新疆石油地质 ›› 2022, Vol. 43 ›› Issue (4): 440-449.doi: 10.7657/XJPG20220409
曹炜1(), 鲜成钢1(
), 吴宝成2, 于会永2, 陈昂2, 申颍浩1
收稿日期:
2021-10-25
修回日期:
2022-01-06
出版日期:
2022-08-01
发布日期:
2022-07-26
通讯作者:
鲜成钢
E-mail:15680460218@163.com;xianchenggang@cup.edu.cn
作者简介:
曹炜(1999-),男,硕士研究生,陕西西安人,地质工程一体化,(Tel)15680460218 (E-mail) 基金资助:
CAO Wei1(), XIAN Chenggang1(
), WU Baocheng2, YU Huiyong2, CHEN Ang2, SHEN Yinghao1
Received:
2021-10-25
Revised:
2022-01-06
Online:
2022-08-01
Published:
2022-07-26
Contact:
XIAN Chenggang
E-mail:15680460218@163.com;xianchenggang@cup.edu.cn
摘要:
为厘清玛131小井距立体开发平台的产能水平和生产动态特征,进行了生产特征、不稳定产量及产能预测,构建了动态分析及产能预测工作流程,确定了等效地层渗透率、有效裂缝半长等预测单井产能的关键参数。目标油藏原油易脱气,早期下入井下气嘴可有效减轻脱气现象;返排前期油嘴过大,会导致裂缝体积大幅减小,需要控压返排;基于递减曲线和解析模型的P50产能预测结果可以互为补充,提供更为准确合理的产能预测区间;百三段水平井的平均有效裂缝半长大于百二段一亚段,其井距存在优化的空间。
中图分类号:
曹炜, 鲜成钢, 吴宝成, 于会永, 陈昂, 申颍浩. 玛湖致密砾岩油藏水平井生产动态分析及产能预测——以玛131小井距立体开发平台为例[J]. 新疆石油地质, 2022, 43(4): 440-449.
CAO Wei, XIAN Chenggang, WU Baocheng, YU Huiyong, CHEN Ang, SHEN Yinghao. Production Performance Analysis and Productivity Prediction of Horizontal Wells in Mahu Tight Conglomerate Reservoirs:A Case of Ma 131 Dense-Spacing 3D Development Pad[J]. Xinjiang Petroleum Geology, 2022, 43(4): 440-449.
[1] | 匡立春, 唐勇, 雷德文, 等. 准噶尔盆地玛湖凹陷斜坡区三叠系百口泉组扇控大面积岩性油藏勘探实践[J]. 中国石油勘探, 2014, 19(6):14-23. |
KUANG Lichun, TANG Yong, LEI Dewen, et al. Exploration of fan-controlled large-area lithologic oil reservoirs of Triassic Baikouquan formation in slope zone of Mahu depression in Junggar basin[J]. China Petroleum Exploration, 2014, 19(6):14-23. | |
[2] | 唐勇, 郭文建, 王霞田, 等. 玛湖凹陷砾岩大油区勘探新突破及启示[J]. 新疆石油地质, 2019, 40(2):127-137. |
TANG Yong, GUO Wenjian, WANG Xiatian, et al. A new breakthrough in exploration of large conglomerate oil province in Mahu sag and its implications[J]. Xinjiang Petroleum Geology, 2019, 40(2):127-137. | |
[3] |
CLARKSON C R. Production data analysis of unconventional gas wells:review of theory and best practices[J]. International Journal of Coal Geology, 2013, 109/110:101-146.
