
姓名:劉偉
職稱:教授/博導
職務:副院長
教育和工作經歷
2003-2007,南京航空航天大學,土木工程,本科
2007-2013,北京大學,固體力學,直博
2011-2012,美國Miami大學,機械與航空工程,聯合培養博士生
2013-2016,中國石油大學(北京)石油工程學院,講師
2016-2022,中國石油大學(北京)石油工程學院,副教授
2022, 中國石油大學(北京)石油工程學院,教授
電子郵箱:liuwei@cup.edu.cn
聯系電話:010-89732235
所在系所:油氣井工程系
研究方向:油氣鉆采巖石力學與工程;非常規油氣與海上疏松儲層水力壓裂;復雜地層井壁失穩預測與控制;井筒完整性預測與控制
教學情況:本科生《理論力學》(全英文)、《材料力學》、《數值分析》;碩士研究生《有限元方法》
論文著作:
[1] Liu, W.*, Lin, H., Liu, H., Luo, C., Wang, G., and Deng, J., “Numerical Investigation of Wellbore Stability in Deepwater Shallow Sediments,” Geofluids, vol. 2021(2021), 5582605..
[2] 劉偉, 閆新江, 林海,等. 中等固結砂巖出砂機理與規律實驗研究. 石油科學通報, 6, 2021, 184-195.
Liu, W.*, Yan, X.J., Lin, H., et al, “Experimental Investigation of Sand Production in Moderately Consolidated Sandstones,” Petroleum Science Bulletin, vol.6(2021) pp.184-195
[3] Li, Y.*, Liu, W., Deng, J., Yang, Y., and Zhu, H.Y., “A 2D explicit numerical scheme-based pore pressure cohesive zone model for simulating hydraulic fracture propagation in naturally fractured formation,” ENERGY SCIENCE & ENGINEERING, vol. 7(2029), pp.1527-1543.
[4] Zhou, B., Liu, W.*, and Tan, Q., “Quantitative Prediction of Sand Production in Weakly Consolidated Sandstone Through Numerical Simulation,” 5th ISRM Young Scholars' Symposium on Rock Mechanics and International Symposium on Rock Engineering for Innovative Future, Okinawa, Japan, December 1-4, 2019.
[5] Palencia Yrausquin E, Liu W*, Zhou B, et al. Experimental Study on Sand Control in Unconsolidated Sandstones by Chemical Injection and Hydraulic Fracturing. 53rd US Rock Mechanics/Geomechanics Symposium held in New York, NY, USA, 23–26 June 2019. ARMA19-473.
[6] Liu, W.*, Xie, S.Y., Lin, H., Deng, J.G. Numerical modeling of wellbore stability in naturally fractured shale formation. 52st US Rock Mechanics/Geomechanics Symposium, Seattle, Washington, USA, 17–20 June 2018. ARMA 18–1059.
[7] Liu, W.*, Yu, B., & Deng, J. (2017). Analytical method for evaluating stress field in casing-cement-formation system of oil/gas wells. Applied Mathematics and Mechanics, 38(9), 1273-1294.
[8] Liu, W.*, Tan, Q., Yu, B. and Deng, J. Modeling the Borehole Breakout in Coal Seams with a Coupled Hydro-mechanical Model. 51st US Rock Mechanics / Geomechanics Symposium, San Francisco, California, USA, 25-28 June 2017. ARMA 17-317.
[9] 劉偉*,陶長洲,萬有余,池曉明,李揚,林海,鄧金根. “致密油儲層水平井體積壓裂套管變形失效機理數值模擬研究”. 石油科學通報, 2017, 2(4): 466-477
[10] Li, Y., Deng, J. G., Liu, W.*, & Feng, Y. (2017). Modeling hydraulic fracture propagation using cohesive zone model equipped with frictional contact capability. Computers and Geotechnics, 91, 58-70.
[11] Li, Y., Deng, J., Liu, W.*, Yan, W., Feng, Y., Cao, W., Wang, P., Hou, Y. (2017). Numerical simulation of limited-entry multi-cluster fracturing in horizontal well. Journal of Petroleum Science and Engineering, 152, 443-455.
[12] Cao, W., Deng, J., Liu, W.*, Yu, B., Tan, Q., Yang, L., Li, Y., Gao, J. (2017). Pore pressure and stress distribution analysis around an inclined wellbore in a transversely isotropic formation based on the fully coupled chemo-thermo-poroelastic theory. Journal of Natural Gas Science and Engineering, 40, 24-37.
[13] Li, Y., Deng, J., Liu, W., Yan, W., Cao, W., Gao, J. (2016). The Effect of Cyclic Pressure Drop on Shear Activation of Natural Fractures. In 50th US Rock Mechanics/Geomechanics Symposium. American Rock Mechanics Association.
[14] W. Liu, H.T. Li, B.H. Yu, J.G. Deng. Finite element characterization of the influence of rock plasticity on hydraulic fracturing, International Conference on Computational & Experimental Engineering and Sciences (ICCES'09), Reno, NV, USA, 2015.
[15] 劉偉,李海濤,孫金,蔚寶華,鄧金根. 疏松砂巖水力壓裂物模實驗及數值模擬研究. 中國力學大會, 上海, 2014.
[16] 李揚, 鄧金根, 劉偉, 閆偉, 曹文科,王鵬飛. (2017). 水平井分段多簇限流壓裂數值模擬. 斷塊油氣田, 24(1), 69-73.
[17] W. Liu, D. Schesser, Q. D. Yang, D. S. Ling. A consistency-check based algorithm for element condensation in augmented finite element methods for fracture analysis, Engineering Fracture Mechanics, 2015, 139, 78-97.
