000 01740nab a2200217 4500
005 20260520000317.0
008 260224s2014 xxu ing
041 _aInglés
245 0 0 _aUnsteady-state diffusion modeling of gas in coal matrix for horizontal well production
260 _a
_b
_csept. 2014
270 _a17/11/2014 ; 17/11/2014
300 _a28 p. ; 1669-1697
520 _aTranscripción del resumen del autor: In this work, an unsteady-state diffusion model was developed to describe gas transport in coal structures for horizontal well production. The model assumes unsteady-state diffusion of gas through the matrix according to Fick’s law, Darcy flow through the cleat network (natural fractures), and that gas adsorption can be described by the Langmuir equation. Then the model using Laplace integral transformation was solved. Using the new model, dimensionless-type curves for pressure-transient and rate-decline analyses were used to analyze transient transport characteristics. The differences for unsteady-state diffusion between horizontal and vertical well models and the differences for horizontal well production between unsteady-state diffusion and pseudosteady-state diffusion were specifically analyzed. Several scenarios confronting real coal beds were studied and discussed fully through simulating well production under different conditions. The research results showed that the unsteady-state diffusion model would be another choice with which to analyze well tests.
581 _a9
773 0 _tAAPG Bulletin
_g98
942 _cARTICULO
100 1 _aGuo, Jian-Chun
_954230
100 1 _aNie, Ren-Shi
_954231
100 1 _aJia, Yong-Lu
_954232
999 _c188659
_d188659