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The Response of a High Order Stream to Shallow Cover Longwall Mining in the Northern Appalachian Coalfield

机译:阿巴拉契亚北部煤田高阶流对浅层长壁开采的响应

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The effect of longwall mining on streams and shallow aquifers has been the subject of numerous research studies for more than twenty years. As a result of these studies, it has become common to consider an overburden thickness of 400 feet as the lower limit at which longwall mining methods may be used with little or no effect on hydrologic systems. This paper presents the results of a study documenting the response of a large high order stream to shallow cover undermining by longwall methods in the northern Appalachian coalfield. The field site is located in a narrow stream valley where the overburden, composed primarily of limestone and sandstone units interbedded with shales and siltstones, ranges in thickness from 340 to 285 feet above the main bench of the Pittsburgh coal seam. Streamflow monitoring and monitor well measurements indicate that no significant loss zones or water table lowering resulted from undermining the stream or the adjacent valley bottom area. Additionally, hydrographs for shallow near-stream wells exhibit fluctuations related to natural seasonal variations, which are nearly identical to those observed in a non-undermined control well in the same watershed. Environmental factors affecting streamflow were monitored through the use of a control stream in an adjacent non-undermined watershed to differentiate between natural and mining induced changes in flow.
机译:二十多年来,长壁开采对河流和浅层含水层的影响一直是众多研究的主题。这些研究的结果是,人们普遍认为覆盖层厚度为400英尺,这是使用长壁开采方法对水文系统影响很小或没有影响的下限。本文介绍了一项研究结果,该研究结果证明了北阿巴拉契亚煤田中长壁开采法对大型高阶流对浅层覆盖破坏的响应。现场位于一个狭窄的溪谷中,覆盖层主要由夹在页岩和粉砂岩中的石灰岩和砂岩单元组成,其厚度范围比匹兹堡煤层的主台阶高340至285英尺。流量监测和监测井测量结果表明,破坏河流或相邻的谷底面积不会导致明显的损失区或地下水位降低。此外,浅水近流井的水位图显示出与自然季节变化有关的波动,这与在同一流域的非破坏性控制井中观察到的波动几乎相同。通过在相邻的非破坏性流域中使用控制流来监控影响河流流量的环境因素,以区分自然和采矿引起的流量变化。

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