
Xinjiang Petroleum Geology ›› 2025, Vol. 46 ›› Issue (6): 790-799.doi: 10.7657/XJPG20250615
• APPLICATION OF TECHNOLOGY • Previous Articles
LI Yanghu1(
), WANG Zhenlin1,2(
), SHAO Huanhuan1, CHEN Shanhe1, TANG Fukang1, LIU Caiguang1, WANG Wei1, ZHANG Hao1
Received:2025-04-30
Revised:2025-08-11
Online:2025-12-01
Published:2025-12-05
Contact:
WANG Zhenlin
E-mail:86488299@petrochina.com.cn;wzhenl@petrochina.com.cn
CLC Number:
LI Yanghu, WANG Zhenlin, SHAO Huanhuan, CHEN Shanhe, TANG Fukang, LIU Caiguang, WANG Wei, ZHANG Hao. Acoustic Anisotropy Correction Based on Clay Mineral Content in Shale Oil Horizontal Wells[J]. Xinjiang Petroleum Geology, 2025, 46(6): 790-799.
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| [1] | 邹才能, 潘松圻, 赵群. 论中国“能源独立”战略的内涵,挑战及意义[J]. 石油勘探与开发, 2020, 47(2):416-426. |
| ZOU Caineng, PAN Songqi, ZHAO Qun. On the connotation,challenge and significance of China’s “energy independence” strategy[J]. Petroleum Exploration and Development, 2020, 47(2):416-426. | |
| [2] | 赵文智, 胡素云, 侯连华, 等. 中国陆相页岩油类型、资源潜力及与致密油的边界[J]. 石油勘探与开发, 2020, 47(1):1-10. |
| ZHAO Wenzhi, HU Suyun, HOU Lianhua, et al. Types and resource potential of continental shale oil in China and its boundary with tight oil[J]. Petroleum Exploration and Development, 2020, 47(1):1-10. | |
| [3] | WACHTMEISTER H, LUND L, ALEKLETT K, et al. Production decline curves of tight oil wells in Eagle Ford shale[J]. Natural Resources Research, 2017, 26(3):365-377. |
| [4] | 付金华, 刘显阳, 李士祥, 等. 鄂尔多斯盆地三叠系延长组长7段页岩油勘探发现与资源潜力[J]. 中国石油勘探, 2021, 26(5):1-11. |
| FU Jinhua, LIU Xianyang, LI Shixiang, et al. Discovery and resource potential of shale oil of Chang 7 member,Triassic Yanchang formation,Ordos Basin[J]. China Petroleum Exploration, 2021, 26(5):1-11. | |
| [5] | 王挺, 汪杰, 江厚顺, 等. 页岩水平井水力压裂裂缝扩展及防窜三维地质模拟[J]. 新疆石油地质, 2023, 44(6):720-728. |
| WANG Ting, WANG Jie, JIANG Houshun, et al. 3D geological simulation of hydraulic fracture propagation and frac-hit prevention in horizontal shale gas wells[J]. Xinjiang Petroleum Geology, 2023, 44(6):720-728. | |
| [6] | 刘财广, 季瑞雪, 王伟, 等. 玛湖凹陷风城组页岩油产量影响因素及甜点评价[J]. 新疆石油地质, 2022, 43(6):733-742. |
| LIU Caiguang, JI Ruixue, WANG Wei, et al. Factors influencing shale oil production and sweet spot evaluation of Fengcheng formation,Mahu sag[J]. Xinjiang Petroleum Geology, 2022, 43(6):733-742. | |
| [7] | 童广勤, 苗凤彬, 李培军, 等. 鄂西宜昌地区寒武系水井沱组页岩储层地应力特征及成因[J]. 东北石油大学学报, 2024, 48(2):86-101. |
| TONG Guangqin, MIAO Fengbin, LI Peijun, et al. Characteristics and causes of in-situ stress in shale reservoir of the Cambrian Shuijingtuo formation in Yichang area,western Hubei province[J]. Journal of Northeast Petroleum University, 2024, 48(2):86-101. | |
| [8] | 肖昆, 邹长春, 卢振权, 等. 基于声波测井的冻土区孔隙型水合物储层水合物饱和度估算方法[J]. 地质学报, 2020, 94(5):1664-1674. |
