• 中国出版政府奖提名奖

    中国百强科技报刊

    湖北出版政府奖

    中国高校百佳科技期刊

    中国最美期刊

    Volume 47 Issue 5
    May  2022
    Turn off MathJax
    Article Contents
    Liu Yuzuo, Zhai Gangyi, Xu Xiaofeng, Zhang Xiaoming, Bai Luheng, Yang Yang, Cao Shenting, 2022. Logging Identification of High Quality Shale of Niutitang Formation and Doushantuo Formation in Western Hubei. Earth Science, 47(5): 1791-1804. doi: 10.3799/dqkx.2022.098
    Citation: Liu Yuzuo, Zhai Gangyi, Xu Xiaofeng, Zhang Xiaoming, Bai Luheng, Yang Yang, Cao Shenting, 2022. Logging Identification of High Quality Shale of Niutitang Formation and Doushantuo Formation in Western Hubei. Earth Science, 47(5): 1791-1804. doi: 10.3799/dqkx.2022.098

    Logging Identification of High Quality Shale of Niutitang Formation and Doushantuo Formation in Western Hubei

    doi: 10.3799/dqkx.2022.098
    • Received Date: 2022-03-15
    • Publish Date: 2022-05-25
    • With Yichang as the research area in the paper, the relationships between lithofacies and geological property of Niutitang Formation and Doushantuo Formation shale were studied by drilling, logging and testing data (geological properties includes total organic carbon content, porosity, transverse permeability, brittleness and pore type). The study shows that there are 11 types of lithological shale developed in the western Hubei, and there are obvious differences in geological properties between the different lithological shale. In combination with the characteristics of organic shale, three types of high quality shale were identified: siliceous shale, mud-rich siliceous shale, and mixed shale. The high quality shale contains significantly higher gas contents than the non-high quality shale, which confirms the accuracy of high quality shale identification results. By analyzing the influencing factors of shale logging, it is summarized that high quality shale has the logging response characteristics of high natural gamma ray, high resistivity, high acoustic time difference, high uranium, low density, low thorium and low potassium (four high values and three low values) in conventional logging curves. Thus, a logging identification method is proposed and it is suitable for finding shale reservoirs with low thermal evolution degree, strong hydrocarbon generation potential and easy development in high thermal evolution area of western Hubei.

       

