Non-Newtonian Flow in a Variable Aperture Fracture

被引:0
|
作者
Vittorio Di Federico
机构
[1] DISTART,
[2] Idraulica,undefined
[3] Universit di Bologna,undefined
关键词
fracture; aperture; heterogeneity; non-Newtonian; power-law fluid; groundwater; transmissivity; nonlinear seepage;
D O I
10.1023/A:1006512822518
中图分类号
学科分类号
摘要
The transmissivity of a variable aperture fracture for flow of a non-Newtonian, purely viscous power-law fluid with behavior index n is studied. The natural logarithm of the fracture aperture is considered to be a two-dimensional, spatially homogeneous and correlated Gaussian random field. We derive an equivalent fracture aperture for three flow geometries: (1) flow perpendicular to aperture variation; (2) flow parallel to aperture variation; (3) flow in an isotropic aperture field. Under ergodicity, results are obtained for cases 1 and 2 by discretizing the fracture into elements of equal aperture and assuming that the resistances due to each aperture element are, respectively, in parallel and in series; for case 3, the equivalent aperture is derived as the geometric mean of cases 1 and 2. When n=1 all our expressions for the equivalent aperture reduce to those derived in the past for Newtonian flow and lognormal aperture distribution. As log-aperture variance increases, the equivalent aperture is found to increase for case 1, to decrease for case 2, and to be a function of flow behavior index n for case 3.
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页码:75 / 86
页数:11
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