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Numerical Simulation of Slurry Diffusion in Fractured Rocks Considering a Time-Varying Viscosity

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摘要 To analyze the effects of a time-varying viscosity on the penetration length of grouting,in this study cement slur-ries with varying water-cement ratios have been investigated using the Bingham’sfluidflow equation and a dis-crete element method.Afluid-solid coupling numerical model has been introduced accordingly,and its accuracy has been validated through comparison of theoretical and numerical solutions.For different fracture forms(a single fracture,a branch fracture,and a fracture network),the influence of the time-varying viscosity on the slurry length range has been investigated,considering the change in the fracture aperture.The results show that under different fracture forms and the same grouting process conditions,the influence of the time-varying viscosity on the seepage length is 0.350 m.
出处 《Fluid Dynamics & Materials Processing》 EI 2024年第2期401-427,共27页 流体力学与材料加工(英文)
基金 supported by the National Natural Science Foundation of China(Grant Numbers:U22A20234,42277170) the Key Research and Development Project of Hubei Province(Grant Number:2020BCB073).
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