    • loading
    • Bai, L. H., Shi, W. Z., Zhang, X. M., et al., 2021. Characteristics of Permian Marine Shale and Its Sedimentary Environment in Xuanjing Area, South Anhui Province, Lower Yangtze Area. Earth Science, 46(6): 2204-2217 (in Chinese with English abstract).
      Chen, Q., Zhang, J., Tang, X., et al., 2016. Relationship between Pore Type and Pore Size of Marine Shale: An Example from the Sinian-Cambrian Formation, Upper Yangtze Region, South China. International Journal of Coal Geology, 158: 13-28. doi: 10.1016/j.coal.2016.03.001
      Chen, X., Chen, L., Shu, J., et al., 2021. Evaluation of Shale Reservoir Quality by Geophysical Logging for Shuijingtuo Formation of Lower Cambrian in Yichang Area, Central Yangtze. Journal of Earth Science, 32(4): 766-777. doi: 10.1007/s12583-020-1051-1
      Chen, X., Chen, Q., Zhen, Y. Y., et al., 2018. Circumjacent Distribution Pattern of the Lungmachian Graptolitic Black Shale (Early Silurian) on the Yichang Uplift and Its Peripheral Region. Science in China (Series D: Earth Sciences), 48(9): 1198-1206 (in Chinese). http://www.cnki.com.cn/Article/CJFDTotal-JDXG201809004.htm
      Chen, X. H., Wang, C. S., Liu, A., et al., 2017. The Discovery of the Shale Gas in the Cambrian Shuijingtuo Formation of Yichang Area, Hubei Province. Geology in China, 44(1): 188-189 (in Chinese).
      Chen, X. H., Wei, K., Zhang, B. M., et al., 2018a. Main Geological Factors Controlling Shale Gas Reservior in the Cambrian Shuijingtuo Formation in Yichang of Hubei Province as Well as Its and Enrichment Patterns. Geology in China, 45(2): 207-226 (in Chinese with English abstract). http://en.cnki.com.cn/Article_en/CJFDTotal-DIZI201802002.htm
      Chen, X. H., Zhang, B. M., Zhang, G. T., et al., 2018b. High Shale Gas Industry Flow Obtained from the Ordovician Wufeng Formation and the Silurian Longmaxi Formation of Yichang Area, Hubei Province. Geology in China, 45(1): 199-200 (in Chinese).
      Chen, X. H., Zhang, G. T., Hu, Y., 2016. Deposit Environment of the Ediacaran Doushantuo Formation in Yichang Area, Western Hubei Province, China and Its Geological Significance for Shale Gas. Geology and Mineral Resources of South China, 32(2): 106-116 (in Chinese with English abstract).
      Dong, T., He, S., Chen, M., et al., 2019. Quartz Types and Origins in the Paleozoic Wufeng-Longmaxi Formations, Eastern Sichuan Basin, China: Implications for Porosity Preservation in Shale Reservoirs. Marine and Petroleum Geology, 106: 62-73. doi: 10.1016/j.marpetgeo.2019.05.002
      Gai, H. F., Li, T. F., Wang, X., et al., 2020. Methane Adsorption Characteristics of Overmature Lower Cambrian Shales of Deepwater Shelf Facies in Southwest China. Marine and Petroleum Geology, 120: 104565. https://doi.org/10.1016/j.marpetgeo.2020.104565
      Gao, J., Li, Y. Q., He, S., et al., 2021. Exploration Discovery of Shale Gas and Its Indicative Significance to Mineralization of MVT Lead-Zinc Deposit in Yichang Area, West Hubei. Earth Science, 46(6): 2230-2245 (in Chinese with English abstract).
      Huang, T., Cao, L. N., Cai, J. J., et al., 2019. Experimental Investigation on Rock Structure and Chemical Properties of Hard Brittle Shale under Different Drilling Fluids. Journal of Petroleum Science and Engineering, 181: 106185. https://doi.org/10.1016/j.petrol.2019.106185
