Lithologic Reservoirs ›› 2008, Vol. 20 ›› Issue (1): 69-74.doi: 10.3969/j.issn.1673-8926.2008.01.012

Previous Articles     Next Articles

Migration and accumulation mechanism of sand lens reservoirs and its main controlling factors

MA Zhongliang 1, 2, ZENG Jianhui 1, 2, ZHANG Shanwen3, WANG Yongshi3,WANG Hongyu 1, 2, LIU Huimin3   

  1. 1. State Key Laboratory of Petroleum Resources and Exploration, China University of Petroleum, Beijing 102249, China; 2. Basin & Reservoir Research Center, China University of Petroleum, Beijing 102249, China; 3. Shengli Oilfield Company Ltd., Sinopec, Dongying 257051, China
  • Online:2008-03-15 Published:2008-03-15

Abstract:

Sand lens reservoir is the main type of lithologic reservoirs for increasing reserves, but its migration and accumulation mechanism is not understood well. The result of 2D physical experiment shows that the physical property of sand lens is closely related to its accumulation, and the oil saturation of sand lens reservoirs varies consistently with the change of the porosity and permeability. Oil always migrates from high potential zone to low potential zone and accumulates in the sealed low potential zone. Fluid potential determines whether sand lens can be input by oil or not. Physical properties and fluid potential are the two main controlling factors for the accumulation of sand tens reservoirs.

Key words: pore structure, fractal geometry, NMR T2 spectrum distribution, petrophysical property, low-porosity and low-permeability reservoir

