科研成果

2022-2023年实验室发表论文

发布时间:2022-03-03浏览次数:834

[1]Probabilistic Fisher discriminant analysis based on Gaussian mixture model for estimating shale oil sweet spots,Kun LUO, Zhaoyun ZONG,Frontiers of Earth Science

[2]Zhengqian Ma, Xingyao Yin, Zhaoyun Zong, Fracture parameters estimation from azimuthal seismic data in orthorhombic medium, Journal of Natural Gas Science and Engineering, 2022, 100: 104470.

[3]印兴耀,马正乾,向伟,等. 地震岩石物理驱动的裂缝预测技术研究现状与进展( Ⅰ ) —裂缝储层岩石物理理论[J]. 石油物探, 2022, 61(2): 183-204.

[4] Yurong Wang , Zhaoyun Zong, Xingyao Yin, Fluid Discrimination Incorporating Amplitude Variation with angle inversion and squirt flow of the fluid, Petroleum Science, 2022. https://doi.org/10.1016/j.petsci.2022.03.007.

[5]G.-S. Cheng, X.-Y. Yin, Z.-Y. Zong et al., Complex spherical-wave elastic inversion using amplitude and phase reflection information, Petroleum Science,https://doi.org/10.1016/j.petsci.2021.12.005

[6] Chen Fubin, Zong Zhaoyun*, Yin Xingyao, 2022, Acoustothermoelasticity for joint effects of stress and thermal fields on wave dispersion and attenuation. Journal of Geophysical Research-Solid Earth, e2021JB023671. doi:10.1029/2021JB023671.

[7] Chen Fubin, Zong Zhaoyun*, Yang Yaming, Gu Xingyu, 2022, AVO inversion using P- to S-wave velocity ratio and P-wave velocity. Geophysics, 87(4), 1-74. doi:10.1190/geo2021-0623.1.

[8]Yang Yaming, Xingtong Xia, Xingyao Yin, Kun Li, Jianli Wang, and Haojie Liu. 2022, Data-driven fast prestack structually constrained inversion: Geophysics, 87(3): N31-N43.

[9] 周琦,印兴耀, 李坤. 煤系地层地震岩石物理建模及横波预测方法. 石油地球物理勘探,2022,57(2):357-366.

[10] Xiao Chen, Zhaoyun Zong, and Xiaoyang Qu, 2022, P-wave reflectivity parameterization and non-linear inversion in terms of Young's modulus and Poisson ratio: Interpretation, 10(3): 1-59. doi:10.1190/int-2021-0241.1.

[11] Pei Song, Xingyao Yin, Kun Li, 2022, Full-time domain matching pursuit and empirical mode decomposition based sparse fixed-point seismic inversion.Journal of Geophysics and Engineering: 19, 255-268.

[12]Zhengqian Ma, Xingyao Yin, Kun Li, Yuanyuan Tan, Fourier Coefficients Variation with Angle for Fracture Detection and Fluid Discrimination in Tilted Transversely Isotropic Media, Surveys in Geophysics, 2022, https://doi.org/10.1007/s10712-022-09704-5.

[13]印兴耀, 马正乾, 宗兆云, 等. 地震岩石物理驱动的裂缝预测技术研究现状与进展( Ⅱ ) ——五维地震裂缝预测技术[J]. 石油物探,2022,61(3) :373-391.

[14] Song L, Yin X, Zong Z, et al. Cooperative multi-networks semi-supervised pre-stack seismic inversion[J]. Geophysical Journal International, 2022.

[15] 潘辉, 印兴耀, 李坤, 裴松. 2022. 地震反演驱动的改进匹配追踪煤层识别方法. 地球物理学报,65(6):2276-2293,DOI:10.6038/cig2022P0211.

[16]Pei S, Yin X, Li K. Improved fixedpoint seismic inversion constrained by instantaneous phase[J]. Journal of Petroleum Science and Engineering, 2022: 110653.

[17] Yijun Xi, Xingyao Yin, Xiaojing Liu, Deyong Feng, and Hongmei Li, (2022) , "Amplitude-variation-with-offset inversion based on group sparse regularization,"Interpretation 10:SA1-SA14. 