      Leng, Y., Zhao, D. F., Guo, Y. H., et al., 2019. The Application Status of Shale Gas Reservoir Logging Evaluation. Unconventional Oil & Gas, 6(6): 117-123 (in Chinese with English abstract).
      Li, A., Ding, W. L., Zhang, G. L., et al., 2016. Reservoir Characteristics of Marine Shale in the Malong Block of Eastern Yunnan Province and Comparison Analysis. Earth Science Frontiers, 23(2): 176-189 (in Chinese with English abstract).
      Li, J. B., Wang, M., Lu, S. F., et al., 2020. A New Method for Predicting Sweet Spots of Shale Oil Using Conventional Well Logs. Marine and Petroleum Geology, 113(C): 104097. https://doi.org/10.1016/j.marpetgeo.2019.104097
      Liu, C., Yin, G. Z., Li, M. H., et al., 2019. Shale Permeability Model Considering Bedding Effect under True Triaxial Stress Conditions. Journal of Natural Gas Science and Engineering, 68: 102908. https://doi.org/10.1016/j.jngse.2019.102908
      Liu, L., 2017. Fine Logging Evaluation of Shale Gas Reservoir in the Weiyuan-Changning Area (Dissertation). Southwest Petroleum University, Chengdu (in Chinese with English abstract).
      Lu, Y. B., Hao, F., Lu, Y. C., et al., 2020. Lithofacies and Depositional Mechanisms of the Wufeng-Longmaxi Organic-Rich Shales in the Upper Yangtze Area, South China. AAPG Bulletin, 104 (1): 97-129.
      Meng, Z. P., Guo, Y. S., Liu, W., 2015. Relationship between Organic Carbon Content of Shale Gas Reservoir and Logging Parameters and Its Prediction Model. Journal of China Coal Society, 40(2): 247-253 (in Chinese). http://en.cnki.com.cn/Article_en/CJFDTOTAL-MTXB201502003.htm
      Pang, F., Zhang, Z. H., Zhang, J. F., et al., 2020. Progress and Prospect on Exploration and Development of Shale Gas in the Yangtze River Economic Belt. Earth Science, 45(6): 2152-2159 (in Chinese with English abstract).
      Wang, C., Zhang, B. Q., Shu, Z. G., et al., 2018. Lithofacies Types and Reservoir Characteristics of Marine Shales of the Wufeng Formation-Longmaxi Formation in Fuling Area, the Sichuan Basin. Oil & Gas Geology, 39(3): 485-497 (in Chinese with English abstract). http://en.cnki.com.cn/Article_en/CJFDTOTAL-SYYT201803007.htm
      Wang, D. Y., Yao, J., Chen, Z. X., et al., 2019a. Image-Based Core-Scale Real Gas Apparent Permeability from Pore-Scale Experimental Data in Shale Reservoirs. Fuel, 254: 115596. https://doi.org/10.1016/j.fuel.2019.06.004
      Wang, X. Q., Zhu, Y. M., Lash, G. G., et al., 2019b. Multi-Proxy Analysis of Organic Matter Accumulation in the Upper Ordovician-Lower Silurian Black Shale on the Upper Yangtze Platform, South China. Marine and Petroleum Geology, 103: 473-484. doi: 10.1016/j.marpetgeo.2019.03.013
      Wang, Y., Wang, L., Wang, J., et al., 2019c. Multiscale Characterization of Three-Dimensional Pore Structures in a Shale Gas Reservoir: A Case Study of the Longmaxi Shale in Sichuan Basin, China. Journal of Natural Gas Science and Engineering, 66: 207-216. doi: 10.1016/j.jngse.2019.04.009
      Wang, P., Jiang, Z., Yin, L., et al., 2017. Lithofacies Classification and Its Effect on Pore Structure of the Cambrian Marine Shale in the Upper Yangtze Platform, South China: Evidence from FE-SEM and Gas Adsorption Analysis. Journal of Petroleum Science & Engineering, 156: 307-321.
