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Tidal Effect on Grouting in Karst Fracture with Flowing Water: Experimental Investigation and Its Application

机译:流动水岩溶裂缝注浆的潮汐效应实验研究及其应用

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摘要

To address the problem on grouting control of water inflow disaster in coastal area, a caisson- type grouting experimental system of a single fracture in flowing water under tidal action was developed independently. Through the tide simulation system, the tidal action of different intensity and frequency was effectively described. Tide simulation system, fracture system, grouting system, water supply system and information monitoring system were combined to realize the visualization of the whole grouting process under tidal action. Furthermore, the grouting experiments of a plate fracture under different tidal action were developed and the blocking mechanism under tidal action was revealed. The conclusions were as follow: 1) Under constant water head, the slurry had three typical diffusion patterns, which were circular distribution, double U-shaped distribution and elliptical distribution respectively. 2) Under tidal action, the pressure showed a periodic fluctuation growth, and the growth rate slowed down with the increase of fracture aperture. 3) Strong tidal action would promote the diffusion of and increased the outflow amount of slurry, which was not conducive to grouting. Based on the water inflow treatment project of limestone mine in Guangxi, Through the field grouting tests, the 2# water inflow point was blocked. The research results have a certain reference value for the technology optimization of grouting engineering in coastal areas.
机译:针对沿海地区水流灾害的注浆控制问题,独立研制了潮汐作用水单裂缝沉箱式注浆试验系统。通过潮汐模拟系统,有效描述了不同强度和频率的潮汐作用。结合潮汐模拟系统、裂缝系统、注浆系统、供水系统和信息监测系统,实现潮汐作用下注浆全过程的可视化。进一步开展了不同潮汐作用下板块裂缝的注浆试验,揭示了潮汐作用下的阻塞机理。结果表明:1)在恒定水头下,浆液具有3种典型的扩散模式,分别为圆状分布、双U型分布和椭圆形分布。2)在潮汐作用下,压力呈周期性波动增长,随着裂缝孔径的增大,增速减慢。3)强烈的潮汐作用会促进泥浆的扩散,增加浆液的流出量,不利于灌浆。基于广西石灰石矿进水处理项目,通过田间注浆试验,堵塞了2#进水点。研究结果对沿海地区注浆工程技术优化具有一定的参考价值。

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