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Constructing Hydraulic Barriers in Deep Geologic Formations

机译:在深层地质构造中建立水力屏障

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Many construction methods have been developed to create hydraulic barriers to depths of 30 to 50 meters, but few have been proposed for depths on the order of 500 meters. For these deep hydraulic barriers, most methods are potentially feasible for soil but not for hard rock. In the course of researching methods of isolating large subterranean blocks of oil shale, the authors have developed a wax thermal permeation method for constructing hydraulic barriers in rock to depths of over 500 meters in competent or even fractured rock as well as soil. The technology is similar to freeze wall methods, but produces a permanent barrier; and is potentially applicable in both dry and water saturated formations.Like freeze wall barriers, the wax thermal permeation method utilizes a large number of vertical or horizontal boreholes around the perimeter to be contained. However, instead of cooling the boreholes, they are heated. After heating these boreholes, a specially formulated molten wax based grout is pumped into the boreholes where it seals fractures and also permeates radially outward to form a series of columns of wax-impregnated rock. Rows of overlapping columns can then form a durable hydraulic barrier. These barriers can also be angled above a geologic repository to help prevent influx of water due to atypical rainfall events. Applications of the technique to constructing containment structures around existing shallow waste burial sites and water shutoff for mining are also described.
机译:已经开发出许多构造方法来产生深度为30至50米的水力屏障,但是对于500米左右的深度,已经提出了很少的方法。对于这些深层的水力屏障,大多数方法对于土壤而言都是可行的,但对于坚硬的岩石则不可行。在研究隔离油页岩大块地下方法的过程中,作者开发了一种蜡质热渗透方法,用于在有能力甚至破裂的岩石以及土壤中深度超过500米的岩石中构造水力屏障。该技术类似于冻结墙方法,但会产生永久性障碍。并可能适用于干燥和水饱和的地层。 像冻结壁屏障一样,蜡的热渗透方法在要容纳的周边周围利用大量的垂直或水平钻孔。但是,不是冷却钻孔,而是加热钻孔。加热这些井眼后,将一种特殊配制的基于蜡的熔融蜡灌入井眼中,在其中密封裂缝,并沿径向向外渗透,形成一系列由蜡浸透的岩石柱。然后,成排的重叠列可以形成耐用的液压屏障。这些障碍物也可以在地质仓库上方倾斜,以帮助防止由于非典型降雨事件而引起的水涌入。还介绍了该技术在现有浅层废物掩埋场周围建造围护结构和采矿用水切断的应用。

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