| XIAO Kun, ZOU Changchun, LU Zhenquan, et al. The acoustic log method of estimating gas hydrate saturation in gas hydrate reservoirs[J]. Acta Geologica Sinica, 2020, 94(5):1664-1674. | |
| [9] | 杨永兴, 朱冠臣, 王德刚, 等. 庆城油田长7段页岩油藏长水平井轨迹调整技术[J]. 新疆石油地质, 2025, 46(3):367-374. |
| YANG Yongxing, ZHU Guanchen, WANG Degang, et al. Trajectory adjustment technology for long horizontal wells in Chang 7 shale oil reservoirs,Qingcheng oilfield[J]. Xinjiang Petroleum Geology, 2025, 46(3):367-374. | |
| [10] | LI Yanghu, WANG Zhenlin, SU Yuanda, et al. A theoretical analysis of the logging-while-drilling dipole acoustic reflection measurement[J]. Frontiers in Earth Science, 2024,12:1483285. |
| [11] | JONES L E A, WANG H F. Ultrasonic velocities in Cretaceous shales from the Williston Basin[J]. Geophysics, 1981, 46(3):288-297. |
| [12] | THOMSEN, LEON. Weak elastic anisotropy[J]. Geophysics, 1986, 51(10):1954-1966. |
| [13] | JOHNSTON D H. Physical properties of shale at temperature and pressure[J]. Geophysics, 1987, 52(10):1391-1401. |
| [14] | LEVVERNIK, LIU Xingzhou. Velocity anisotropy in shales:A petrophysical study[J]. Geophysics, 1997, 62(2):521-532. |
| [15] | 邓佳杰, 熊健, 刘向君, 等. 四川盆地深层龙马溪组页岩各向异性声波实验研究[J]. 地球物理学进展, 2023, 38(5):2037-2046. |
| DENG Jiajie, XIONG Jian, LIU Xiangjun, et al. Anisotropy of shale in deep Longmaxi formation of Sichuan Basin based on acoustic wave experiment[J]. Progress in Geophysics, 2023, 38(5):2037-2046. | |
| [16] | 陈树民, 韩德华, 赵海波, 等. 松辽盆地古龙页岩油地震岩石物理特征及甜点预测技术[J]. 大庆石油地质与开发, 2020, 39(3):107-116. |
| CHEN Shumin, HAN Dehua, ZHAO Haibo, et al. Seismic petrophysical characteristics and predicting technique of the sweet spots in Gulong shale oil reservoirs of Songliao Basin[J]. Petroleum Geology & Oilfield Development in Daqing, 2020, 39(3):107-116. | |
| [17] | 王小琼, 葛洪魁, 王文文, 等. 致密储层岩石应力各向异性与材料各向异性的实验研究[J]. 地球物理学报, 2021, 64(12):4239-4251. |
| WANG Xiaoqiong, GE Hongkui, WANG Wenwen, et al. Experimental study on stress-related and matrix-related anisotropy in tight reservoirs[J]. Chinese Journal of Geophysics, 2021, 64(12):4239-4251. | |
| [18] | 唐晓明, 郑传汉. 定量测井声学[M]. 北京: 石油工业出版社, 2004. |
| TANG Xiaoming, ZHENG Chuanhan. Quantitative borehole acoustic methods[M]. Beijing: Petroleum Indusery Press, 2004. | |
| [19] | 许松. 各向异性地层声速测井理论与应用研究[D]. 山东青岛: 中国石油大学(华东), 2019. |
| XU Song. Theory and application of sonic velocity logging in anisotropic formations[D]. Qingdao, Shandong: China University of Petroleum (East China), 2019. | |
| [20] | HORNBY B E, HOWIEZ J M, INCE D W. Anisotropy correction for deviated-well sonic logs:Application to seismic well tie[J]. Geophysics, 2003, 68(2):464-471. |
| [21] | 乔悦东, 孙建孟, 耿尊博. 斜井泥岩声波速度各向异性校正新方法研究[J]. 石油天然气学报, 2010, 32(5):104-108. |