[ 1] 庞雄奇, 陈冬霞, 张俊.隐蔽油气藏的概念与分类及其在实际应用中需要注意的问题[ J] .岩性油气藏, 2007, 19( 1) : 1- 8.
[ 2] Magara K. Reevalution ofmontmorillontile dehydration as cause of abnormal pressure and hydrocarbon migration[ J] . AAPG Bulletin,1975, 59: 292- 302.
[ 3] Berg R R.Capillary pressures in stratigraphic traps[ J] . AAPG Bulletin,1975, 59: 939- 956.
[ 4] MalcolmK J. Oil and gas traps, aspects of their seismostratigraphy morphology and development[M] . Oklahoma: JohnWiley&Sons,1994: 26- 30.
[ 5] 张云峰, 付广.砂岩透镜体油藏聚油机理及成藏模式[ J] .断块油气田, 2007, 7( 2) : 12- 14.
[ 6] Stainforth J G. Primary migration of hydrocarbons by diffusion through organic matter networks, and its effect on oil and gas generation[ J] . Organic Geochemistry, 1990, 16( 1) : 1- 3.
[ 7] 陈荷立.油气运移研究的有效途径[ J] .石油与天然气地质,1995, 16( 2) : 126- 130.
[ 8] 王捷, 关德范.油气生成运移聚集模型研究[M] .北京: 石油工业出版社, 1999: 198- 199.
[ 9] 曾溅辉.东营凹陷岩性油气藏成藏动力学特征[ J] .石油与天然气地质, 1998, 19( 4) : 326- 329.
[ 10] АрвеА Г. Обсудитенанефтеносноммехани3меобьектива пескаВглине[ J] .Геол. НефтииГаза, 1995, ( 2) :41 - 45.
[ 11] 陈冬霞, 庞雄奇, 姜振学.透镜体油气成藏机理研究现状与发展趋势[ J] .地球科学进展, 2002, 17( 6) : 871- 872.
[ 12] 陈冬霞, 庞雄奇, 邱楠生, 等.砂岩透镜体成藏机理[ J] .地球科学———中国地质大学学报, 2004, 29( 4) : 483- 487.
[ 13] 赵文智, 邹才能, 谷志东, 等.砂岩透镜体油气成藏机理初探[ J] .石油勘探与开发, 2007, 34( 3) : 273- 283.
[ 14] 陈章明, 张云峰, 韩有信.透镜状砂岩体聚油模拟实验及其机理分析[ J] .石油实验地质, 1998, 20( 2) : 166- 170.
[ 15] 曾溅辉, 王洪玉.层间非均质砂层石油运移和聚集的模拟实验研究[ J] .石油大学学报( 自然科学版) , 2000, 24( 4) : 108- 111.
[ 16] 姜振学, 陈冬霞, 苗胜, 等.济阳坳陷透镜状砂岩成藏模拟实验[ J] .石油与天然气地质, 2003, 24( 3) : 223- 226.
[ 17] 张善文.济阳坳陷第三系隐蔽油气藏勘探理论与实践[ J] .石油与天然气地质, 2006, 27( 6) : 731- 739.
[ 18] 李丕龙, 张善文, 宋国奇, 等.断陷盆地隐蔽油气藏形成机制———以渤海湾盆地济阳坳陷为例[ J] .石油实验地质, 2004, 26( 1) :3- 10.
[ 19] 刘震, 陈艳鹏, 赵阳, 等.陆相断陷盆地油气藏形成控制因素及分布规律概述[ J] .岩性油气藏, 2007, 19( 2) : 121- 127.
[ 20] 曾溅辉. 正韵律砂层中渗透率级差对石油运移和聚集影响的模拟实验研究[ J] .石油勘探与开发, 2000, 27( 4) : 102- 105.
[ 21] 曾溅辉, 王洪玉.输导层和岩性圈闭中石油运移和聚集模拟实验研究[ J] .地球科学———中国地质大学学报, 1999, 24( 2) :193- 196.
[ 22] 李亮, 万小龙, 李志伟, 等.油气成藏模拟实验在白于山油藏开发中的应用[ J] .天然气地球科学, 2006, 17( 2) : 219- 222.
[1] KONG Lingfeng, XU Jiafang, LIU Ding. Pore structure characteristics and dehydration evolution of lignite reservoirs of Jurassic Xishanyao Formation in Santanghu Basin [J]. Lithologic Reservoirs, 2024, 36(5): 15-24.
[2] ZHU Biao, ZOU Niuniu, ZHANG Daquan, DU Wei, CHEN Yi. Characteristics of shale pore structure and its oil and gas geological significance of Lower Cambrian Niutitang Formation in Fenggang area,northern Guizhou [J]. Lithologic Reservoirs, 2024, 36(4): 147-158.
[3] LI Qihui, REN Dazhong, NING Bo, SUN Zhen, LI Tian, WAN Cixuan, YANG Fu, ZHANG Shiming. Micro-pore structure characteristics of coal seams of Jurassic Yan’an Formation in Shenmu area,Ordos Basin [J]. Lithologic Reservoirs, 2024, 36(2): 76-88.
[4] YANG Bowei, SHI Wanzhong, ZHANG Xiaoming, XU Xiaofeng, LIU Yuzuo, BAI Luheng, YANG Yang, CHEN Xianglin. Pore structure characteristics and gas-bearing properties of shale gas reservoirs of Lower Carboniferous Dawuba Formation in southern Guizhou [J]. Lithologic Reservoirs, 2024, 36(1): 45-58.
[5] YAO Xiutian, WANG Chao, YAN Sen, WANG Mingpeng, LI Wan. Reservoir sensitivity of Neogene Guantao Formation in Zhanhua Sag, Bohai Bay Basin [J]. Lithologic Reservoirs, 2023, 35(2): 159-168.
[6] XIAO Ling, CHEN Xi, LEI Ning, YI Tao, GUO Wenjie. Characteristics and main controlling factors of shale oil reservoirs of Triassic Chang 7 member in Heshui area, Ordos Basin [J]. Lithologic Reservoirs, 2023, 35(2): 80-93.
[7] WEN Zhigang, LUO Yushu, LIU Jiangyan, ZHAO Chunyu, LI Shixiang, TIAN Weichao, FAN Yunpeng, GAO Heting. Pore structure characteristics and genetic mechanism of Triassic Chang 7 shale oil reservoir in Longdong area [J]. Lithologic Reservoirs, 2022, 34(6): 47-59.
[8] ZHANG Fengqi, LI Yinong, LUO Julan, REN Xiaofeng, ZHANG Lanxin, ZHANG Jieyu. Microscopic pore structure characteristics of shale of Ordovician Wulalike Formation in western Ordos Basin [J]. Lithologic Reservoirs, 2022, 34(5): 50-62.
[9] ZHANG Jigang, DU Meng, CHEN Chao, QIN Ming, JIA Ninghong, LYU Weifeng, DING Zhenhua, XIANG Yong. Quantitative characterization of pore structure of shale reservoirs of Permian Lucaogou Formation in Jimsar Sag [J]. Lithologic Reservoirs, 2022, 34(4): 89-102.
[10] CHENG Danhua, JIAO Xiarong, WANG Jianwei, ZHUANG Dongzhi, WANG Zhengjun, JIANG Shan. Shale oil reservoir characteristics and significance of the first member of Paleogene Shahejie Formation in Nanpu Sag,Huanghua Depression [J]. Lithologic Reservoirs, 2022, 34(3): 70-81.
[11] LEI Haiyan, GUO Pei, MENG Ying, QI Jing, LIU Jin, ZHANG Juan, LIU Miao, ZHENG Yu. Pore structure and classification evaluation of shale oil reservoirs of Permian Fengcheng Formation in Mahu Sag [J]. Lithologic Reservoirs, 2022, 34(3): 142-153.
[12] CUI Jun, MAO Jianying, CHEN Dengqian, SHI Qi, LI Yanan, XIA Xiaomin. Reservoir characteristics of Paleogene lacustrine carbonate rocks in western Qaidam Basin [J]. Lithologic Reservoirs, 2022, 34(2): 45-53.
[13] HE Xian, YAN Jianping, WANG Min, WANG Jun, GENG Bin, LI Zhipeng, ZHONG Guanghai, ZHANG Ruixiang. Relationship between pore structure and oil production capacity of low permeability sandstone: A case study of block F154 in south slope of Dongying Sag [J]. Lithologic Reservoirs, 2022, 34(1): 106-117.
[14] DU Meng, XIANG Yong, JIA Ninghong, LYU Weifeng, ZHANG Jing, ZHANG Daiyan. Pore structure characteristics of tight glutenite reservoirs of Baikouquan Formation in Mahu Sag [J]. Lithologic Reservoirs, 2021, 33(5): 120-131.
[15] WANG Jingyi, ZHOU Zhijun, WEI Huabin, CUI Chunxue. Simulation of oil-water two-phase flow based on shale pore network model [J]. Lithologic Reservoirs, 2021, 33(5): 148-154.
Viewed
Full text


