DocumentCode :
2412330
Title :
Research on Method of Gas Well Production Analysis in Edge-Water Gas Reservoir
Author :
Luo, Jianning ; Duan, Yonggang ; Shuai, Chungang
fYear :
2011
fDate :
21-23 Oct. 2011
Firstpage :
649
Lastpage :
651
Abstract :
Gas well production analysis is a method that can calculate formation parameters like permeability, skin factor, half length of fracture, single well controlled radius and single well controlled reserves through fitting and analyzing towards daily production data and decline type curves. Now, this analysis method that has been common used is mainly Arps[1], Fetkovich[2], Blasingame[3], Agarwal-Garder(AG)[4], Normalized Pressure Integral (N.P.I)[5] and FMB[6]. Among them, Blasingame method considers material balance pseudotime and pseudopressure that make the analysis results more accurate. This paper takes method of Blasingame production analysis in edge-water gas reservoirs as the main object of research. It starts from building the model of two phase seepage of gas-water in this kind of reservoir. By calculating, it obtains solution of the model above. On this basis, programming in C language and applying Stehfest[7] method to inverse the solution of the equation in Laplace space. And then, it gets a series of data of dimensionless time and its corresponding dimensionless production in the real space. Further, it deals with these data in Excel. Finally, it obtains the Blasingame type curves of gas-water co-production well in this reservoir. This paper provides a theoretical basis to production analysis of edge-water gas reservoir.
Keywords :
Equations; Materials; Mathematical model; Permeability; Production; Reservoirs; Blasingame curve; edge-water gas reservoir; material balance pseudotime; production analysis; pseudopressure; seepage of gas-water;
fLanguage :
English
Publisher :
ieee
Conference_Titel :
Computational and Information Sciences (ICCIS), 2011 International Conference on
Conference_Location :
Chengdu, China
Print_ISBN :
978-1-4577-1540-2
Type :
conf
DOI :
10.1109/ICCIS.2011.231
Filename :
6086281
Link To Document :
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