Matrix-fracture transfer shape factor for modeling flow of a compressible fluid in dual-porosity media

被引:75
|
作者
Ranjbar, Ehsan [1 ]
Hassanzadeh, Hassan [1 ]
机构
[1] Univ Calgary, Dept Chem & Petr Engn, Schulich Sch Engn, Calgary, AB T2N 1N4, Canada
关键词
Shape factor; Fractured porous media; Matrix-fracture transfer function; Compressible fluids; Single-phase gas flow; THEORETICAL DEVELOPMENT;
D O I
10.1016/j.advwatres.2011.02.012
中图分类号
TV21 [水资源调查与水利规划];
学科分类号
081501 ;
摘要
The matrix-fracture transfer shape factor is one of the important parameters in the modeling of fluid flow in fractured porous media using a dual-porosity concept. Warren and Root [36] introduced the dual-porosity concept and suggested a relation for the shape factor. There is no general relationship for determining the shape factor for a single-phase flow of slightly compressible fluids. Therefore, different studies reported different values for this parameter, as an input into the flow models. Several investigations have been reported on the shape factor for slightly compressible fluids. However, the case of compressible fluids has not been investigated in the past. The focus of this study is, therefore, to find the shape factor for the single-phase flow of compressible fluids (gases) in fractured porous media. In this study, a model for the determination of the shape factor for compressible fluids is presented; and, the solution of nonlinear gas diffusivity equation is used to derive the shape factor. The integral method and the method of moments are used to solve the nonlinear governing equation by considering the pressure dependency of the viscosity and isothermal compressibility of the fluid. The approximate semi-analytical model for the shape factor presented in this study is verified using single-porosity, fine-grid, numerical simulations. The dependency of the shape factor on the gas specific gravity, pressure and temperature are also investigated. The theoretical analysis presented improves our understanding of fluid flow in fractured porous media. In addition, the developed matrix-fracture transfer shape factor can be used as an input for modeling flow of compressible fluids in dual-porosity systems, such as naturally fractured gas reservoirs, coal-bed methane reservoirs and fractured tight gas reservoirs. (C) 2011 Elsevier Ltd. All rights reserved.
引用
收藏
页码:627 / 639
页数:13
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