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Novel Well Completions in Small Diameter Coreholes Created Using Portable Rock Drills

机译:使用便携式凿岩机在小直径井眼中完成新井完井

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摘要

Difficult access conditions have limited techniques for groundwater system characterization and monitoring in bedrock exposed landscapes. This condition is common in the mining industry and resulted in the development of lightweight portable drills. This paper describes how these drills were used at a contaminated site to understand the groundwater flow system by adapting piezometer designs, ensuring effective seals to obtain reliable hydraulic head, hydrochemistry, and contaminant concentrations. Two drilling machines were evaluated: the Shaw Portable Core Drill (TM) fits in a backpack and can advance continuously cored rock holes, nominal 51 millimeters ( mm) diameter, to depths up to approximately 15 meters (m); and the larger Winkie Drill (TM) requires a two or more people to mobilize and can advance continuously cored holes, nominal 48 mm diameter, to depths of approximately 45 m. The resulting small diameter coreholes were accommodated in the design of each well using a seal created by injecting grout into a semipermeable fabric sleeve. This "fabric sleeve" serves as a means to contain the grout and ensures that the entire annulus above the screen is sealed without loss of grout into the formation, allowing the well to perform as a piezometer. To develop and demonstrate this methodology for groundwater monitoring in bedrock, the two drills were used in drainages located along the slopes of an elevated sandstone outcrop near Los Angeles, California. Unique insights into the groundwater flow system of this bedrock environment, which would otherwise be unattainable, were achieved. This methodology overcomes the accessibility limitations of conventional drilling methods that prevent installation of wells in remote and rugged mountainous terrains.
机译:难以进入的条件限制了在裸露的基岩景观中对地下水系统进行表征和监测的技术。这种情况在采矿业中很常见,并导致了轻便的便携式电钻的发展。本文介绍了如何在受污染的地点使用这些钻机,通过调整压力计设计,确保有效的密封来获得可靠的水头,水化学和污染物浓度,从而了解地下水流系统。对两台钻机进行了评估:Shaw便携式岩心钻(TM)装在背包中,可以将标有51毫米(mm)直径的连续取芯的岩石孔推进到大约15米(m)的深度;而更大的Winkie Drill(TM)需要两个或两个以上的人来动员,并且可以将标称直径为48 mm的连续取芯孔推进到大约45 m的深度。使用通过将水泥浆注入半透性织物套管中而形成的密封件,将所得的小直径井眼容纳在每个井的设计中。该“织物套筒”用作容纳水泥浆的手段,并确保将筛网上方的整个环隙密封,而不会损失水泥浆进入地层,从而使井起到压强计的作用。为了开发和演示这种用于基岩地下水监测的方法,这两个钻机用于加利福尼亚洛杉矶附近一个高架砂岩露头斜坡的排水系统。对于这种基岩环境的地下水流系统具有独特的见解,否则将无法实现。这种方法克服了常规钻井方法的可及性限制,传统的钻井方法妨碍了在偏远和崎mountain的山区地形中安装井。

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  • 来源
    《Ground Water Monitoring & Remediation》 |2018年第1期|42-55|共14页
  • 作者单位

    Univ Guelph, Inst Groundwater Res G360, 50 Stone Rd East, Guelph, ON N1G 2W1, Canada;

    Univ Guelph, Inst Groundwater Res G360, 50 Stone Rd East, Guelph, ON N1G 2W1, Canada;

    Univ Waterloo, Dept Earth & Environm Sci, 200 Univ Ave West, Waterloo, ON N2L 3G1, Canada;

    Univ Guelph, Inst Groundwater Res G360, 50 Stone Rd East, Guelph, ON N1G 2W1, Canada;

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