      Wang, Q. T., Wang, T. L., Liu, W. P., et al., 2019. Relationships among Composition, Porosity and Permeability of Longmaxi Shale Reservoir in the Weiyuan Block, Sichuan Basin, China. Marine and Petroleum Geology, 102: 33-47. doi: 10.1016/j.marpetgeo.2018.12.026
      Wang, R., Ding, W., Wang, X., et al., 2016. Logging Identification for the Lower Cambrian Niutitang Shale Reservoir in the Upper Yangtze Region, China: A Case Study of the Cengong Block, Guizhou Province. Journal of Natural Gas Geoscience, 1(3): 231-241. doi: 10.1016/j.jnggs.2016.08.004
      Wang, Y., Liu, L., Zheng, S., et al., 2019. Full-Scale Pore Structure and Its Controlling Factors of the Wufeng-Longmaxi Shale, Southern Sichuan Basin, China: Implications for Pore Evolution of Highly Overmature Marine Shale. Journal of Natural Gas Science and Engineering, 67: 134-146. doi: 10.1016/j.jngse.2019.04.020
      Wang, Y. X., Xu, S., Hao, F., et al., 2019. Geochemical and Petrographic Characteristics of Wufeng-Longmaxi Shales, Jiaoshiba Area, Southwest China: Implication for Organic Matter Differential Accumulation. Mar. Pet. Geol., 102: 138-154. doi: 10.1016/j.marpetgeo.2018.12.038
      Wu, L. Y., Hu, D. F., Lu, Y. C., et al., 2016. Advantageous Shale Lithofacies of Wufeng Formation Longmaxi Formation in Fuling Gas Field of Sichuan Basin, SW China. Petroleum Exploration and Development, 43(2): 208-217. doi: 10.1016/S1876-3804(16)30024-6
      Xu, S., Gou, Q. Y., Hao, F., et al., 2020. Shale Pore Structure Characteristics of the High and Low Productivity Wells, Jiaoshiba Shale Gas Field, Sichuan Basin, China: Dominated by Lithofacies or Preservation Condition?. Marine and Petroleum Geology, 114: 104211. doi: 10.1016/j.marpetgeo.2019.104211
      Yan, L., 2019. Comprehensive Logging Evaluation Technology and Application Research for Marine Shale Gas in Southern Sichuan (Dissertation). Chengdu University of Technology, Chengdu (in Chinese with English abstract).
      Yang, W., He, S., Iglauer, S., et al., 2019. Porosity Characteristics of Different Lithofacies in Marine Shale: A Case Study of Neoproterozoic Sinian Doushantuo Formation in Yichang Area, China. Journal of Petroleum Science and Engineering, 187(23): 106856.
      Zheng, D. Y., Wu, S. X., Hou, M. C., 2021. Fully Connected Deep Network: An Improved Method to Predict TOC of Shale Reservoirs from Well Logs. Marine and Petroleum Geology, 132: 105205. doi: 10.1016/j.marpetgeo.2021.105205
      Zhou, S. L., Yin, S., Wang, F. Q., et al., 2017. Experimental Analysis of the Effect of Stress on Shale Reservoir Brittleness and Its Application. Petroleum Drilling Techniques, 45(3): 113-120 (in Chinese with English abstract). http://en.cnki.com.cn/Article_en/CJFDTOTAL-SYZT201703023.htm
      Zhu, L. Q., Zhou, X. Q., Zhang, C. M., 2021. Rapid Identification of High-Quality Marine Shale Gas Reservoirs Based on the Oversampling Method and Random Forest Algorithm. Artificial Intelligence in Geosciences, 2: 76-81. https://doi.org/10.1016/J.AIIG.2021.12.001
