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贺艳晓

姓名 贺艳晓
性别 发明专利4999代写全部资料
学校 中国石油大学
部门 地球物理学院/物探系
学位 博士
学历 专任教师
职称 副教授
联系方式 实用新型1875包写包过
邮箱 yxhe123@cup.edu.cn
   
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教育经历 2011-10至2015-05, 英国利兹大学, 地球物理, 博士研究生 2008-09至2011-07, 中国石油大学(北京), 地球探测信息与技术, 硕士研究生 2004-09至2008-07, 大庆石油学院, 勘查技术与工程, 大学本科 个人概况 贺艳晓 研究方向: 多频段岩石物理实验、理论与应用,地震反演与储层预测,时移地震与CO2地质封存监测,裂缝介质数值模拟 社会与学术兼职: [1] 中国地球物理学会会员 [2] SEG(美国勘探地球物理学家协会)会员 [3] EAGE(欧洲地质学家与工程师学会)会员 代表性期刊论文: [1] He, Y.-X., Wang, S.X., C., Sun, G.Y., Tang, and Zhu, W., 2021, Analysis of the frequency dependence characteristics of wave attenuation and velocity dispersion using a poroelastic model with mesoscopic and microscopic heterogeneities. Geophysical Prospecting, 69(6), 1260-1281, doi: 10.1111/1365-2478.13101. (SCI) [2] He, Y.-X., Wang, S.X , Guo, R., Yuan, S.Y., Zhao, J.G., Chen, M., 2021, An efficient phase decomposition of seismic reflections from thin-layer targets for better reservoir characterization. IEEE Geoscience and Remote and Sensing Letters, doi: 10.1109/LGRS.2021.3073819. (SCI) [3] He, Y.-X., He, G., Yuan, S.Y., Zhao, J.G. and Wang, S.X., 2020, Bayesian frequency- frequency-dependent AVO inversion using an improved Markov Chain Monte Carlo method for quantitative gas saturation prediction in a thin layer. IEEE Geoscience and Remote and Sensing Letters, doi: 10.1109/LGRS.2020.3046283. (SCI) [4] He, Y.-X., Wang, S.X., Yuan, S.Y., Tang, G.Y. and Wu, X.Y., 2020, An improved approach for hydrocarbon detection using Bayesian inversion of frequency- and angle-dependent seismic signatures of highly attenuative reservoirs. IEEE Geoscience and Remote and Sensing Letters, doi: 10.1109/LGRS.2020.3017627. (SCI) [5] He, Y.-X., Li, X.-L., Tang, G.Y., Dong, C.H., Chen, M. and Wang, S.X., 2021, Modeling the effects of fracture fill on frequency-dependent anisotropy and AVO response of a fractured porous layer. Petroleum Science, 18(3), 758-772, doi: 10.1007/s12182-021-00555-0. (SCI) [6] He, Y.-X., Wang, S.X., Tang, G.Y., Wu, X.Y. and Xi, B., 2021, Analysis of wave dispersion and attenuation effects on seismic low-frequency reflections of a poroelastic layer. Exploration Geophysics, 52(1), 77-97, doi: 10.1080/08123985.2020.1767504. (SCI) [7] He, Y.-X., Wang, S.X., Wu, X.Y. and Xi, B., 2020, Influence of frequency-dependent anisotropy on seismic amplitude-versus-offset signatures for fractured poroelastic rocks. Geophysical Prospecting, 68(7), 2141-2163, doi: 10.1111/1365-2478.12981. (SCI) [8] He, Y.-X. and Wang, S.X., 2020, Analysis of reservoir heterogeneity-induced amplification effect on time-lapse seismic responses of fluid substitution: A physical modelling study. Geophysical Prospecting, 68(6), 1906-1926, doi: 10.1111/1365-2478.12950. (SCI) [9] He, Y.