Impact of Noncondensable Gas on Performance of Steam-Assisted Gravity Drainage

被引:21
作者
Al-Murayri, M. T. [1 ]
Harding, T. G. [1 ]
Maini, B. B. [1 ]
机构
[1] Univ Calgary, Schulich Sch Engn, Dept Chem & Petr Engn, Calgary, AB T2N 1N4, Canada
来源
JOURNAL OF CANADIAN PETROLEUM TECHNOLOGY | 2011年 / 50卷 / 7-8期
关键词
RECENT THEORETICAL DEVELOPMENTS; OIL VISCOSITY HETEROGENEITY; PUSH SAGP; TAR SAND; RESERVOIRS;
D O I
10.2118/148943-PA
中图分类号
TE [石油、天然气工业]; TK [能源与动力工程];
学科分类号
0807 ; 0820 ;
摘要
This study investigates, by means of numerical modelling, the impacts of naturally occurring, as well as continuously coinjected and intermittently coinjected noncondensable gas (NCG), at different stages of the steam-assisted gravity-drainage (SAGD) process. The CMG Builder software was used to construct a homogeneous 2D baseline model based on generic Athabasca-type reservoir properties and well configuration. A fluid-component model was generated using the CMG WinProp package for modelling the phase behaviour and properties of reservoir fluids. This fluid-component model was modified to incorporate manually calculated K-values for the gas-water and the gas-bitumen phase equilibria. The modified fluid model was then incorporated into the baseline model and the CMG STARS thermal reservoir simulator. The simulation results of this study show that methane coinjection along with steam is generally not beneficial. Although it can reduce the heat loss to the overburden to some extent, the reduction in oil-drainage rate and total oil recovery negates the benefits of such heat-loss reduction. The poor performance of NCG addition to SAGD results from the tendency for the NCG to remain in the vicinity of the steam chamber and reduce heat transfer into the cold bitumen at the edges of the steam chamber, thereby impeding steam-chamber growth. Accurate modelling of NCG addition to steam in SAGD is highly dependent on the availability of appropriate gas-solubility data. NCG with steam may perform better compared with steam-only injection in SAGD if methane coinjection were investigated using a heterogeneous model in which SAGD is affected adversely by the presence of reservoir heterogeneities in the form of shale barriers, inclined heterolithic strata (IHS), and steam-thief zones.
引用
收藏
页码:46 / 54
页数:9
相关论文
共 15 条
[1]  
ALMURAYRI MT, 2011, J CAN PET TECHNOL, V50
[2]   SAGD comes of age! [J].
Butler, R .
JOURNAL OF CANADIAN PETROLEUM TECHNOLOGY, 1998, 37 (07) :9-12
[3]   The steam and gas push (SAGP) [J].
Butler, R .
JOURNAL OF CANADIAN PETROLEUM TECHNOLOGY, 1999, 38 (03) :54-61
[4]   Steam and gas push (SAGP) - 4; Recent theoretical developments and laboratory results using layered models [J].
Butler, RM ;
Jiang, Q ;
Yee, CT .
JOURNAL OF CANADIAN PETROLEUM TECHNOLOGY, 2001, 40 (01) :54-61
[5]   Steam and gas push (SAGP)-3; Recent theoretical developments and laboratory results [J].
Butler, RM ;
Jiang, Q ;
Yee, CT .
JOURNAL OF CANADIAN PETROLEUM TECHNOLOGY, 2000, 39 (08) :51-60
[6]  
CARD CC, 2006, CAN INT PETR C 57 AN
[7]  
*CMG, 2008, STARS US MAN VERS 20
[8]   The impact of oil viscosity heterogeneity on the production characteristics of tar sand and heavy oil reservoirs. Part II: Intelligent, geotailored recovery processes in compositionally graded reservoirs [J].
Gates, I. D. ;
Adams, J. ;
Larter, S. .
JOURNAL OF CANADIAN PETROLEUM TECHNOLOGY, 2008, 47 (09) :40-49
[9]   Optimization of steam assisted gravity drainage in McMurray reservoir [J].
Gates, I. D. ;
Chakrabarty, N. .
JOURNAL OF CANADIAN PETROLEUM TECHNOLOGY, 2006, 45 (09) :54-62
[10]  
*JACOS, 2009, HANG SAGD DEM UNPUB