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Mesoscopic Simulation Study of Wall Roughness Effects in Micro-channel Flows of Dense Emulsions

机译:稠密乳液微通道流动中壁粗糙度效应的细观模拟研究

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We study the Poiseuille flow of a soft-glassy material above the jamming point, where the material flows like a complex fluid with Herschel-Bulkley rheology. Microscopic plastic rearrangements and the emergence of their spatial correlations induce cooperativity flow behavior whose effect is pronounced in presence of confinement. With the help of lattice Boltzmann numerical simulations of confined dense emulsions, we explore the role of geometrical roughness in providing activation of plastic events close to the boundaries. We probe also the spatial configuration of the fluidity field, a continuum quantity which can be related to the rate of plastic events, thereby allowing us to establish a link between the mesoscopic plastic dynamics of the jammed material and the macroscopic flow behaviour.
机译:我们研究了高于阻塞点的软玻璃质材料的泊瓦流动,该材料像具有Herschel-Bulkley流变学的复杂流体一样流动。微观塑性重排及其空间相关性的出现引起了合作性流动行为,在限制条件下其作用明显。借助密闭密实乳胶的格子Boltzmann数值模拟,我们探索了几何粗糙度在激活边界附近塑性事件激活中的作用。我们还研究了流动性场的空间配置,该连续性可能与塑性事件的发生率有关,从而使我们能够在被堵塞材料的介观塑性动力学与宏观流动行为之间建立联系。

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