      Zhu, Y. Q., Wang, X. Z., Feng, M. Y., et al., 2016. Lithofacies Classification and Its Relationship with Reservoir of the Lower Paleozoic Wufeng-Longmaxi Formation in the Eastern Sichuan Basin. Lithologic Reservoirs, 28(5): 59-66 (in Chinese with English abstract). http://en.cnki.com.cn/Article_en/CJFDTotal-YANX201605007.htm
      Zou, C. N., Dong, D. Z., Wang, Y. M., et al., 2015. Shale Gas in China: Characteristics, Challenges and Prospects (Ⅰ). Petroleum Exploration and Development, 42(6): 689-701 (in Chinese with English abstract). http://en.cnki.com.cn/Article_en/CJFDTOTAL-SKYK201506002.htm
      Zou, C. N., Dong, D. Z., Wang, Y. M., et al., 2016. Shale Gas in China: Characteristics, Challenges and Prospects (Ⅱ). Petroleum Exploration and Development, 43(2): 166-178 (in Chinese with English abstract).
      白卢恒, 石万忠, 张晓明, 等, 2021. 下扬子皖南宣泾地区二叠系海相页岩特征及其沉积环境. 地球科学, 46(6): 2204-2217. doi: 10.3799/dqkx.2020.372
      陈旭, 陈清, 甄勇毅, 等, 2018. 志留纪初宜昌上升及其周缘龙马溪组黑色笔石页岩的圈层展布模式. 中国科学(D辑: 地球科学), 48(9): 1198-1206. https://www.cnki.com.cn/Article/CJFDTOTAL-JDXK201809006.htm
      陈孝红, 王传尚, 刘安, 等, 2017. 湖北宜昌地区寒武系水井沱组探获页岩气. 中国地质, 44(1): 188-189. https://www.cnki.com.cn/Article/CJFDTOTAL-DIZI201701014.htm
      陈孝红, 危凯, 张保民, 等, 2018a. 湖北宜昌寒武系水井沱组页岩气藏主控地质因素和富集模式. 中国地质, 45(2): 207-226. https://www.cnki.com.cn/Article/CJFDTOTAL-DIZI201802002.htm
      陈孝红, 张保民, 张国涛, 等, 2018b. 湖北宜昌地区奥陶系五峰组‒志留系龙马溪组获页岩气高产工业气流. 中国地质, 45(1): 199-200. https://www.cnki.com.cn/Article/CJFDTOTAL-DIZI201801021.htm
      陈孝红, 张国涛, 胡亚, 2016. 鄂西宜昌地区埃迪卡拉系陡山沱组页岩沉积环境及其页岩气地质意义. 华南地质与矿产, 32(2): 106-116. doi: 10.3969/j.issn.1007-3701.2016.02.002
      高键, 李英强, 何生, 等, 2021. 鄂西宜昌地区页岩气勘探发现对MVT铅锌矿成矿的指示意义. 地球科学, 46(6): 2230-2245. doi: 10.3799/dqkx.2020.186
      冷玥, 赵迪斐, 郭英海, 等, 2019. 页岩气储层测井评价技术研究与应用现状. 非常规油气, 6(6): 117-123. doi: 10.3969/j.issn.2095-8471.2019.06.019
      李昂, 丁文龙, 张国良, 等, 2016. 滇东地区马龙区块筇竹寺组海相页岩储层特征及对比研究. 地学前缘, 23(2): 176-189. https://www.cnki.com.cn/Article/CJFDTOTAL-DXQY201602021.htm
      刘璐, 2017. 威远‒长宁构造页岩气储层测井精细评价(硕士学位论文). 成都: 西南石油大学.
      孟召平, 郭彦省, 刘尉, 2015. 页岩气储层有机碳含量与测井参数的关系及预测模型. 煤炭学报, 40(2): 247-253. https://www.cnki.com.cn/Article/CJFDTOTAL-MTXB201502003.htm
      庞飞, 张作衡, 张君峰, 等, 2020. 长江经济带页岩气勘探开发进展及建议. 地球科学, 45(6): 2152-2159. doi: 10.3799/dqkx.2020.061
      王超, 张柏桥, 舒志国, 等, 2018. 四川盆地涪陵地区五峰组‒龙马溪组海相页岩岩相类型及储层特征. 石油与天然气地质, 39(3): 485-497. https://www.cnki.com.cn/Article/CJFDTOTAL-SYYT201803007.htm
      颜磊, 2019. 川南海相页岩气测井综合评价技术及应用研究(博士学位论文). 成都: 成都理工大学.
      周顺林, 尹帅, 王凤琴, 等, 2017. 应力对泥页岩储层脆性影响的试验分析及应用. 石油钻探技术, 45(3): 113-120. https://www.cnki.com.cn/Article/CJFDTOTAL-SYZT201703023.htm
      朱逸青, 王兴志, 冯明友, 等, 2016. 川东地区下古生界五峰组‒龙马溪组页岩岩相划分及其与储层关系. 岩性油气藏, 28(5): 59-66. doi: 10.3969/j.issn.1673-8926.2016.05.007
      邹才能, 董大忠, 王玉满, 等, 2015. 中国页岩气特征、挑战及前景(一). 石油勘探与开发, 42(6): 689-701. doi: 10.11698/PED.2015.06.01
      邹才能, 董大忠, 王玉满, 等, 2016. 中国页岩气特征、挑战及前景(二). 石油勘探与开发, 43(2): 166-178. doi: 10.11698/PED.2016.02.02
    • 加载中

    Catalog

      通讯作者: 陈斌, bchen63@163.com
      • 1. 

        沈阳化工大学材料科学与工程学院 沈阳 110142

      1. 本站搜索
      2. 百度学术搜索
      3. 万方数据库搜索
      4. CNKI搜索

      Figures(7)  / Tables(3)

      Article views (1136) PDF downloads(95) Cited by()
      Proportional views

      /

      DownLoad:  Full-Size Img  PowerPoint
      Return
      Return