Modelling slurry flowing and analyzing grouting efficiency under hydro-mechanical coupling using numerical manifold method

泥浆 断裂(地质) 岩土工程 结束语(心理学) 联轴节(管道) 岩体分类 地质学 计算机模拟 水力压裂 流变学 断裂力学 材料科学 机械 复合材料 物理 经济 市场经济
作者
Xuewei Liu,Haixiao Chen,Quansheng Liu,Bin Liu,Jun He
出处
期刊:Engineering Analysis With Boundary Elements [Elsevier BV]
卷期号:134: 66-78 被引量:14
标识
DOI:10.1016/j.enganabound.2021.09.030
摘要

Grouting is a typical HM (hydro-mechanical) coupling process between slurry and rock and widely used in underground engineering to reinforce the strength of fractured rock mass. In present work, based on numerical manifold method (NMM), an NMM-HM grouting model is proposed to investigate slurry flowing and analyze grouting efficiency. In this NMM-HM grouting model, the slurry flows in fractures and grouting pressure can cause fracture aperture variation and fracture propagation. Then, two numerical examples for central embedded crack and hydraulic fracturing are adopted to validate the presented model. Furthermore, grouting simulations are conducted on a multi-crack and a roadway with fracture networks. Results show that Grouting pressure in fractures can increase fracture aperture, which is beneficial for grouting efficiency. However, fluid pressure could also cause closure of neighboring fractures or even fracture propagation and failure of rock mass, which will weaken grouting effectiveness. Therefore, the coupled HM impacts on grouting efficiency and grouting pressure should be seriously considered and optimized to achieve the expected grouting performance in practice.

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