Page 216 - 《应用声学》2025年第3期
P. 216

750                                                                                  2025 年 5 月


              [8] Tan B, Zhang K, Su Y, et al. Research on acoustic log-  [13] 臧艳彬, 王瑞和, 李新芝, 等. 基于密度测井资料计算上覆岩
                 ging while drilling transmitting technologies[J]. Journal of  层压力的不确定性分析 [J]. 中国石油大学学报 (自然科学版),
                 Geophysics and Engineering, 2022, 19(3): 511–520.  2010, 34(6): 60–65.
              [9] 王盼, 胡益涛, 刘挺, 等. 地层声波时差的 Faust 改进算法及应             Zang Yanbin, Wang Ruihe, Li Xinzhi, et al.  Uncer-
                 用 [J]. 钻采工艺, 2022, 45(3): 9–14.                   tainty analysis of calculating overburden pressure based
                 Wang Pan, Hu Yitao, Liu Ting, et al. Faust improved  on density logging data[J]. Journal of China University of
                 algorithm for formation acoustic time difference and its  Petroleum, 2010, 34(6): 60–65.
                 application[J]. Drilling and Production Technology, 2022,  [14] 郭大立, 王玉基, 张小栓, 等. 基于随钻测井数据预测破裂压
                 45(3): 9–14.                                      力 [J]. 科学技术与工程, 2023, 23(5): 1923–1930.
             [10] 张祯祥, 杨进, 孙挺, 等. 卸载型异常高压地层压力预测方                   Guo Dali, Wang Yuji, Zhang Xiaoshuan, et al. Predic-
                 法 [J]. 石油钻采工艺, 2020, 42(5): 553–557.              tion of fracture pressure based on logging-while-drilling
                 Zhang Zhenxiang, Yang Jin, Sun Ting, et al. A method for  data[J]. Science Technology and Engineering, 2023, 23(5):
                 predicting the pressure of unloading-type abnormal pres-  1923–1930.
                 sure formation[J]. Oil Drilling & Production Technology,  [15] 杨芳, 覃军, 李兆丰, 等. 昭通地区页岩气水平井钻井难点与
                 2020, 42(5): 553–557.                             对策分析 [J]. 天然气勘探与开发, 2019, 42(2): 129–136.
             [11] 徐源, 庞雄奇, 胡涛, 等. 利用泥岩声波时差预测地层压力方                  Yang Fang, Qin Jun, Li Zhaofeng, et al. Horizontal-well
                 法优选 [J]. 特种油气藏, 2018, 25(4): 46–50.               drilling challenges and solutions for shale gas, Zhaotong
                 Xu Yuan, Pang Xiongqi, Hu Tao, et al. Selection of for-  area[J]. Natural Gas Exploration and Development, 2019,
                 mation pressure prediction methods based on mudstone  42(2): 129–136.
                 interval transit time[J]. Special Oil and Gas Reservoirs,  [16] 陈志鹏, 梁兴, 张介辉, 等. 昭通国家级示范区龙马溪组页
                 2018, 25(4): 46–50.                               岩气储层超压成因浅析 [J]. 天然气地球科学, 2016, 27(3):
             [12] 王越之, 李自俊. 用密度测井法检测地层压力的实践 [J]. 大庆                442–448.
                 石油地质与开发, 1997, 16(3): 71–75, 81.                  Chen Zhipeng, Liang Xing, Zhang Jiehui, et al. Genesis
                 Wang Yuezhi, Li Zijun. Detecting formation pressure by  analysis of shale reservoir over-pressure of Longmaxi for-
                 densilog[J] Petroleum Geology & Oilfield Development in  mation in Zhaotong demonstration area, Dianqianbei de-
                 Daqing, 1997, 16(3): 71–75, 81.                   pression[J]. Natural Gas Gescience, 2016, 27(3): 442–448.
   211   212   213   214   215   216   217   218   219   220   221