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邊角煤高回收率高效開采工藝設計與優化

Design and optimization of the mining method of boundary coal-pillars with high recovery ratio and high efficiency

  • 摘要: 針對國內邊角煤的開采現狀,提出了一套高回收率和高效率的開采工藝.用弧三角模型簡化邊角煤形狀,提出了容易實現綜合設備配套的"弧形"工作面開采工藝.該工藝沿邊界順槽順序開挖若干支架邊窩,采用"取消端頭支架,采用簡易機頭實現快速增、撤支架"的布架方式.利用數學線性規劃理論,建立了回采效率的目標函數和安全、開采成本的約束函數,對關鍵工藝參數進行了研究,得出一次增接支架數是優化核心的結論.通過優化分析,得出在高回收效率和低成本原則下的最優方案.

     

    Abstract: Based on the simplified plane shape, a new mining design and optimization method for recovering boundary coal-pillars, called arc-face mining method, was presented. Its advantages are as follows:easy to choose the related comprehensive auxiliary equipment, high recovery ratio and efficiency, and fitting the fully mechanized coal mining technology, even the sub-level longwall eaving face technology when the geologic condition is permitted. The key techniques include:developing a series of underground chambers along tailgate; in a chamber, storing some supports which will be added to the coming face-supports when the face advances near the chamber; canceling face-end supports and adopting a simple conveyer in order to add or remove supports quickly. Then, with the linear mathematics programming theory, the objective function of recovery efficiency and the constraint functions of safety and exploitation cost were established. It is concluded that the increased number of supports each time not only affects the number of underground chambers but also the efficiency. The optimization analysis also provides various optimal technology schemes with the principle of higher efficiency or lower cost.

     

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