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Rheology of wet granular materials in shear flow: experiments and discrete simulations

机译:剪切流动湿颗粒材料的流变学:实验与离散模拟

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The behaviour of wet granular media in shear flow is characterized by the dependence of apparent friction μ* and solid fraction ΦS on the reduced pressure P* and the inertia number I. Reduced pressure, P*= σ22a2/F0, compares the applied normal stress σ22 on grains of diameter a to the tensile strength of contact F0 (proportional to the surface tension Γ of the liquid and the beads diameter). A specifically modified rotational rheometer is used to characterize the response of model wet granular material (beads with diameter of submillimetric range) to applied shear rate γ under controlled normal stress σ22. Discrete Element Method (DEM) simulations in 3D are carried out in parallel and numerical results are compared with experimental ones. As P* is reduced, an increase of the apparent friction coefficient μ*=σ12/σ22, measured in the critical state and in slow flows with inertial effects is observed. While the agreement between experiments and simulations is good for dry materials as well as for wet materials in the quasistatic limit (I→0), some differences appear at finite I, for which some possible origins are discussed.
机译:剪切流中的湿粒状介质的行为的特征在于表观摩擦μ*和固体级分φs对减压P *和惯性数I.减压,P * =Σ22A2/ F0比较所施加的正常应力σ22在直径A的晶粒上的曲线F0的拉伸强度(与液体和珠子直径的表面张力γ成比例)。特异性修改的旋转流变仪用于表征模型湿颗粒材料(具有亚颌下范围的珠子的珠子)的响应,以在受控正常应力σ22下施加剪切速率γ。三维中的离散元素方法(DEM)模拟并行进行,并将数值结果与实验结果进行比较。由于P *减小,观察到在临界状态下测量的表观摩擦系数μ* =Σ12/Σ22增加,并且具有惯性效应的慢速流动。虽然实验和模拟之间的协议适用于干材料以及诸如Quasistatic Limit的湿材料(I→0),但有限I的一些差异出现,其中一些可能的起源是讨论的。

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