-X., Wang, S.X. and Wu, X.Y., 2020, Effects of patch size changes on the time-lapse seismic reflections of highly attenuating reservoirs. Journal of Applied Geophysics, 172, 103878, doi: 10.1016/j.jappgeo.2019.103878. (SCI) [10] He, Y.-X., Wu, X.Y., Wang, S.X. and Zhao, J.-G., 2019, Reflection dispersion signatures due to wave-induced pressure diffusion in heterogeneous poroelastic media. Exploration Geophysics, 50(5), 541-553, doi: 10.1080/08123985.2019.1606208. (SCI) [11] He, Y.-X., Wu, X.Y., Fu, K., Zhou, D. and Wang, S.X., 2018, Modeling the Effect of Microscopic and Mesoscopic Heterogeneities on Frequency-Dependent Attenuation and Seismic Signatures. IEEE Geoscience and Remote and Sensing Letters, 15(8), 1174-1178, doi: 10.1109/LGRS.2018.2829837. (SCI) [12] He, Y.-X., Angus, D.A., Blanchard, T.D., Wang, G.-L., Yuan, S.-Y. and Garcia, A., 2016, Time-lapse seismic waveform modelling and attribute analysis using hydromechanical models for a deep reservoir undergoing depletion. Geophysical Journal International, 205(1), 389-407, doi: 10.1093/gji/ggw020. (SCI) [13] He, Y-X., Angus, D.A., Clark, R.A. and Hildyard, M.W., 2016, Analysis of time-lapse travel-time and amplitude changes to assess reservoir compartmentalization. Geophysical Prospecting, 64, 54-67, doi: 10.1111/1365-2478.12250. (SCI) [14] He, Y.-X., Angus, D.A., Yuan, S.Y., Blanchard, T.D., Clark, R.A. and Hildyard, M.W., 2015, Time-lapse seismic interpretation in τ-p space using pre-stack data. Journal of Seismic Exploration, 24, 475-496. (SCI) [15] He, Y.-X., Angus, D.A., Yuan, S.Y., and Xu, Y.G., 2015, Feasibility of time-lapse AVO and AVOA analysis to monitor compaction-induced seismic anisotropy. Journal of Applied Geophysics, 122, 134-148, doi: 10.1016/j.jappgeo.2015.09.010. (SCI) [16] Zhao, J.G., He, Y.-X.*, He, G., He, W.T., Li, Q. and Wang, S.X., 2021, A novel approach for evaluating gas saturation effects on the phase reversal characteristics of seismic AVO responses from strongly attenuating reservoirs. IEEE Geoscience and Remote and Sensing Letters, doi: 10.1109/LGRS.2021.3049265. (SCI) [17] 欧阳芳, 赵建国, 李智, 肖增佳, 贺艳晓, 赵皓, 任静, 2021, 基于等效介质理论的孔隙纵横比分布反演. 地球物理学报, 64(3), 1016-1033. doi: 10.6038/cjg2021O0348. [18] 欧阳芳, 赵建国, 李智, 肖增佳, 贺艳晓, 邓继新, 赵皓, 任静, 2021, 基于微观孔隙结构特征的速度频散和衰减模拟. 