[18] W. Liu, Q. D. Yang, S. Mohammadizadeh, X. Y. Su. An efficient augmented finite element method for arbitrary cracking and crack interaction in solids, International Journal for Numerical Methods in Engineering, 2014, 99(6): 438-468.
[19] W. Liu, Y. Q. Liu, X. Y. Su, Z. Li, Finite element analysis of the interface/surface effect on the elastic wave band structure of two-dimensional nanosized phononic crystals, International Journal of Applied Mechanics, 2014, 6(1), 1450005.
[20] W. Liu, Q. Yang, S. Mohammadizadeh, X. Y. Su, D. S. Ling, An Accurate and Efficient A-FEM for Arbitrary Crack Interactions, Journal of Applied Mechanics- Trans. ASME, 2013, 80(4), 041033.
[21] W. Liu, Interfacial failure analysis based on cohesive zone model, Computer Aided Engineering, 2013, 22(A02), 456-460. (In Chinese)
[22] W. Liu, J. W. Chen, Y. Q. Liu, X. Y. Su. Effect of interface/surface stress on the elastic wave band structure of two-dimensional phononic crystals, Physics Letters A, 2012, 376(4), 605-609.
[23] W. Liu, J. W. Chen, X. Y. Su. Local resonance phononic band gaps in modified two-dimensional lattice materials, Acta Mechanica Sinica, 2012, 28(3), 659-669.
[24] W. Liu, X. Y. Su, Y. R. An, K. F. Huang. Local Buckling Prediction for Large Wind Turbine Blades, Computers, Materials & Continua, 2011, 25(2), 177-193.
[25] W. Liu, J. C. Yin, P. Chen, X. Y. Su. Dynamic analysis and aeroelastic stability analysis of large composite wind turbine blades. Acta Aerodynamica Sinica, 2011, 29(3), 263-267. (In Chinese)
[26] W. Liu, X. Y. Su. Collimation and enhancement of elastic transverse waves in two-dimensional solid phononic crystals, Physics Letters A, 2010, 374(29).
[27] 陳子劍, 劉偉, 鄧金根, 蔚寶華, 田中蘭, 楊恒林, 劉軍波. 多因素耦合條件下煤層井壁穩定性分析模型研究. 煤炭技術, 2016, 2, 66-69.
[28] Y. Liu, W. Liu, B. Li, X. Y. Su. Transformation Method to Control Shear Horizontal Waves, International Journal of Applied Mechanics, 2015, 7(03), 1550049.
[29] B. C. Do, W. Liu, Q. D. Yang, X. Y. Su. Improved Cohesive Stress Integration Schemes for Cohesive Zone Elements, Engineering Fracture Mechanics, 2013, 107, 14-28.
[30] Y. Liu, W. Liu and X. Su. Precise method for controlling elastic waves by conformal mapping. Theoretical and Applied Mechanics Letter, 2013, 3, 021012.
[31] J. C. Yin, W. Liu, P. Chen. Modal re-analysis of rotary wind turbine blades in refinement design, Wind Energy, 2012, 15(6), 864-881.
[32] J. W. Chen, W. Liu, X. Y. Su. Vibration and Buckling of Truss core Sandwich plates on an Elastic Foundation Subjected to Biaxial In-plane Loads, Computers, Materials & Continua, 2011, 24(2), 163-181.
[33] J. W. Chen, Y. Q. Liu, W. Liu, X. Y. Su. Thermal buckling analysis of truss-core sandwich plates. Applied Mathematics and Mechanics, 2013 34 (10): 1177-1186.
[34] Q. D. Yang, X. J. Fang, W. Liu, B. N. Cox. High-Fidelity Analysis of Composites at Various Length Scales with Discrete Damage Representation, Journal of Multifunctional Composites, 2012, 1(1).
[35] 李揚, 鄧金根, 蔚寶華, 劉偉, 陳建國. 儲/隔層巖石及層間界面性質對壓裂縫高的影響, 石油鉆探技術, 2014, 42(6), 80-86.
研究項目:
[1] 國家自然科學基金面上基金項目“疏松砂巖水力壓裂裂縫起裂延伸機理與裂縫形態預測方法研究”,2021.01-2024.12
[1] 國家自然科學基金青年基金項目“裂縫性油氣儲層水力裂縫模擬的增強有限元方法”,2016.01-2018.12
[2] 國家科技重大專項任務“煤儲層井壁穩定分析與軟件”,2011.01-2015.12
[3] 國家科技重大專項任務“水淹儲層壓裂充填防砂工藝技術優化研究及應用”,2016.01-2020.12
另承擔油田企業委托水力壓裂、井壁穩定、井筒完整性方面科技攻關項目的30余項。
科研、教學獎勵與榮譽:
[1] 北京大學優秀博士學位論文獲得者,2013
[2] 中國石油大學(北京)青年拔尖人才,2014-2017
[3] 教育部科學技術進步獎二等獎,2019
[4] 中國石油和化工自動化應用協會科技進步二等獎, 2021
[5] 新疆自治區科技進步二等獎,2021
[6] 中國石油大學(北京)青年教學骨干教師,2019
[7] 中國石油大學(北京)教學成果二等獎,2019
[8] 中國石油大學(北京)教學成果特等獎,2021
社會與學術兼職:
[1] Petroleum Science雜志副主編,2019-2021
[2] 石油科學通報青年編委,2016-至今
[3] 中國巖石力學與工程學會深層巖石力學與油氣工程專業委員會副秘書長,2017-至今
[4] 美國巖石力學學會(ARMA)第53屆年會分會主席(Session Chair),2019.6