Numerical simulation of a shear-thinning fluid through packed spheres

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초록

Flow behaviors of a non-Newtonian fluid in spherical microstructures have been studied by a direct numerical simulation. A shear-thinning (power-law) fluid through both regular and randomly packed spheres has been numerically investigated in a representative unit cell with the tri-periodic boundary condition, employing a rigorous three-dimensional finite-element scheme combined with fictitious-domain mortar-element methods. The present scheme has been validated for the classical spherical packing problems with literatures. The flow mobility of regular packing structures, including simple cubic (SC), body-centered cubic (BCC), face-centered cubic (FCC), as well as randomly packed spheres, has been investigated quantitatively by considering the amount of shear-thinning, the pressure gradient and the porosity as parameters. Furthermore, the mechanism leading to the main flow path in a highly shear-thinning fluid through randomly packed spheres has been discussed.

키워드

flows in porous media; shear-thinning fluid; mobility and permeability; POWER-LAW FLUIDS; PERIODIC ARRAYS; POROUS-MEDIA; FLOW; PERMEABILITY; FIBER; MODEL
제목
Numerical simulation of a shear-thinning fluid through packed spheres
저자
Liu, Hai Long; Moon, Jong Sin; Hwang, Wook Ryol
DOI
10.1007/s13367-012-0036-8
발행일
2012-12
유형
Article
저널명
Korea-Australia Rheology Journal
권
24
호
4
페이지
297 ~ 306