Page 135 - 《应用声学》2024年第6期
P. 135
第 43 卷 第 6 期 李萌等: 套管井超声弯曲波测井逆时偏移数值实验研究 1311
因此 RTM 技术可以实现对外层套管的成像,确定 六)—专题七十六: 深部矿产资源探测技术与应用, 专题七十
外层套管的位置与偏心程度; 七: 岩石物理与井中探测前沿, 专题七十八: 井孔地球物理及
深部钻测, 2020.
(6) 速度模型是 RTM成像的关键,目前超声弯
[11] van Kuijk R, Zeroug S, Froelich B, et al. A novel ul-
曲波测井缺乏对水泥和地层介质的有效速度分析 trasonic cased-hole imager for enhanced cement evalua-
方法,未来可以发展套管井全波形反演方法,计算套 tion[C]//International Petroleum Technology Conference.
IPTC, 2005: IPTC-10546-MS.
后介质的弹性参数分布,为 RTM 成像提供合理的
[12] Morris C, Sabbagh L, Wydrinski R, et al. Application of
速度模型。 enhanced ultrasonic measurements for cement and casing
evaluation[C]//SPE/IADC Drilling Conference and Exhi-
bition. SPE, 2007: SPE-105648-MS.
参 考 文 献 [13] Froelich B. Multimode evaluation of cement behind steel
pipe[J]. The Journal of the Acoustical Society of America,
2008, 123(5): 3648.
[1] 李维彦, 章成广. 固井质量测井评价 [M]. 北京: 科学出版社,
[14] 陈雪莲, 李建赛, 唐晓明, 等. 套管中泄漏弯曲型 Lamb 波的
2016: 5–36.
传播特征 [J]. 声学学报, 2016, 41(3): 296–304.
[2] 王华, 陶果, 尚学峰, 等. 轻质水泥固井质量声波测井评述与
Chen Xuelian, Li Jiansai, Tang Xiaoming, et al. The
方法研究 [J]. 测井技术, 2014, 38(2): 165–173.
propagation characteristics of leaky flexural-Lamb waves
Wang Hua, Tao Guo, Shang Xuefeng, et al. Review and
in casing[J]. Acta Acustica, 2016, 41(3): 296–304.
study on acoustic/ultrasonic methods for low-density ce-
[15] Thierry S, Klieber C, Lemarenko M, et al. New-generation
ment bond logging[J]. Well Logging Technology, 2014,
ultrasonic measurements for quantitative cement evalua-
38(2): 165–173.
tion in heavy muds and thick-wall casings[C]//SPE An-
[3] 孙建孟, 苏远大, 李召成, 等. 定量评价固井 II 界面胶结质量
nual Technical Conference and Exhibition. OnePetro,
的方法研究 [J]. 测井技术, 2004, 28(3): 199–202, 269.
2016.
Sun Jianmeng, Su Yuanda, Li Zhaocheng, et al. Quanti-
[16] Viggen E M, Johansen T F, Merciu I A. Analysis of
tative evaluation of second interface cementing quality[J].
outer-casing echoes in simulations of ultrasonic pulse-
Well Logging Technology, 2004, 28(3): 199–202, 269.
echo through-tubing logging[J]. Geophysics, 2016, 81(6):
[4] van Kuijk R, Zeroug S, Froelich B, et al. A novel ul-
D679–D685.
trasonic cased-hole imager for enhanced cement evalua-
[17] 许飞龙. 斜入射有限声束超声波固井质量检测方法研究 [D].
tion[C]//International Petroleum Technology Conference.
哈尔滨: 哈尔滨工业大学, 2018.
IPTC, 2005: IPTC-10546-MS.
[18] He X, Chen H, Wang X. Ultrasonic leaky flexural waves
[5] Zeroug S, Bose S, Sinha B, et al. Sonic and ultrasonic
measurement applications for cased oil wells[J]. Insight- in multilayered media: cement bond detection for cased
Non-Destructive Testing and Condition Monitoring, 2016, wellbores[J]. Geophysics, 2014, 79(2): A7–A11.
58(8): 423–430. [19] Duan W X, Qiao W X, Che X H, et al. Acoustic evaluation
[6] 李盛清, 林剑松, 江灿, 等. 随钻声波测井固井质量评价理论 of cementing quality using obliquely incident ultrasonic
与数值模拟研究 [J]. 地球物理学报, 2020, 63(7): 2762–2773. signals[J]. Applied Geophysics, 2014, 11(3): 269–276.
Li Shengqing, Lin Jiansong, Jiang Can, et al. Theoret- [20] 杨旭辉, 余厚全, 陈强, 等. 泄漏 Lamb 波在固井质量评价中
ical and numerical simulation of LWD acoustic cement 的应用 [J]. 应用声学, 2017, 36(3): 241–248.
logging[J]. Chinese Journal of Geophysics, 2020, 63(7): Yang Xuhui, Yu Houquan, Chen Qiang, et al. The
2762–2773. application of leaky Lamb waves in cementing quality
[7] 陈德华, 王秀明, 张海澜, 等. 水泥密度和套管尺寸对油井套 evaluation[J]. Journal of Applied Acoustics, 2017, 36(3):
管波的影响 [J]. 声学学报, 2008, 33(1): 15–20. 241–248.
Chen Dehua, Wang Xiuming, Zhang Hailan, et al. The [21] 胡文祥, 王浩, 马琦, 等. 套管井超声导波成像系统开发与工
effects of cement density and casing dimension on casing 程应用研究 [J]. 应用声学, 2020, 39(1): 20–28.
waves in oil wells[J]. Acta Acustica, 2008, 33(1): 15–20. Hu Wenxiang, Wang Hao, Ma Qi, et al. Development and
[8] Song R L, Liu J S, Lyu X M, et al. Effects of tool ec- application for ultrasonic imaging system based on guided
centralization on cement-bond-log measurements: numer- waves in cased boreholes[J]. Journal of Applied Acoustics,
ical and experimental results[J]. Geophysics, 2013, 78(4): 2020, 39(1): 20–28.
D181–D191. [22] Sirevaag T, Johansen T F, Larsen I, et al. A study
[9] Che X H, Qiao W X, Ju X D, et al. Azimuthal cement of the flexural attenuation technique through laboratory
evaluation with an acoustic phased-arc array transmit- measurements and numerical simulations[J]. Petrophysics,
ter: numerical simulations and field tests[J]. Applied Geo- 2020, 61(4): 334–351.
physics, 2016, 13(1): 194–202. [23] Wang H, Li M, Fang Z, et al. Cased-hole reverse time
[10] 王华, 陈蒙, 刘露梅, 等. 复杂井况下的超声波 Lamb 波场 migration imaging using ultrasonic pitch-catch measure-
特征 [C]. 2020 年中国地球科学联合学术年会论文集 (二十 ment: theory and synthetic case studies[J]. Geophysics,