地球物理学报, 64(3), 1034-1047. doi: 10.6038/cjg2021O0355. [19] Dong, Chunhui, Tang, Gengyang, Wang, Shangxu and He, Yanxiao, 2017, Numerical Simulation and analysis for low-frequency rock physics measurements. Journal of Geophysics and Engineering, 14, 1203-1214, doi.org/10.1088/1742-2140/aa7300. (SCI) [20] Wang, S.X., Yuan, S.Y., Yan, B.P., He, Y-X. and Sun, W.J., 2016, Directional complex-valued conherence attributes for discontinuous edge detection. Journal of Applied Geophysics, 129, 1-7, doi: 10.1016/j.jappgeo.2016.03.016. (SCI) [21] Yuan, S.Y., Wang, S.X., Luo, C.M. and He, Y-X., 2015, Simultaneous multitrace impedance inversion with transform-domain sparsity promotion. Geophysics, 80(2), R71-R80, doi: 10.1190/GEO2014-0065.1. (SCI) [22] 赵立明, 唐跟阳, 王尚旭, 董春晖, 贺艳晓, 赵建国, 孙超, 韩旭, 2019, 低频地震岩石物理测量系统改进及致密砂岩实验研究. 石油科学通报, 4(2), 111-122. 代表性会议论文: [1] He, Y-X., Fu, K., Wu, X.Y., Wang, T.Y. and Wang, S.X., 2018, Using hydro-mechanical simulation models to assess the influences of media heterogeneity on time-lapse seismic signatures. 80th EAGE Conference & Exhibition, Copenhagen, Denmark, Expanded Abstracts, doi: 10.3997/2214-4609.201801288. June 2018, Volume 2018, p.1-5 (EI) [2] He, Y-X., Zhou, D., Chen, S. and Wang, S.-X., 2017, 4D seismic responses of heterogeneous reservoirs using lab physical modelling to understand uncertainties in seismic attributes. 79th EAGE Conference & Exhibition, Paris, France, Expanded Abstracts, p 4781-4785, doi: 10.3997/2214-4609.201700694. (EI) [3] He, Y-X. and Angus, D.A., 2014, Pre-stack time-lapse seismic attributes analysis in tau-p domain. 76th EAGE Conference & Exhibition, Amsterdam, Netherlands, Expanded Abstracts, p 4781-4785, doi: 10.3997/2214-4609.20141255. (EI) [4] He, Y-X., Angus, D.A., Hildyard, M.W. and Clark, R.A., 2013, Time-lapse seismic waveform modelling – Anisotropic ray tracing using hydro-mechanical simulation models. 75th EAGE Conference & Exhibition, London, U.K., Expanded Abstracts, p 4055-4059, doi: 10.3997/2214-4609.20130855. (EI) 国家发明专利: [1] 基于多尺度岩石物理模型的AVAF模拟方法及装置. ZL 2018 1 0047664.1, 2019年授权,排名第1. [2] 尺度波致流模型的建立方法、装置及设备. 202010651687.0, 未授权,排名第1. [3] 分相位地震数据的处理方法、装置及服务器. 202011051918.0, 未授权,排名第1. [4] 地震波速度频散及衰减的预测方法、装置及系统. 202110296036.9, 未授权,排名第1. 承担项目情况: [1] 国家自然科学基金青年科学基金项目,《面向非均质油藏动态表征的物理模拟实验研究》,2019.01-2021.12, 主持 [2] 国家自然科学基金联合基金项目(企业创新发展联合基金),项目名称:《海相深层油气富集机理与关键工程技术基础研究》,课题名称:《海相深层复杂构造成像与多类型储层预测方法》,专题《深层高温高压储层低频岩石物理响应机理》,2020年01月01日-2023年12月31日,参与(专题负责人) [3] 国家自然科学基金重点基金项目,《稠油油藏多频段岩石物理实验、理论及应用研究》,2020.01-2024.12,参与(排名第3) [4] 国家自然科学基金面上基金项目,《球面波反射系数低频频变的一种简洁描述及在小角度资料密度反演中的应用》,2017.01-2020.12,参与 [5] 国家重点研发计划项目,《高分辨率地震实时成像理论与技术》,2019.09-2024.08月,参与 [6] 中国石油科技创新基金研究项目,《复杂介质条件下的地震散射波储层参数反演方法研究》, 2018.07—2020.06,负责人。 [7] 北京市自然科学基金青年项目,《基于物理实验与数值模拟的非均质储层动态响应特征研究》,2017.01—2018.12,负责人 [8] 中国石油大学(北京)青年拔尖人才基金项目, 《基于岩石物理及4D地震技术进行储层特征化》,2016.01—2019.12,负责人 [9] 中国石化地球物理重点实验室开放基金项目,《深部致密砂岩储层跨频段岩石物理实验测量与分析研究》,2021.01—2022.12,负责人 [10] 中国石化弹性波理论与探测技术重点实验室开放基金项目,《孔裂隙介质频率域粘弹性波动方程地震响应高精度模拟与AVO特征分析》,2021.01—2022.12,负责人 指导硕士研究生: 2017级:付坤、吴新宇、章聚翰 2018级:席波 2019级:李鑫龙、何文涛、何港、范晨杰 2020级:李琪、Ali Gamal (也门) 2021级:李画、张孟凡、闫国庆、叶麦克、Martins Obidiegwu (乌干达)

贺艳晓