3D reservoir geologic modeling and potential tapping in glutenite reservoir :A case study from conglomerate reservoirs in Karamay Oilfield

  • DI Lingjun ,
  • XIE Guangcheng
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  • Xi’an Shiyou University, Xi’an 710065, China

Online published: 2007-12-15

Abstract

The heterogeneity of conglomerate reservoir is studied by 3D geologic modeling. The main potential tapping and potential zone are illustrated. The 3D geologic modeling includes reservoir structure modeling, sedimentary microfaciesmodeling and reservoir parameter modeling. The structure modeling achieves the intercalibration process of fault-point data and individual layer data derived from seismic interpretation and drilling. Sedimentary microfacies modeling displays the reservoir volume, geometric shape and 3D distribution. Reservoir parameter modeling carries out the reservoir parameter model constrained by facies belt distribution range, original reservoir data and 3D geologic interpretation. The result shows that the modeling overcomes the disadvantage caused by various data with different resolution, optimizes the geologic modeling for heterogeneity conglomerate reservoir suitable for practical production, and indicates the potential zone and reservoir range controlled by favorable sedimentary facies belt.

Cite this article

DI Lingjun , XIE Guangcheng . 3D reservoir geologic modeling and potential tapping in glutenite reservoir :A case study from conglomerate reservoirs in Karamay Oilfield[J]. Lithologic Reservoirs, 2007 , 19(4) : 99 -105 . DOI: 10.3969/j.issn.1673-8926.2007.04.018

References

[ 1] 宋子齐, 王浩, 赵磊, 等.克拉玛依油田八区克上组砾岩油藏参数及剩余油分布[ J] .大庆石油地质与开发, 2003, 22( 3) : 28- 31.
[ 2] 李庆昌, 吴虻, 赵立春, 等. 砾岩油田开发[M] .北京: 石油工业出版社, 1997: 153- 183.
[ 3] 宋子齐.测井多参数的地质应用[M] .西安: 西北工业大学出版社, 1993: 70- 108.
[ 4] 陈利.平湖油气田花港组油藏储层三维模型建立[ J] .油气地质与采收率, 2006, 13( 3) : 22- 24.
[ 5] 陈恭洋.碎屑岩油气储层随机建模[M] .北京: 地质出版社,2000: 10- 68.
[ 6] Deutsch C V. Geostatistical reservoir modeling[M] . London: Oxford University Press, 2002.
[ 7] Lany P, Rowbothan P, Dubrule D, et al.From seismic to reservoir properties with geostatistical inversion[ J] .SPE, 1999, 2( 4) : 334-340.
[ 8] 尤少燕, 时应敏, 乔玉雷.利用多尺度资料进行油藏地质建模———以樊124区块为例[ J] .油气地质与采收率, 2005, 12( 3) :15- 17.
[ 9] 侯青, 赵健, 回春, 等.惠民凹陷构造应力场与油气运聚模拟分析[ J] . 油气地质与采收率, 2006, 13( 1) : 62- 65.
[ 10] 宋子齐, 杨金林, 潘玲黎, 等.利用粒度分析资料研究砾岩储层有利沉积相带[ J] .油气地质与采收率, 2005, 12( 6) : 16- 18.
[ 11] 张永庆, 代开梅, 陈舒薇.砂质辫状河储层三维地质建模研究[ J] .大庆石油地质与开发, 2002, 21( 5) : 34- 36.
[ 12] 胡光义, 古莉, 王福利.礁灰岩特征和块状体储层建模方法探讨[ J] .岩性油气藏, 2007, 19(2) : 90- 92.
[ 13] 宋子齐, 李亚玲, 杨金林, 等.非均质砾岩储层有利沉积相带与油气分布及生产动态的关系[J] .特种油气藏, 2005, 12(4) : 15- 17.
[ 14] 宋子齐, 潘玲黎, 杨金林, 等.非均质砾岩储层有利沉积相带与油气储量分布[ J] .西安石油大学学报, 2005, 20( 4) : 6- 10.
[ 15] Aguilera R, Aguilera M S. The integration of capillary pressure and pickett plots for determination of flowunits and reservoir containers[R] .SPE71725, 2001: 1- 13.
[ 16] 隋淑玲. 河流相储层三维流动单元模型建立———以孤东油田七区馆上段为例[ J] .油气地质与采收率, 2005, 12( 3) : 12- 14.
[ 17] 张树林, 温到明, 夏斌, 等.崖城13- 1气田储层三维静态模型建立[ J] .油气地质与采收率, 2005, 12( 3) : 9- 11.
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