000 01946nab a2200217 4500
005 20260520001745.0
008 260224s2008 xxu
245 0 0 _aA model for the flow of gas mixtures in adsorption dominated dual-porosity reservoirs incorporating multi-component matrix diffusion
_bPart II numerical algorithm and application examples
260 _a
_b
_cSept. 2008
270 _a2009-04-14 ; 2009-04-14
300 _a9 p. ; 93-101
520 _aTranscripción del resúmen publicado por el autor: In part one of this study a matrix-fracture transfer function was presented for multi-species gas migration in dual-porosity media. This second part presents the numerical implementation of this transfer function. Since the transfer function proposed in Part 1 is of an integral form with history-dependency and the resultant flow equations become a set of integro-(partial) differential equations, an algorithm is developed here for these equations. The algorithm is formulated using a step-by-step finite difference procedure combined with a fully implicit quadrature scheme. The quadrature scheme is based on the modified trapezoidal method and is designed for variable time-step size. The transfer function and the algorithm developed are incorporated into the commercial gas reservoir simulator SIMED II, and three examples are illustrated here. Example 1 demonstrates the performance and feasibility of the algorithm in applications, and Example 2 discusses the effect of higher order terms as well as its influence on flow profiles. The impact of mutual-diffusivity to flow profiles and well performance is illustrated in Example 3.
581 _a3-4
773 0 _tJournal of Petroleum Science & Engineering
_g62
942 _cARTICULO
100 1 _aLu, Meng
_938682
650 0 _aReservorios de gas
_937082
650 0 _aPorosidad
_955
650 0 _aSimulación de reservorios
_91795
999 _c169530
_d169530