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AN EVALUATION OF GROUND WATER CONDITIONS IN THE COLSTRIP COAL DEPOSIT, MONTANA

机译:蒙大拿州Colstrip煤矿矿床地下水条件评价

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An evaluation of groundwater conditions in the vicinity of coal mines near Colstrip, Montana was conducted in 2001 as part of a cumulative hydrologic impact analysis. This analysis was required due to permitting activities associated with an expansion of the Rosebud Mine. Active coal mining operations at the Rosebud mine have expanded outward as low-cover coal is sought. Much of the remaining, unmined coal nearest to Colstrip and the adjacent coal-fired power plant is relatively high-cover coal, so mining has slowed in the interior area of the coal deposit in favor of lower-cost mining at the edges. Because the interior, high cover coal will eventually be mined according to mine plans, presently inactive pits remain open for future use. As the mine expands, additional information gained through hydrologic monitoring contributes to and increases the understanding of the groundwater system and how it is affected by mining. Overall, groundwater flow directions are similar to pre-mine conditions. Where coal has been mined out, mine pit backfilled spoil maintains the groundwater flow formerly occurring in the coal seam. However, groundwater head distribution has changed significantly in some areas, and some of these head differences may be retained in the post mining groundwater environment. As mining operations have expanded, data suggests recharge to the principle coal seams may be more localized than was previously thought, and groundwater recharge from the Little Wolf Mountains southwest and upgradient of the coal deposit is limited. Drawdown of groundwater levels in the McKay coal seam, which lies beneath the mined Rosebud coal exceeds that observed in the Rosebud coal at many sites. While this phenomenon has previously been attributed to the presence of inadequately plugged coal exploration boreholes, data suggests this explanation is less likely near recent mining activities.
机译:蒙大拿州Colstrip附近的地下水条件评估2001年作为累积水文影响分析的一部分。由于允许与玫瑰花蕾矿的扩张相关的允许活动,因此需要这种分析。玫瑰花蕾矿的主动煤炭开采业务向外扩展,因为寻求低覆盖煤炭。大部分剩下的,最离Colstrip和邻近的燃煤发电厂的煤炭相对较高的煤炭,因此采矿在煤矿矿床的内部区域速度放缓,并在边缘处较低成本开采。由于内部,高覆盖煤最终根据矿山计划开采,目前非活动的坑段仍然是开放的,以便将来使用。随着矿山的扩大,通过水文监测获得的其他信息有助于并提高对地下水系统的理解以及如何受采化的影响。总的来说,地下水流动方向类似于矿井前条件。在煤矿出煤的情况下,矿井坑回填的破坏保持以前发生在煤层中的地下水流动。然而,地下水头部分布在某些地区发生了显着变化,其中一些头部差异可以保留在挖掘后地下水环境中。由于采矿业务扩大,数据表明,原理煤层的充值可能比以前的思想更为局限,而来自煤矿矿床的小狼山脉的地下水充电是有限的。在McKay煤层的地下水位下降的下降,在玫瑰花果煤下方的山脉煤层超过了玫瑰花蕾煤在许多地点。虽然这种现象以前归因于堵塞煤勘探井的存在,但数据表明这种解释不太可能接近最近的采矿活动。

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