Estimation of Shale Gas Reserves: A Modified Material Balance Equation and Numerical Simulation Study

被引:2
作者
Abdel Azim, Reda [1 ]
Alatefi, Saad [2 ]
Alkouh, Ahmad [2 ]
机构
[1] Amer Univ Kurdistan, Petr Engn Dept, Sumel 42003, Iraq
[2] PAAET, Coll Technol Studies, Dept Petr Engn Technol, POB 42325, Kuwait 70654, Kuwait
关键词
shale gas; material balance equation; straight line; adsorbed gas; matrix shrinkage; COALBED METHANE RESERVOIRS; LONGMAXI FORMATION; TRANSPORT; MATRIX; PERMEABILITY; ROCKS; MODEL; AREA;
D O I
10.3390/pr11061746
中图分类号
TQ [化学工业];
学科分类号
0817 ;
摘要
This study presents a comprehensive material balance equation (MBE) to estimate the reserve of shale gas reservoirs including free and adsorbed gas volume. The presented material balance equation takes into account the effect of stress change, matrix shrinkage, water volume production and influx, and critical desorption pressure. The material balance equation is converted into a linear relationship between the reservoir production and expansion parameters used during the derivation procedures that include rock-fluid properties and production history data. The proposed straight line reserve evaluation technique yields a slope of original free and absorbed gas in organic matrix, while the y-intercept yields the volume of original free gas in the in-organic matrix. A field case study of shale gas located in Australia is presented. Results show that the proposed MBE and the corresponding straight line reserve evaluation technique are rational and competent in estimating the free gas and adsorbed gas volumes accurately with error less than 6% compared to the numerical simulation model presented in this study using an in-house simulator based on finite element technique and FORTRAN language. Hence, the presented technique in this study can be used as a quick and easy to use tool to accurately estimate the free and adsorbed gas reserves and to improve the development of the production strategies of shale gas reservoirs.
引用
收藏
页数:15
相关论文
共 32 条
[1]  
Ahmed TH., 2006, SPE ANN TECHN C EXH, DOI [10.2118/102638-MS, DOI 10.2118/102638-MS]
[2]  
Al-Qahtani M.Y., 2021, SPE MIDDLE E OIL SHO, V7, P22
[3]   Finite Element and Neural Network Models to Forecast Gas Well Inflow Performance of Shale Reservoirs [J].
Azim, Reda Abdel ;
Aljehani, Abdulrahman .
PROCESSES, 2022, 10 (12)
[4]   Thermodynamic Characteristics of the Hydrogen Sulfide Sorption Process by Ferromanganese Materials [J].
Cheremisina, Olga, V ;
Ponomareva, Maria A. ;
Bolotov, Victor A. ;
Osipov, Artyom S. ;
Sitko, Alexandr, V .
ACS OMEGA, 2022, 7 (03) :3007-3015
[5]   Geochemical characteristics of Longmaxi Formation shale gas in the Weiyuan area, Sichuan Basin, China [J].
Feng, Ziqi ;
Dong, Dazhong ;
Tian, Jinqiang ;
Qiu, Zhen ;
Wu, Wei ;
Zhang, Cong .
JOURNAL OF PETROLEUM SCIENCE AND ENGINEERING, 2018, 167 :538-548
[6]   SHRINKAGE OF COAL MATRIX WITH RELEASE OF GAS AND ITS IMPACT ON PERMEABILITY OF COAL [J].
HARPALANI, S ;
SCHRAUFNAGEL, RA .
FUEL, 1990, 69 (05) :551-556
[7]  
He Liu, 2019, Natural Gas Industry B, V6, P539, DOI [10.1016/j.ngib.2019.04.003, 10.1016/j.ngib.2019.04.003]
[8]   Elastic and shear moduli of coal measure rocks derived from basic well logs using fractal statistics and radial basis functions [J].
Karacan, C. Oezgen .
INTERNATIONAL JOURNAL OF ROCK MECHANICS AND MINING SCIENCES, 2009, 46 (08) :1281-1295
[9]   MATERIAL-BALANCE TECHNIQUES FOR COAL-SEAM AND DEVONIAN SHALE GAS-RESERVOIRS WITH LIMITED WATER INFLUX [J].
KING, GR .
SPE RESERVOIR ENGINEERING, 1993, 8 (01) :67-72
[10]   Study of the relationship between fractures and highly productive shale gas zones, Longmaxi Formation, Jiaoshiba area in eastern Sichuan [J].
Li, Yu-Feng ;
Sun, Wei ;
Liu, Xi-Wu ;
Zhang, Dian-Wei ;
Wang, Yan-Chun ;
Liu, Zhi-Yuan .
PETROLEUM SCIENCE, 2018, 15 (03) :498-509