BIOFILM GROWTH AND THE RELATED CHANGES IN THE PHYSICAL-PROPERTIES OF A POROUS-MEDIUM .2. PERMEABILITY

被引:177
作者
TAYLOR, SW [1 ]
MILLY, PCD [1 ]
JAFFE, PR [1 ]
机构
[1] PRINCETON UNIV,DEPT CIVIL ENGN & OPERAT RES,PRINCETON,NJ 08544
关键词
D O I
10.1029/WR026i009p02161
中图分类号
X [环境科学、安全科学];
学科分类号
08 ; 0830 ;
摘要
Growth of a biofilm in a porous medium reduces the total volume and the average size of the pores. The change in the pore size distributions is easily quantified when certain geometric assumptions are made. Existing models of permeability or of relative permeability can be manipulated to yield estimates of the resulting reduction in permeability as a function of biofilm thickness. The associated reductions in porosity and specific surface can be estimated as well. Based on a sphere model of the medium, the Kozeny‐Carman permeability model predicts physically realistic results for this problem. Using a cut‐and‐random‐rejoin‐type model of the medium, the permeability model of Childs and Collis‐George yields qualitatively reasonable results for this problem, as does a generalization of the relative permeability model of Mualem. Permeability models of Kozeny‐Carman and of Millington and Quirk lead to unrealistic results for a cut‐and‐random‐rejoin‐type medium. The Childs and Collis‐George and the Mualem models predict that the permeability reduction for a given volume of biomass is greatest when the porous medium has uniform pore sizes. Copyright 1990 by the American Geophysical Union.
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页码:2161 / 2169
页数:9
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