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TEXAS LIGNITE MINING: GROUNDWATER AND SLOPE STABILITY CONTROL IN THE NINETIES AND BEYOND

机译:德克萨斯荔枝采矿:九十年代及以后地下水和边坡稳定性控制

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As lignite mining in Texas approaches and exceeds depths of 200 feet below ground level, rising costs demand that innovative mining approaches be used in order to maintain the economic viability of lignite mining. Groundwater and slope stability problems multiply at these depths, resulting in increasing focus on how to control these costs. Dewatering costs are consistently rising for the lignite industry, as deeper mining encounters more and larger saturated sand bodies. These sands require dewatering in order to improve slope stability. Planning and analysis become more important as the number of wells grows beyond what can be managed with a simple "cookie-cutter" approach. Slope stability plays an increasing role in mining concerns as deeper lignite is recovered. Slope stability causes several problems, including loss of lignite, increased rehandle, and hazards to personnel and equipment. Traditional lignite mine planning involved a fairly "generic" pit design with one design highwall angle, one design spoil angle, and little geotechnical evaluation of the deposit. This "one mine-one design" approach, while cost-effective in the past, is now being replaced by a more critical analysis of the design requirements of each area. Geotechnical evaluation plays an increasing role in the planning and operational aspects of lignite mining. Laboratory core sample test results can be used for slope stability modeling, in order to obtain more accurate design and operational information.
机译:由于德克萨斯州的褐煤矿井,超过地面50英尺的深度,成本上升的需求要求使用创新的采矿方法来维持褐煤采矿的经济可行性。地下水和边坡稳定性在这些深度繁殖时,导致如何控制这些成本的焦点。脱水成本始终如一地升起褐煤行业,因为更深的采矿遭遇较大饱和的砂体。这些砂子需要脱水以提高斜坡稳定性。规划和分析变得更加重要,因为井的数量远远超过了可以用简单的“饼干切割机”方法管理。坡度稳定性在采矿担忧中发挥着越来越大的作用,因为较深的褐煤被恢复。边坡稳定性导致几个问题,包括褐煤丧失,增加重播和人员和设备的危害。传统的褐煤矿山规划涉及一个相当“通用的”坑设计,具有一个设计高墙角度,一个设计弃土角,以及对矿床的几乎没有地岩土学评估。这是“一个矿山 - 一种设计”方法,而过去具有成本效益,现在被对每个区域的设计要求的更关键分析所取代。岩土性评估在褐煤矿业的规划和运行方面发挥着越来越大的作用。实验室核心样本测试结果可用于斜坡稳定性建模,以获得更准确的设计和操作信息。

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