doi: 10.1016/j.coal.2013.01.002 |
[4] | 陈志明, 陈昊枢, 廖新维, 等. 致密油藏压裂水平井缝网系统评价方法:以准噶尔盆地吉木萨尔地区为例[J]. 石油与天然气地质, 2020, 41(6):1288-1298. |
CHEN Zhiming, CHEN Haoshu, LIAO Xinwei, et al. Evaluation of fracture networks along fractured horizontal wells in tight oil reservoirs:a case study of Jimusar oilfield in the Junggar basin[J]. Oil & Gas Geology, 2020, 41(6):1288-1298. | |
[5] | YU Shaoyong, JIANG Zhixiang, LEE W J. Reconciling empirical methods for reliable EUR and production profile forecasts of horizontal wells in tight/shale reservoirs[R]. SPE 189802, 2018. |
[6] | 陈华, 林畅松, 张忠民, 等. 西非下刚果—刚果扇盆地A区块中新统深水水道体系沉积特征及演化[J]. 石油实验地质, 2021, 43(3):476-486. |
CHEN Hua, LIN Changsong, ZHANG Zhongmin, et al. Depositional characteristics and evolution of Miocene deep-water channel systems in block A of Lower Congo-Congo Fan basin,West Africa[J]. Petroleum Geology & Experiment, 2021, 43(3):476-486. | |
[7] | 蒲晓, 郭大立, 兰天, 等. 低渗透油藏转向压裂产能预测及影响因素[J]. 新疆石油地质, 2021, 42(1):76-80. |
PU Xiao, GUO Dali, LAN Tian, et al. Productivity prediction and influencing factors of low permeability reservoirs after steering fracturing stimulation[J]. Xinjiang Petroleum Geology, 2021, 42(1):76-80. | |
[8] | 李海涛, 王科, 补成中, 等. 预测页岩气单井产量及最终储量的经验法分析[J]. 特种油气藏, 2019, 26(3):74-78. |
LI Haitao, WANG Ke, BU Chengzhong, et al. Empirical method analysis of individual well production and EUR forecast in shale gas reserves[J]. Special Oil & Gas Reservoirs, 2019, 26(3):74-78. | |
[9] | 刘晓华, 邹春梅, 姜艳东, 等. 现代产量递减分析基本原理与应用[J]. 天然气工业, 2010, 30(5):50-54. |
LIU Xiaohua, ZOU Chunmei, JIANG Yandong, et al. Theory and application of modern production decline analysis[J]. Natural Gas Industry, 2010, 30(5):50-54. | |
[10] | 楼章华, 苏一哲, 朱蓉, 等. 四川盆地新场构造带上三叠统须家河组二段地层水化学动态特征及其成因[J]. 石油与天然气地质, 2021, 42(4):841-851. |
LOU Zhanghua, SU Yizhe, ZHU Rong, et al. Dynamic chemical characteristics and origin of formation water in the second member of Xujiahe formation,Xinchang structural belt,Sichuan basin[J]. Oil & Gas Geology, 2021, 42(4):841-851. | |
[11] | 苏映宏. 滩坝砂油藏不同压裂方式下单井控制可采储量预测方法[J]. 石油实验地质, 2021, 43(4):697-703. |
SU Yinghong. Prediction of single-well-constrained recoverable reserves in beach bar sand reservoir using different fracturing methods[J]. Petroleum Geology & Experiment, 2021, 43(4):697-703. | |
[12] | 况晏, 司马立强, 瞿建华, 等. 致密砂砾岩储层孔隙结构影响因素及定量评价:以玛湖凹陷玛131井区三叠系百口泉组为例[J]. 岩性油气藏, 2017, 29(4):91-100. |
KUANG Yan, SIMA Liqiang, QU Jianhua, et al. Influencing factors and quantitative evaluation for pore structure of tight glutenite reservoir:a case of the Triassic Baikouquan formation in Ma131 well field,Mahu sag[J]. Lithologic Reservoirs, 2017, 29(4):91-100. | |
[13] |
许江文, 李建民, 邬元月, 等. 玛湖致密砾岩油藏水平井体积压裂技术探索与实践[J]. 中国石油勘探, 2019, 24(2):241-249.
doi: 10.3969/j.issn.1672-7703.2019.02.013 |
XU Jiangwen, LI Jianmin, WU Yuanyue, et al. Exploration and practice of volume fracturing technology in horizontal well of Mahu tight conglomerate reservoirs[J]. China Petroleum Exploration, 2019, 24(2):241-249.
doi: 10.3969/j.issn.1672-7703.2019.02.013 |
|
[14] | 雷德文, 瞿建华, 安志渊, 等. 玛湖凹陷百口泉组低渗砂砾岩油气藏成藏条件及富集规律[J]. 新疆石油地质, 2015, 36(6):642-647. |
LEI Dewen, QU Jianhua, AN Zhiyuan, et al. Hydrocarbon accumulation conditions and enrichment rugularity of low-permeability glutenite reservoirs of Baikouquan formation in Mahu sag,Junggar basin[J]. Xinjiang Petroleum Geology, 2015, 36 (6):642-647. | |
[15] | 李军, 唐勇, 吴涛, 等. 准噶尔盆地玛湖凹陷砾岩大油区超压成因及其油气成藏效应[J]. 石油勘探与开发, 2020, 47(4):679-690. |
LI Jun, TANG Yong, WU Tao, et al. Overpressure origin and its effects on petroleum accumulation in the conglomerate oil province in Mahu sag,Junggar basin,NW China[J]. Petroleum Exploration and Development, 2020, 47(4):679-690. | |
[16] |
李建民, 吴宝成, 赵海燕, 等. 玛湖致密砾岩油藏水平井体积压裂技术适应性分析[J]. 中国石油勘探, 2019, 24(2):250-259.
doi: 10.3969/j.issn.1672-7703.2019.02.014 |
LI Jianmin, WU Baocheng, ZHAO Haiyan, et al. Adaptability of horizontal well volume fracturing to tight conglomerate reservoirs in Mahu oilfield[J]. China Petroleum Exploration, 2019, 24(2):250-259.
doi: 10.3969/j.issn.1672-7703.2019.02.014 |
|
[17] |
覃建华, 张景, 蒋庆平, 等. 玛湖砾岩致密油“甜点”分类评价及其工程应用[J]. 中国石油勘探, 2020, 25(2):110-119.
