[1] |
Pengyuan HAN, Wenlong DING, Debin YANG, Juan ZHANG, Hailong MA, Shenghui WANG.
Characteristics of the S80 strike-slip fault zone and its controlling effects on the Ordovician reservoirs in the Tahe oilfield, Tarim Basin
[J]. Oil & Gas Geology, 2024, 45(3): 770-786.
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[2] |
Changjian ZHANG, Debin YANG, Lin JIANG, Yingbing JIANG, Qi CHANG, Xuejian MA.
Characteristics and origin of over-dissolution residual fault-karst reservoirs in the northern Tahe oilfield, Tarim Basin
[J]. Oil & Gas Geology, 2024, 45(2): 367-383.
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[3] |
San ZHANG, Qiang JIN, Jinxiong SHI, Mingyi HU, Mengyue DUAN, Yongqiang LI, Xudong ZHANG, Fuqi CHENG.
Filling patterns and reservoir property of the Ordovician buried-river karst caves in the Tabei area, Tarim Basin
[J]. Oil & Gas Geology, 2023, 44(6): 1582-1594.
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[4] |
Zhijiang KANG, Dongmei ZHANG, Zhenkun ZHANG, Ruiqi WANG, Wenbing JIANG, Kunyan LIU.
Intelligent prediction of inter-well connectivity path in deep fractured-vuggy reservoirs
[J]. Oil & Gas Geology, 2023, 44(5): 1290-1299.
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[5] |
Mingchuan WANG, Taizhong DUAN.
Facies sequence-based MPS reservoir facies modeling algorithm and its application
[J]. Oil & Gas Geology, 2023, 44(1): 238-246.
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[6] |
Bingyu Ji, Songqing Zheng, Hao Gu.
On the development technology of fractured-vuggy carbonate reservoirs:A case study on Tahe oilfield and Shunbei oil and gas field
[J]. Oil & Gas Geology, 2022, 43(6): 1459-1465.
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[7] |
Xinrui Lyu, Xingwei Wu, Jianfang Sun, Dongling Xia, Yanpu Li, Yanzhi Ding, Bin Wang.
Physical simulation and distribution prediction of karst cave collapsing in deep carbonate reservoirs
[J]. Oil & Gas Geology, 2022, 43(6): 1505-1514.
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[8] |
Wenbiao Zhang, Yaxiong Zhang, Taizhong Duan, Meng Li, Huawei Zhao, Yan Wang.
Hierarchy modeling of the Ordovician fault-karst carbonate reservoir in Tuoputai area, Tahe oilfield, Tarim Basin, NW China
[J]. Oil & Gas Geology, 2022, 43(1): 207-218.
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[9] |
Juan Zhang, Min Yang, Runcheng Xie, Ming Wang, Hong Wang, Ziwei Luo.
Probability-constrained identification of Ordovician small-scale fractured-vuggy reservoirs in Blocks 4-6, Tahe Oilfield, Tarim Basin
[J]. Oil & Gas Geology, 2022, 43(1): 219-228.
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[10] |
Wenge Hu.
Paleokarst fracture-vug types and their reconstruction in buried hill area, Tahe oilfield, Tarim Basin
[J]. Oil & Gas Geology, 2022, 43(1): 43-53.
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[11] |
Jiaxu Chen, Bin Wang, Xiaowen Guo, Zicheng Cao, Yongli Liu, Feng Geng, Xuyou Zhang, Hao Xu, Jianxin Zhao.
Application of laser in-situ U-Pb dating of calcite to determination of the absolute time of hydrocarbon accumulation in polycyclic superimposed basins: A case study on Tahe oilfield, Tarim Basin
[J]. Oil & Gas Geology, 2021, 42(6): 1365-1375.
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[12] |
Hong Cheng, Jie Zhang, Wenbiao Zhang.
Discussion on identification, prediction and development pattern of faulted-karst carbonate reservoirs:A case study of TH10421 fracture-cavity unit in block 10 of Tahe oilfield, Tarim Basin
[J]. Oil & Gas Geology, 2020, 41(5): 996-1003.
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[13] |
Yongli Liu, Donghua You, Lijun Gao, Weifeng Zhang, Chengfei Xie.
Genesis and geological significance of siliceous rock in Penglaiba Formation in Well Tashen 6, Tahe oilfield
[J]. Oil & Gas Geology, 2020, 41(1): 83-91.
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[14] |
He Tingting, Duan Taizhong, Zhao Lei, Liu Yanfeng.
Triassic sedimentary model in Block T of Tahe oilfield, Tarim Basin
[J]. Oil & Gas Geology, 2019, 40(4): 822-834.
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[15] |
Zhu Guiliang, Sun Jianfang, Liu Zhongchun.
An approach to calculate developed reserves in gas drive fractured-vuggy reservoirs in Tahe oilfield
[J]. Oil & Gas Geology, 2019, 40(2): 436-442,450.
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