[18] Song L, Yin X, Zong Z, et al. Two-stage semi-supervised learning inversion for reservoir physical parameters[J]. Journal of Petroleum Science and Engineering, 2002, 216: 110794.

[19] Yin L, Yin X, Li K. Elastic moduli parameterization and inversion considering nanopores effects in shale[J]. Interpretation, 2022, 0: 1-37.

[20] Chen Fubin, Zong Zhaouyun, 2022, PP wave reflection coefficient in stress-induced anisotropic media and AVAZ inversion. Geophysics, 86(6), 1-103.

[21] Chen Fubin, Zong Zhaoyun, Yin Xingyao, 2022. Monitoring the change in horizontal stress with multi-wave time-lapse seismic response based on nonlinear elasticity theory, Petroleum Science, PETSCI354. doi: https://doi.org/10.1016/j.petsci.2022.09.022. 

[22] Linjie Yin, Xingyao Yin, Kun Li, Rock physics model for shale gas reservoirs with nanopore adsorption, Journal of Geophysics and Engineering, Volume 19, Issue 5, October 2022, Pages 1012-1027.

[23] Xi, Yijun, and Xingyao Yin. 2022. "Seismic Response Models and the AVO Simulation of Coal_Bearing Reservoirs" Minerals 12, no. 7:836. https://doi.org/10.3390/min12070836

[24] Zong Zhaoyun, Chen Fubin, Yin Xingyao, Li Kun, 2022, Effect of stress on wave propagation in fluid-saturated porous thermoelastic media. Surveys in Geophysics, Accept. 10.1007/s10712-022-09743-y

[25] Lan, T., Z. Zong, and Y. Feng, 2022, An improved seismic fluid identification method incorporating squirt flow and frequency-dependent fluid-solid inversion: Interpretation, 11(1),1-66. doi: 10.1190/int-2022-0053.1.

[26]Jia, W., Z. Zong, and T. Lan, 2023, Elastic impedance inversion incorporating fusion initial model and kernel Fisher discriminant analysis approach: 

Journal of Petroleum Science and Engineering, 220, 111235.https://doi.org/10.1016/j.petrol.2022.111235.

[27] Yang, W., Z. Yang, Z. Zong, Q. Sun, and X. Yan, 2022, AVA inversion for novel fluid indicator considering consolidation parameter:Journal of Geophysics and Engineering,19(6), 1280-1299. https://doi.org/10.1093/jge/gxac083.

[28]裴松, 印兴耀, 李坤. 全域正则化快速匹配追踪稀疏地震反演方法[J]. 石油地球物理勘探,2022, 57(6):1400-1408,1426.

[29] Xiang W, Yin X, Ma Z, et al. Fracture Detection With Azimuthal Seismic Amplitude Difference Inversion in Weakly Monoclinic Medium[J]. IEEE Transactions on Geoscience and Remote Sensing. 2022, 60: 1-16.doi: 10.1109/TGRS.2022.3224990.

[30]Chen, X., Z. Zong and Y. Zuo, 2022, Direct exact nonlinear broadband seismic amplitude variations with offset inversion for Young’s modulus: IEEE Transactions on Geoscience and Remote Sensing. doi: 10.1109/TGRS.2022.3231594.

[31] Ji, L., Zong, Z. & Yang, Y., 2023. Azimuthal amplitude difference inversion constrained by azimuth velocity anisotropy:Geophysical Journal International, 233(1), 549-563. doi:10.1093/gji/ggac483

[32] Chen, X., Z. Zong, Y. Yang and Y. Zeng, 2022, Frequency-dependent nonlinear AVO inversion for Q-factors in viscoelastic media: IEEE Transactions on Geoscience and Remote Sensing. doi: 10.1109/TGRS.2022.3233357

[33]  Chen, F. B., Zong, Z. Y., Stovas, A., and Yin, X. Y., 2023, Wave reflection and transmission coefficients for layered transversely isotropic media with vertical symmetry axis under initial stress: Geophysical Journal International, 233(3), 1580-1595. doi: 10.1093/gji/ggad011.