doi: 10.3969/j.issn.1672-7703.2020.02.011 |
QIN Jianhua, ZHANG Jing, JIANG Qingping, et al. Sweet spot classification evaluation of tight conglomerate reservoir in the Mahu sag and its engineering application[J]. China Petroleum Exploration, 2020, 25(2):110-119.
doi: 10.3969/j.issn.1672-7703.2020.02.011 |
|
[18] | 王硕, 覃建华, 杨新平, 等. 玛湖地区致密砾岩人工裂缝垂向延伸机理应力模拟[J]. 新疆石油地质, 2020, 41(2):193-198. |
WANG Shuo, QIN Jianhua, YANG Xinping, et al. Stress simulation of vertical hydraulic fracture propagation mechanism in tight conglomerate reservoirs of Mahu area[J]. Xinjiang Petroleum Geology, 2020, 41(2):193-198. | |
[19] | 何小东, 马俊修, 刘刚, 等. 玛湖油田砾岩储集层岩石力学分析及缝网评价[J]. 新疆石油地质, 2019, 40(6):701-707. |
HE Xiaodong, MA Junxiu, LIU Gang, et al. Analysis of rock mechanics and assessments of hydraulic fracture network in conglomerate reservoirs of Mahu oilfield[J]. Xinjiang Petroleum Geology, 2019, 40(6):701-707. | |
[20] | 李国欣, 覃建华, 鲜成钢, 等. 致密砾岩油田高效开发理论认识、关键技术与实践:以准噶尔盆地玛湖油田为例[J]. 石油勘探与开发, 2020, 47(6):1185-1197. |
LI Guoxin, QIN Jianhua, XIAN Chenggang, et al. Theoretical understandings,key technologies and practices of tight conglomerate oilfield efficient development:a case study of the Mahu oilfield,Junggar basin,NW China[J]. Petroleum Exploration and Development, 2020, 47(6):1185-1197. | |
[21] | CHAUDHARY N L, LEE W J. Detecting and removing outliers in production data to enhance production forecasting[R]. SPE 179958, 2016. |
[22] | YU Shaoyong, 刘玉慧. 页岩及致密地层油气井的生产特征及可采储量计算方法[J]. 油气藏评价与开发, 2021, 11(2):146-153. |
YU Shaoyong, LIU Yuhui. Production performance and EUR forecast of wells producing from tight/shale reservoirs[J]. Reservoir Evaluation and Development, 2021, 11(2):146-153. | |
[23] | MOUSSA T, DEHGHANPOUR H, FU Yingkun, et al. Dynamic fracture volume estimation using flowback data analysis and its correlation to completion-design parameters[R]. SPE 194322, 2019. |
[24] | FU Yingkun, DEHGHANPOUR H, MOTEALLEH S, et al. Evaluating fracture volume loss during flowback and its relationship to choke size:fastback vs. slowback[J]. SPE Production & Operations, 2019, 34(3):615-624. |
[25] |
ARPS J J. Analysis of decline curves[J]. Transactions of the AIME, 1945, 160(1):228-247.
doi: 10.2118/945228-G |
[26] | DUONG A N. An unconventional rate decline approach for tight and fracture-dominated gas wells[R]. SPE 137748, 2010. |
[27] | VALKO P P. Assigning value to stimulation in the Barnett shale:a simultaneous analysis of 7000 plus production histories and well completion records[R]. SPE 119369, 2009. |
[28] | ILK D, RUSHING J A, PEREGO A D, et al. Exponential vs. hyperbolic decline in tight gas sands:understanding the origin and implications for reserve estimates using Arps’ decline curves[R]. SPE 116731, 2008. |
[29] | CLARK A J, LAKE L W, PATZEK T W. Production forecasting with logistic growth models[R]. SPE 144790, 2011. |
[30] | ARTUS V, HOUZÉ O. A physical decline curve for fractured horizontal wells[R]. URTeC 2856750, 2018. |
[31] | CURRIE S M, ILK D, BLASINGAME T A. Continuous estimation of ultimate recovery[R]. SPE 132352, 2010. |
[32] | BLASINGAME T A, LEE W J. Variable-rate reservoir limits testing[R]. SPE 15028, 1986 |
[33] | FOWLER G, MCCLURE M, ALLEN J. RTA assisted history matching with a combined hydraulic fracturing and reservoir simulator[R]. SPE 199149, 2020. |
[34] |
WENG Xiaowei, KRESSE O, CHUPRAKOV D, et al. Applying complex fracture model and integrated workflow in unconventional reservoirs[J]. Journal of Petroleum Science and Engineering, 2014, 124:468-483.
doi: 10.1016/j.petrol.2014.09.021 |
[35] | MOINFAR A, ERDLE J C, PATEL K. Comparison of numerical vs analytical models for EUR calculation and optimization in unconventional reservoirs[R]. SPE 180974, 2016. |
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