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首页> 外文期刊>Hydrology >A Quantitative Approach to Evaluate Changes in Hydrologic Conditions of Headwater Streams: A Case Study of Restoration and Recovery Following Longwall Mine Subsidence
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A Quantitative Approach to Evaluate Changes in Hydrologic Conditions of Headwater Streams: A Case Study of Restoration and Recovery Following Longwall Mine Subsidence

机译:评价上游水流水文条件变化的定量方法:以长壁矿山塌陷后的恢复和恢复为例

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Mine subsidence can induce streambed ruptures that pirate surface water from a stream. Current understanding of the effects of longwall mining on streams lacks rigorous analytical approaches to detect hydrologic effects and does not consider the efficacy of streambed restoration techniques to address flow disruption. CONSOL Pennsylvania Coal Company, LLC (CPCC) collected and analyzed pre-mining, post-mining, and post-restoration stream discharge and flow duration data from 51.9 km of streams overlying its Bailey Mine to define pre-mining flow variability, detect post-mining changes, and evaluate post-intervention flow recovery. The primary intervention method for restoring stream flow was bedrock permeation grouting. Pre-mine and post-mine baseflow data were compared using both parametric and non-parametric hypothesis testing, which yielded similar results. An environmental flow assessment method for headwater streams using probabilistic risk assessment and correlation analysis of change threshold criteria was developed to differentiate hydrologic change as induced by mine subsidence or explained by natural variability. The method is objective, pragmatic, and statistically delimited.
机译:矿山塌陷会引起河流破裂,从而从河流中盗走地表水。当前对长壁开采对溪流的影响的了解缺乏严格的分析方法来检测水文影响,并且没有考虑溪流恢复技术解决流量中断的功效。宾夕法尼亚州CONSOL宾夕法尼亚煤炭公司(CPCC)收集并分析了位于其Bailey矿上51.9 km的水流的开采前,开采后和恢复后的流量以及流量持续时间数据,以定义开采前的流量变化,检测开采后的流量。挖掘变化,并评估干预后的流量恢复。恢复水流的主要干预方法是基岩渗透注浆。使用参数和非参数假设检验比较了矿井前和矿井后的基本流量数据,得出了相似的结果。提出了一种利用概率风险评估和变化阈值标准的相关分析对源头水流进行环境流量评估的方法,以区分由矿山塌陷或自然变异解释的水文变化。该方法是客观,实用和统计上划定的​​。

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