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New Method to Evaluate Antiwashout Performance of Grout for Preventing Water-Inrush Disasters

机译:评价灌浆防喷水性能的新方法

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摘要

Grouting is frequently used to prevent water-inrush disasters in tunnels and underground engineering. However, complex groundwater environment can significantly influence the grouting effect, especially the antiwashout performance. To accurately evaluate the antiwashout performance of grouting materials, a new method is proposed to design specific measurement devices and measurement procedures. This new method allows direct simulation of the injection of grout into water with different flow velocities. Thus, the antiwashout performance of grout under the scouring and diluting action of flowing water can be evaluated quantitatively. The grout retention ratio (GRR) is defined to quantitatively determine the antiwashout performance of grout. Taking widely used cement-sodium silicate (C-S) grout and polyurethane grout as test samples, a series of tests with different mixing ratios and water flow velocity conditions was carried out. The feasibility of the new method was evaluated in these tests and the influences of the grout mixing ratio and water flow velocity on the GRR were discussed. By analyzing the experimental data, a polynomial regression model for C-S grout was derived to provide guidance for optimizing its antiwashout performance. Compared with C-S grout, polyurethane grout has much better antiwashout performance at higher water flow velocity, indicating its advantage in controlling the flow rate of water and preventing water-inrush disasters.
机译:灌浆通常用于防止隧道和地下工程中的注水灾害。但是,复杂的地下水环境会显着影响注浆效果,尤其是抗冲洗性能。为了准确评估灌浆材料的抗冲刷性能,提出了一种新的方法来设计特定的测量设备和测量程序。这种新方法可以直接模拟以不同的流速将水泥浆注入水中。因此,可以定量地评估在流动的水的冲刷和稀释作用下的灌浆的抗冲洗性能。灌浆保留率(GRR)的定义是定量确定灌浆的抗冲洗性能。以广泛使用的水泥硅酸钠(C-S)灌浆和聚氨酯灌浆为测试样品,进行了一系列不同混合比和水流速条件的测试。在这些测试中评估了该新方法的可行性,并讨论了灌浆混合比和水流速对GRR的影响。通过分析实验数据,推导了C-S灌浆的多项式回归模型,为优化其抗冲刷性能提供了指导。与C-S灌浆相比,聚氨酯灌浆在较高的水流速度下具有更好的抗冲洗性能,这表明它在控制水流量和防止水浸灾害方面具有优势。

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