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時間函數與地表動態移動變形規律

Time Function and Prediction of Progressive Surface Movements and Deforma-tions

  • 摘要: 詳細分析了單參數的Knothe時間函數、雙參數的Sroka-Schober時間函數和Kowalski廣義時間函數的優缺點及其相互關系,建立了應用Knothe時間函數進行地表動態移動變形預計的原理、無實測資料礦井時間參數的確定方法和開采單元劃分的周期來壓步距法.通過對不同工作面推進速度和不同時間影響系數條件下地表動態移動變形規律研究,獲得了工作面穩定推進過程中回采速度、時間影響系數與地表最大動、靜態變形關系的計算公式.經過1176東工作面觀測資料的檢驗,證明了研究結果的有效性和實用性.

     

    Abstract: Three types of time functions, one-parameter Knothe's model, two-parameter Sroka-Schober's time function and Kowalsk's generalized time function, were introduced and their relationships were analyzed. Based on the Knothe time function, the progressive prediction of surface subsidence due to underground mining was established, and the factor of proportionality describing the influence of geological and mining conditions was determined when there was no measured data in practice. A method of periodic pressure distance to divide the total working face into certain elements considering the mining rate or mining duration was proposed. This approach made the calculation of deformation process in time possible from the set-up entry mining to deadline whether the mining rate changed or not. The experiential formula of the ratio of progressive to final maximum deformation values was obtained with respect to different mining rates and different time factors. The result indicates that this method is effective and easy to apply for analysis in practice compared with 1176 E measured data.

     

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