首页> 外文OA文献 >Computer simulation studies of dense suspension rheology. Computational studies of model sheared fluids; elucidation, interpretation and description of the observed rheological behaviour of simple colloidal suspensions in the granulo-viscous domain by Non-Equilibrium Particulate Dynamics.
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Computer simulation studies of dense suspension rheology. Computational studies of model sheared fluids; elucidation, interpretation and description of the observed rheological behaviour of simple colloidal suspensions in the granulo-viscous domain by Non-Equilibrium Particulate Dynamics.

机译:稠密悬浮液流变学的计算机模拟研究。模型剪切流体的计算研究;非平衡颗粒动力学对粒状粘稠域中简单胶体悬浮液的流变行为进行了阐明,解释和描述。

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摘要

Rheological properties of idealised models which exhibit all the non-Newtonian flow phenomenology commonly seen in dense suspensions are investigated by particulate-dynamics computer-simulations. The objectives of these investigations are: (i) to establish the origins of various aspects of dense suspension rheology such as shear-thinning, shear thickening and dilatancy; (ii) to elucidate the different regions of a typical dense suspension rheogram by examining underlying structures and shear induced anisotropies in kinetic energy, diffusivity and pressure; (iii) to investigate the scaling of the simplest idealised model suspension; i.e. the hard-sphere model in Newtonian media and its relationship to the isokinetic flow curves obtained through non-equilibrium molecular dynamics (NEMD) simulations; (iv) to preliminarily determine the effect of perturbations present in all real colloidal suspensions, namely particle size polydispersity and a slight 'softness' of the interparticle potential. Non-equilibrium isokinetic simulations have been performed upon ;systems of particles interacting through the classical hard-sphere potential and a perturbation thereof, in which the hard-core is surrounded by a 'slightly soft' repulsive skin. The decision to base the present work upon isokinetic studies was made in order to obtain a better under- standing of suspension rheology by making a direct connection with previous NEMD studies of thermal systemst(93). These studies have shown that the non-linear behaviour exhibited by these systems under shear is atttributable to a shear-induced perturbation of the equilibrium phase behaviour. Theudpresent study shows this behaviour to correspond to the high shear regionudof the generalised suspension flow curve.
机译:通过颗粒动力学计算机模拟研究了理想模型的流变特性,该模型具有在稠密悬浮液中常见的所有非牛顿流现象。这些研究的目的是:(i)确定致密悬浮液流变学各个方面的起源,例如剪切稀化,剪切增稠和膨胀。 (ii)通过检查动能,扩散率和压力中的下伏结构和剪切引起的各向异性来阐明典型的稠密悬浮流变图的不同区域; (iii)研究最简单的理想化模型悬架的比例;即牛顿介质中的硬球模型及其与通过非平衡分子动力学(NEMD)模拟获得的等速流动曲线的关系; (iv)初步确定所有真实胶体悬浮液中存在的扰动效应,即粒度多分散性和粒子间电势的轻微“柔软”。已对通过经典硬球势及其微扰相互作用的粒子系统进行了非平衡等速动力学仿真,其中硬核被“略软”的排斥性皮肤包围。做出基于等速动力学研究的当前工作的决定,是为了通过与以前的热系统NEMD研究直接相关来获得对悬浮液流变学的更好的理解[93]。这些研究表明,这些系统在剪切作用下表现出的非线性行为归因于剪切作用引起的平衡相行为的扰动。这项最新的研究表明这种行为与广义悬浮液流动曲线的高剪切区相对应。

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    Hopkins Alan John;

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  • 年度 1989
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  • 正文语种 en
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