| QIAO Yuedong, SUN Jianmeng, GENG Zunbo. New methods of shale acoustic velocity anisotropy correction in deviated wells[J]. Journal of Oil and Gas Technology, 2010, 32(5):104-108. | |
| [22] | 时建超, 屈雪峰, 雷启鸿, 等. 致密油水平井声波时差测井影响因素分析及测井响应特征研究:以鄂尔多斯盆地陇东地区长7储层为例[J]. 西北大学学报(自然科学版), 2017, 47(4):585-592. |
| SHI Jianchao, QU Xuefeng, LEI Qihong, et al. The influencing factors and response characteristics of acoustic time logging in tight oil horizontal well:A case study of Chang 7 reservoir in Longdong area of Ordos Basin[J]. Journal of Northwest University (Natural Science Edition), 2017, 47(4):585-592. | |
| [23] | LIU He, WANG Bing, TAO Guo, et al. Study on the simulation of acoustic logging measurements in horizontal and deviated wells[J]. Applied Geophysics, 2017, 14(3):337-350. |
| [24] | 杨歆. 水平井及大斜度井声波测井时差校正方法研究[D]. 北京: 中国石油大学(北京), 2016. |
| YANG Xin. Research on correction method of sonic logging slowness in horizontal wells and high angle deviated wells[D]. Beijing: China University of Petroleum (Beijing), 2016. | |
| [25] | 胡松, 王敏, 刘伟男, 等. 页岩水平井声波时差各向异性校正方法及其应用[J]. 石油学报, 2022, 43(1):58-66. |
| HU Song, WANG Min, LIU Weinan, et al. Anisotropy correction method for acoustic time difference in horizontal shale wells and its application[J]. Acta Petrolei Sinica, 2022, 43(1):58-66. | |
| [26] | DENG Jixin, SHEN Hui, XU Zhonghua, et al. Dynamic elastic properties of the Wufeng-Longmaxi formation shale in the southeast margin of the Sichuan Basin[J]. Journal of Geophysics and Engineering, 2014, 11(3):035004. |
| [27] | 刘忠华, 宋连腾, 王长胜, 等. 各向异性快地层最小水平主应力测井计算方法[J]. 石油勘探与开发, 2017, 44(5):745-752. |
| LIU Zhonghua, SONG Lianteng, WANG Changsheng, et al. Evaluation method of the least horizontal principal stress by logging data in anisotropic fast formations[J]. Petroleum Exploration and Development, 2017, 44(5):745-752. | |
| [28] | 杜书恒, 梁耀欢, 师永民, 等. 围压-孔压改变条件下致密砂岩及泥页岩泊松比变化特征及机制[J]. 地学前缘, 2021, 28(1):411-419. |
| DU Shuheng, LIANG Yaohuan, SHI Yongmin, et al. Variations of poisson’s ratio for tight sandstone and shale under changing confining or pore pressure:Characteristics and mechanism[J]. Earth Science Frontiers, 2021, 28(1):411-419. | |
| [29] | 杜书恒, 沈文豪, 赵亚溥. 页岩储层应力敏感性定量评价:思路及应用[J]. 力学学报, 2022, 54(8):2235-2247. |
| DU Shuheng, SHEN Wenhao, ZHAO Yapu. Ouantitative evaluation of stress sensitivity in shale reservoirs:Ideas and applications[J]. Chinese Journal of Theoretical and Applied Mechanics, 2022, 54(8):2235-2247. | |
| [30] | HIROKI S. Mechanical properties of shale gas reservoir rocks,and its relation to the in-situ stress variation observed in shale gas reservoirs[D]. Stanford,California, United States: Stanford University, 2012. |
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