Abstract

Cited

  Shared   
  Discussed   
[1] KUANG Hongwei, GAO Zhenzhong, WANG Zhengyun, WANG Xiaoguang. A type of specific subtle reservoir : Analysis on the origin of diagenetic trapped reservoirs and its significance for exploration in Xia 9 wellblock of Junggar Basin[J]. Lithologic Reservoirs, 2008, 20(1): 8 -14 .
[2] LI Guojun, ZHENG Rongcai, TANG Yulin, WANG Yang, TANG Kai. Sequence-based lithofacies and paleogeography of Lower Triassic Feixianguan Formation in northeastern Sichuan Basin[J]. Lithologic Reservoirs, 2007, 19(4): 64 -70 .
[3] CAI Jia. Sedimentary facies of Neogene Sanya Formation in Changchang Sag, Qiongdongnan Basin[J]. Lithologic Reservoirs, 2017, 29(5): 46 -54 .
[4] ZHANG Hui, GUAN Da, XIANG Xuemei, CHEN Yong. Prediction for fractured tight sandstone reservoir of Xu 4 member in eastern Yuanba area,northeastern Sichuan Basin[J]. Lithologic Reservoirs, 2018, 30(1): 133 -139 .
[5] FU Guang, LIU Bo, LV Yanfang. Comprehensive evaluation method for sealing ability of mudstone caprock to gas in each phase[J]. Lithologic Reservoirs, 2008, 20(1): 21 -26 .
[6] WANG Yingming. Analysis of the mess in sequence hierarchy applied in the industrialized application of the sequence stratigraphy[J]. Lithologic Reservoirs, 2007, 19(1): 9 -15 .
[7] WEI Pingsheng, PAN Shuxin, WAN G Jiangong,LEI Ming. Study of the relationship between lithostratigraphic reservoirs and lakeshore line:An introduction on lakeshore line controlling oil /gas reservoirs in sag basin[J]. Lithologic Reservoirs, 2007, 19(1): 27 -31 .
[8] YI Dinghong, SHI Lanting, JIA Yirong. Sequence stratigraphy and subtle reservoir of Aershan Formation in Baorao Trough of Jiergalangtu Sag[J]. Lithologic Reservoirs, 2007, 19(1): 68 -72 .
[9] YANG Zhanlong, PENG Licai, CHEN Qilin, GUO Jingyi,LI Zaiguang, HUANG Yunfeng. Petroleum accumulation condition analysis and lithologic reservoir exploration in Shengbei Depression of Turpan-harmy Basin[J]. Lithologic Reservoirs, 2007, 19(1): 62 -67 .
[10] LIU Quanxin, GAO Jianhu, DONG Xuehua. Nonlinear inversion of the reservoir prediction—— example of Seimpar Inversion[J]. Lithologic Reservoirs, 2007, 19(1): 81 -85 .
TRENDMD: