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Control of rock jacking considering spread of grout and grouting pressure

机译:考虑灌浆扩散和灌浆压力的顶岩控制

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This paper describes a theoretical approach for monitoring fracture dilatancy (or "jacking") during grouting. From this, a methodology to optimize the grout pumping pressure has been developed, based on the required penetration length (i.e. the distance that the grout spreads from the grout hole into the network of fractures within the rock mass). Empirical rules are put forward to prevent the damage that may result from uncontrolled deformation (Jacking) of the fractures, by limiting either pumping pressure or the injected grout volume, or by a combination of both. The state of the fractures and the spread of the grout when these limits are reached are discussed. The theoretical approach, which is referred to here as the Real Time Grouting Control Method, enables the estimation of grout penetration length or "spread" in real time. This gives an opportunity to monitor fracture dilation as it happens and, for the purpose of this paper, the allowable limits of elastic deformation and jacking have been estimated based on the grout spread. Two case histories are analyzed, for which the physical reaction of the fracture deformation with time and grout spread are determined from the recorded pressure and flow. By comparing the observed physical reaction with the theories for jacking presented here, the Real Time Grouting Control Method has been validated, and it is shown that this theoretical approach is superior to commonly used empirical methods, in that it allows the optimization of the pumping pressure to achieve a given penetration length in the shortest time and with an acceptable fracture dilatancy. This approach is a major step forward in customizing grouting works.
机译:本文介绍了一种在灌浆过程中监测裂缝扩张性(或“起重”)的理论方法。据此,基于所需的穿透长度(即,灌浆从灌浆孔扩散到岩体中的裂缝网络中的距离),已经开发出一种用于优化灌浆泵送压力的方法。提出了经验规则,以通过限制泵送压力或注入的浆液体积或两者结合来防止裂缝的不受控制的变形(顶进)可能导致的损坏。讨论了达到这些极限时的裂缝状态和灌浆的扩散。理论方法,在这里被称为实时灌浆控制方法,使得能够实时估计灌浆渗透长度或“扩散”。这提供了一个监测裂缝扩展的机会,并且就本文而言,已根据灌浆的扩散性估算了弹性变形和顶升的允许极限。分析了两个案例历史,从记录的压力和流量确定了裂缝变形随时间和灌浆扩散的物理反应。通过将观察到的物理反应与此处介绍的顶进理论进行比较,实时灌浆控制方法得到了验证,结果表明,该理论方法优于常用的经验方法,因为它可以优化抽水压力以在最短的时间内达到给定的穿透长度,并具有可接受的裂缝膨胀率。这种方法是定制灌浆工程的重要一步。

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