s elastic foundation, the calculation formula of vertical deflection of rock plate is derived. Meantime, the prediction model of the development horizon and spatial characteristics of overlying rock separation is established by combining with the theory of “key stratum”. At the same time, the three-dimensional discrete element technology is used to study the development law of the overlying rock separation of the working face. By carrying out the separation grouting project at the 11-3101 working face, drilling flushing fluid consumption observation and borehole color TV imaging technology are used to measure the development stratum of the separation. The reliability of the theoretical prediction and simulation model prediction results is verified by comparing the model prediction results and numerical simulation results with the measured results. At the same time, by observing the surface subsidence before and after grouting, the subsidence rate is reduced by 58.6%, and the grouting effect is significant. The model can provide more accurate layer selection for separation grouting and separation water disaster prevention.

       

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