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Underground ground control monitoring and interpretation,and numerical modeling, and shield capacity design

机译:地下地面控制监测与解释,数值模拟和盾构能力设计

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摘要

Mine or longwall panel layout is a 3D structure with highly non-uniform stress distribution. Recognition of such fact will facilitate underground problem identification/investigation and solving by numerical modeling through proper model construction. Due to its versatility, numerical modeling is the most popular method for ground control design and problem solving. However numerical modeling results require highly experienced professionals to interpret its validity/applicability to actual mining operations due to complicated mining and geological conditions. Underground ground control monitoring is routinely performed to predict roof behavior such as weighting and weighting interval without matching observation of face mining condition while the mining pressures are being monitored, resulting in unrealistic interpretation of the obtained data on mining pressure. The importance of ground control pressure monitoring and simultaneous observation of mining and geological conditions is illustrated by an example of shield leg pressure monitoring and interpretation in an U.S. longwall coal mine: it was found that the roof strata act like a plate, not an individual block of the size of a shield dimension, as commonly assumed by all researchers and shield capacity is not a fixed property for a longwall panel or a mine or a coal seam. A new mechanism on the interaction between shield’s hydraulic leg pressure and roof strata for shield loading is proposed.
机译:矿山或长壁面板布局是具有高度不均匀应力分布的3D结构。认识到这一事实将有助于通过适当的模型构建通过数值建模进行地下问题的识别/调查和解决。由于其多功能性,数值建模是地面控制设计和解决问题的最流行方法。然而,由于复杂的采矿和地质条件,数值模拟结果需要经验丰富的专业人员来解释其对实际采矿作业的有效性/适用性。在监视采矿压力的同时,常规执行地下地面监视监视以预测顶板行为(例如,加权和加权间隔),而不匹配对工作面采矿条件的观察,从而导致对获得的采矿压力数据进行不切实际的解释。以美国长壁煤矿的盾构腿压力监测和解释为例,说明了地面控制压力监测和同时观察采矿与地质条件的重要性:发现屋顶地层就像一块板,而不是单个地块所有研究人员都普遍认为,盾构尺寸的大小对于长壁板,矿井或煤层而言并不是固定的。提出了一种在盾构的液压支腿压力与顶板地层相互作用的盾构加载中的新机制。

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