Long-range hydrodynamic response of particulate liquids and liquid-laden solids

被引:10
作者
Diamant, Haim [1 ]
机构
[1] Tel Aviv Univ, Raymond & Beverly Sackler Fac Exact Sci, Sch Chem, IL-69978 Tel Aviv, Israel
关键词
D O I
10.1560/IJC.47.2.225
中图分类号
O6 [化学];
学科分类号
0703 ;
摘要
In viscous particulate liquids, such as suspensions and polymer solutions, the large-distance steady-state flow due to a local disturbance is commonly described in terms of hydrodynamic screening-beyond a correlation length xi the response drops from that of the pure solvent, characterized by its viscosity eta(0), to that of the macroscopic liquid with viscosity eta > eta(0). For cases where eta >> eta(0) we show, based on general conservation arguments, that this screening picture, while being asymptotically correct, should be refined in an essential way. The crossover between the microscopic and macroscopic behaviors occurs gradually over a wide range of distances, xi < r < (eta / eta(0))(1/2)xi. In liquid-laden solids, such as colloidal glasses, gels, and liquid-filled porous media, where eta -> infinity this intermediate behavior takes over the entire large-distance response. The intermediate flow field, arising from the effect of mass displacement rather than momentum diffusion, has several unique characteristics: (i) It has a dipolar shape with l/r(3) spatial decay, negative transverse components, and vanishing angular average. (ii) Its amplitude depends on the liquid properties through eta(0), and xi alone; thus, in cases where xi is fixed by geometry (e.g., for particulate liquids tightly confined in solid matrices), the large-distance response is independent of particle concentration. (iii) The intermediate field builds up non-diffusively, with a distance-independent relaxation rate, making it dominant at large distances before steady state has been reached. We demonstrate these general properties in three model systems.
引用
收藏
页码:225 / 231
页数:7
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