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Understanding Geologic and Mining Conditions for Mine Management Decisions: A Case Study

机译:了解矿山管理决策的地质和采矿条件:一个案例研究

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Mining conditions in underground coal mines are dictated by the environment in which the coal seams were geologically deposited. Depositional features can change rapidly, significantly affecting mining conditions. Mine geologists understand factors affecting mining conditions, predict future conditions, and provide guidance to mine management. A case study demonstrates how a mine in Appalachia merged an understanding of depositional environments with mining conditions and drilling data to make informed decisions as the mine encountered geologic anomalies. The assessment included drilling, mapping of geologic hazards and mine productivity, and creation of a conceptual depositional model. Metallurgical coal quality and clean tons per foot served as incentives for continued advance. Mining in the south was historically favorable, with good production and advance rates. As mining advanced north, changing geologic conditions caused the upper seam split to abruptly disappear. The mine ramped down into the lower seam split. Mining in the north area encountered unfavorable conditions, including transition roof, "horsebacks,"' sandstone intrusions, roof rolls, and bony floor, resulting in low rates of mining advance. The mine geologist characterized the features and created a predictive model for future mining. Most of the adverse conditions were attributed to the coal in the north being part of an incised, transgressive valley fill environment, as compared to the favorable conditions in the south resulting from a floodplain depositional environment. Geologic conditions, low productivity, and unfavorable future predicted conditions in the north ultimately resulted in mine closure and reallocation of resources to a new mine with better forecasted conditions.
机译:地下煤矿的开采条件取决于煤层地质沉积的环境。沉积特征会迅速变化,从而严重影响采矿条件。矿山地质学家了解影响采矿条件的因素,预测未来状况,并为矿山管理提供指导。案例研究表明,阿巴拉契亚州的矿山如何将对沉积环境的理解与采矿条件和钻探数据相结合,从而在矿山遇到地质异常时做出明智的决策。评估包括钻探,地质灾害和矿山生产力的测绘以及概念性沉积模型的创建。冶金用煤质量和每英尺净吨吨是持续进步的动力。南部的采矿历史上是有利的,具有良好的产量和增产率。随着采矿向北推进,不断变化的地质条件导致上煤层裂隙突然消失。矿山逐渐下降至下煤层裂隙。北部地区的采矿遇到不利条件,包括过渡层顶板,“马背”,砂岩侵入,顶板和骨质底板,导致采矿进度缓慢。矿山地质学家对这些特征进行了描述,并为未来的采矿创造了预测模型。与南部因洪泛区沉积环境而产生的有利条件相比,大多数不利条件是由于北部的煤属于切入的,海侵的山谷填充环境的一部分。北部的地质条件,低产和未来不利的预测条件最终导致了矿山的关闭,并将资源重新分配给了预测条件更好的新矿山。

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