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Protection of the transport infrastructure from influence of landslides by suspension grouting

机译:保护基础设施免受悬架灌浆的影响

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Construction and operation of transport infrastructure in the mountainous areas is an extremely important task. The complex structural-tectonic conditions with highly broken relief contribute to the development of modern landslide processes. Unexpected landslide activity carries a significant threat to both the road and transport infrastructure, as well as the life and health of people who use it. There are now known many different methods.for protection of transport infrastructure by landslides, but the classic methods are not sufficiently effective to ensure reliable work of roads in mountainous areas and the considerable material costs involved are not justified. The reason for this is often the heterogeneity of a soil in composition and properties. A solution to this problem is to use suspension grouting to stabilize the landslide body. It was found that the injection of cement slurries with high water-cement ratio is only possible in weathered mudstone with cracks width> 10 mm, with injection pressure less than 6 arm. In this case, there is a uniform filling of cracks at a distance of 1, 5-2,0 meters from the injector. When the injection pressure increase occurs the hydraulic fracturing with the output hydraulic cement slurry to the surface. Processing of dense unweathered mudstone by suspension of colloidal silica with a concentration of 29% is possible to obtain a solid array with high strength characteristics that do not change even after 10 cycles of soaking/drying.
机译:山区运输基础设施的建设和运营是一项非常重要的任务。复杂的结构构造条件具有高度破裂的缓解有助于发展现代滑坡过程。意外的滑坡活动对道路和运输基础设施进行重大威胁,以及使用它的人的生命和健康。目前已知许多不同的方法。通过山体滑坡保护运输基础设施,但经典的方法对山区的可靠性工作并没有足够有效,并且涉及的相当大的材料成本并不合理。其原因通常是成分和性质中土壤的异质性。解决这个问题的解决方案是使用悬架灌浆来稳定滑坡体。发现,在风化的泥泥岩中,裂缝宽度> 10mm的风化泥岩,注射压力小于6臂,只能进入水泥泥浆的水泥浆料。在这种情况下,距离注射器的距离为1,5-20米的裂缝均匀填充。当注射压力增加发生时,用输出液压水泥浆料到表面的液压压裂。通过浓缩浓度为29%的胶体二氧化硅处理致密的未经调节的泥泥晶体,可以获得具有高强度特性的固体阵列,即使在10次均制/干燥后也不会改变。

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