Method for calculating flow process of single-component gas in anisotropic coal seam
An anisotropy and flow process technology, applied in computing, special data processing applications, instruments, etc., can solve problems such as inability to simulate mixed gas pressure injection to enhance coalbed methane mining, and failure to consider coalbed anisotropy
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[0036] The calculation method of the single-component gas flow process in the anisotropic coal seam of the present invention, its preferred embodiment is:
[0037] include:
[0038] The model expression of gas flow governing equation in coal is:
[0039] 2 ( C P ) ( l , m , n ) ...
specific Embodiment
[0071] Basic assumptions:
[0072] Coal contains double porosity, which are joints with larger size and pores with smaller size. The gas moves laminarly in the joints, and its motion law conforms to Darcy's law. The gas diffuses in the coal matrix, and its movement law conforms to Fick's law.
[0073] Coal only contains single-component gas, which exists in the free state in the joints and pores, and exists in the adsorbed state on the surface of the joints and pores.
[0074] The gas in the joint is a Newtonian fluid, and its motion law conforms to Newton's law of viscosity.
[0075] All physical processes of gas in coal (including laminar flow, diffusion, adsorption and desorption) are isothermal processes.
[0076] The adsorption and desorption of gas in coal conform to the Langmuir isotherm adsorption equation, and the adsorption and desorption are reversible processes.
[0077] The solid skeleton of coal is immobile and its deformation velocity is zero.
[0078] The in...
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