The Fuyu reservoir in Xinmin area is a delta plane-front facies deposit, and the channel sand body in this area is the main reservoir of oil and gas. Due to the complex sedimentary environment, the sand body shows great variation in thickness and distribution. In this study, the method of combining well vibration, model forward modeling and stratum slicing are used to predict the sandstone bodies of different thickness successfully. Especially for the thin sand body with a thickness of less than 5 meters, this study found that the GR curve can effectively distinguish sandstone and mudstone through the intersection analysis of logging curves, and applied the GR curve co-simulation inversion technology to perform fine characterization. In addition, the study also reveals that the northeastward twisting fault zone in Xinmin area is a favorable accumulation area of the reservoir, which provides a new direction for oil and gas exploration. This study not only improves the accuracy of sandstone prediction, but also provides a valuable reference for oil and gas exploration under similar complex geological conditions.
Published in | Science Discovery (Volume 12, Issue 4) |
DOI | 10.11648/j.sd.20241204.11 |
Page(s) | 78-82 |
Creative Commons |
This is an Open Access article, distributed under the terms of the Creative Commons Attribution 4.0 International License (http://creativecommons.org/licenses/by/4.0/), which permits unrestricted use, distribution and reproduction in any medium or format, provided the original work is properly cited. |
Copyright |
Copyright © The Author(s), 2024. Published by Science Publishing Group |
Fuyu Oil Layer, Identify Channel Sand Bodies, Seisimic Forward Modeling, Stratal Slice, GR Co Simulation Inversion, Torsional Fault Zone
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APA Style
Mingli, S., Xiaoliang, L., Guodong, L., Weiwei, Q., Qiaojie, Y., et al. (2024). Seismic Prediction Technology for Channel Sand Body of Fuyu Oil Layer in Xinmin Area, Southern Songliao Basin. Science Discovery, 12(4), 78-82. https://doi.org/10.11648/j.sd.20241204.11
ACS Style
Mingli, S.; Xiaoliang, L.; Guodong, L.; Weiwei, Q.; Qiaojie, Y., et al. Seismic Prediction Technology for Channel Sand Body of Fuyu Oil Layer in Xinmin Area, Southern Songliao Basin. Sci. Discov. 2024, 12(4), 78-82. doi: 10.11648/j.sd.20241204.11
AMA Style
Mingli S, Xiaoliang L, Guodong L, Weiwei Q, Qiaojie Y, et al. Seismic Prediction Technology for Channel Sand Body of Fuyu Oil Layer in Xinmin Area, Southern Songliao Basin. Sci Discov. 2024;12(4):78-82. doi: 10.11648/j.sd.20241204.11
@article{10.11648/j.sd.20241204.11, author = {Shao Mingli and Lian Xiaoliang and Liu Guodong and Qu Weiwei and Yan Qiaojie and Jiang Chuntao and Zhao Jia and Wang Lei}, title = {Seismic Prediction Technology for Channel Sand Body of Fuyu Oil Layer in Xinmin Area, Southern Songliao Basin }, journal = {Science Discovery}, volume = {12}, number = {4}, pages = {78-82}, doi = {10.11648/j.sd.20241204.11}, url = {https://doi.org/10.11648/j.sd.20241204.11}, eprint = {https://article.sciencepublishinggroup.com/pdf/10.11648.j.sd.20241204.11}, abstract = {The Fuyu reservoir in Xinmin area is a delta plane-front facies deposit, and the channel sand body in this area is the main reservoir of oil and gas. Due to the complex sedimentary environment, the sand body shows great variation in thickness and distribution. In this study, the method of combining well vibration, model forward modeling and stratum slicing are used to predict the sandstone bodies of different thickness successfully. Especially for the thin sand body with a thickness of less than 5 meters, this study found that the GR curve can effectively distinguish sandstone and mudstone through the intersection analysis of logging curves, and applied the GR curve co-simulation inversion technology to perform fine characterization. In addition, the study also reveals that the northeastward twisting fault zone in Xinmin area is a favorable accumulation area of the reservoir, which provides a new direction for oil and gas exploration. This study not only improves the accuracy of sandstone prediction, but also provides a valuable reference for oil and gas exploration under similar complex geological conditions. }, year = {2024} }
TY - JOUR T1 - Seismic Prediction Technology for Channel Sand Body of Fuyu Oil Layer in Xinmin Area, Southern Songliao Basin AU - Shao Mingli AU - Lian Xiaoliang AU - Liu Guodong AU - Qu Weiwei AU - Yan Qiaojie AU - Jiang Chuntao AU - Zhao Jia AU - Wang Lei Y1 - 2024/07/04 PY - 2024 N1 - https://doi.org/10.11648/j.sd.20241204.11 DO - 10.11648/j.sd.20241204.11 T2 - Science Discovery JF - Science Discovery JO - Science Discovery SP - 78 EP - 82 PB - Science Publishing Group SN - 2331-0650 UR - https://doi.org/10.11648/j.sd.20241204.11 AB - The Fuyu reservoir in Xinmin area is a delta plane-front facies deposit, and the channel sand body in this area is the main reservoir of oil and gas. Due to the complex sedimentary environment, the sand body shows great variation in thickness and distribution. In this study, the method of combining well vibration, model forward modeling and stratum slicing are used to predict the sandstone bodies of different thickness successfully. Especially for the thin sand body with a thickness of less than 5 meters, this study found that the GR curve can effectively distinguish sandstone and mudstone through the intersection analysis of logging curves, and applied the GR curve co-simulation inversion technology to perform fine characterization. In addition, the study also reveals that the northeastward twisting fault zone in Xinmin area is a favorable accumulation area of the reservoir, which provides a new direction for oil and gas exploration. This study not only improves the accuracy of sandstone prediction, but also provides a valuable reference for oil and gas exploration under similar complex geological conditions. VL - 12 IS - 4 ER -