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Mass-loss effects on the flow behavior in broken argillaceous red sandstone with different particle-size distributions

机译:具有不同粒度分布的破碎骨质红砂岩中流动性的大规模损失影响

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Under the action of corrosion, abrasion and erosion of surface water and groundwater, the fine rock particles migrate with water and are gradually lose mass, which seriously deteriorates the internal structure of rock mass, causing seepage disasters. It is important to study the effect of mass loss on the seepage property of a broken rock to understand its engineering behavior. Consequently, an experimental system for testing the seepage property of broken rock under the condition of mass loss was designed, and it also could provide the variations of mass loss and porosity. A genetic algorithm of non-Darcy flow was constructed to characterize the seepage properties of broken rock. The effects of mass conservation and mass loss on the seepage properties of broken rock with different Talbot gradation indices were discussed. The results showed that the migration of fine particles in the internal structure of broken rock caused the fluctuations of permeability parameters even in the case of mass conservation. Under the condition of mass loss, the pore structure and framework structure of broken rock were damaged by the gradual loss of rock particles, which resulted in the gradual variation in the seepage property of broken rock. The broken rock specimen with smaller Talbot gradation index lost more easily rock particles. And the permeability of the broken rock specimen under mass loss was negatively correlated with the Talbot gradation index. It indicated that the broken rock with the finer particles caused more easily an unstable structure. (C) 2019 Academie des sciences. Published by Elsevier Masson SAS. All rights reserved.
机译:在腐蚀,表面水和地下水的腐蚀和腐蚀的作用下,细岩颗粒与水迁移,逐渐减少质量,这严重降低了岩体的内部结构,导致渗流灾害。研究质量损失对破碎岩石渗流性质的影响非常重要,以了解其工程行为。因此,设计了一种用于测试破碎岩石条件下破碎岩石的渗流性能的实验系统,也可以提供质量损失和孔隙率的变化。构建了非达西流动的遗传算法,以表征破碎岩石的渗流性质。探讨了大规模保护和质量损失对具有不同Talbot渐变指标的破碎岩体渗流性质的影响。结果表明,即使在大规模守恒的情况下,也导致岩石内部结构中细颗粒的迁移导致渗透性参数的波动。在质量损失的条件下,破碎岩石的孔结构和骨架结构受到岩石颗粒的逐渐丧失损坏,导致破碎岩石的渗流性能逐渐变化。破碎的岩石标本,具有较小的塔尔巴托灰度指数损失更容易岩石颗粒。在质量损失下破碎的岩石样本的渗透性与Talbot渐变指数负相关。它表明,破碎的岩石具有更精细的颗粒,导致更容易不稳定的结构。 (c)2019年Academie Des Sciences。由Elsevier Masson SA出版。版权所有。

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