當前位置: 油氣開采工程研究所
楊江
作者: 發布者:於夢飛 發布時間:2023-03-09 訪問次數:272

職稱:特聘教授

單位:油氣開采研究所

最高學曆/學位:博士

學科:

所學專業:油田化學

電子郵箱:jyang98@126.com

聯係電話:+86 532 86981701

地址郵編:青島市黃島區長江西路66號,郵編:266580

  • 個人主頁
  • 學習與工作經曆
    1994年畢業於美國密蘇裏大學,獲博士學位。之後在美國克拉科森大學(Clarkson University)從事博士後研究2年, 先後在美國世界500強 羅地亞,聯合利華,貝克休斯等公司任高級技術專家15年,中石油勘探開發研究院特聘專家,具有產學研一體化經驗,所開發的新產品創造產值累計上億美元。
  • 研究方向
    油氣田開發中壓裂酸化液,提高采收率,腐蝕,結垢,汙水處理等。
  • 招生方向
  • 主講課程
  • 學術兼職
    《Natural Gas Industry B》編委(Engineering Index Journal)
  • 指導研究生
    博士,碩士
  • 承擔科研課題
    1.國家自然科學基金:粘彈性表麵活性劑用於油氣增產壓裂液的應用基礎研究。
    2.中國石油天然氣集團公司項目:非常規油氣開發壓裂體係開發。
    3.國家863項目: 致密砂岩氣高效鑽井與壓裂改造關鍵技術。
  • 獲獎情況
    獲貝克休斯公司個人傑出科技成就獎
  • 榮譽稱號
    國家“千人計劃”特聘專家;
    陝西省“三秦學者”特聘教授
  • 著作
    《油氣田開采化學技術》石油工業出版社(在版)
  • 論文
    1. Yang, J.;Jiang W. et al, Optimizing Nanoemulsions as Fluid Flowback Additives in Enhancing Tight Gas Production, J. Petroleum Sci. Eng. 2014, 121,122-125 (SCI摘錄)
    2. Yang, J. Instant Gel Formation of Viscoelastic Surfactant Fracturing Fluids by Diluting Through Lamellar Liquid Crystal, J. Petroleum Sci. Eng. In press (SCI摘錄)
    3. Yang, J.; Jiang W. et al, Preparation of D-limonene Oil in Water Nanoemulsion from Optimum Formulation, J. Oleo Science, 2014, 63 (11) (SCI Expanded摘錄)
    4. Yang, J. Nanotechnologies for petroleum engineering, Nanotechnol Rev, 2014, in press (SCI Expanded摘錄)
    5. Yang, J. Effect of Hydrocarbon Structure on Phase Behavior of
    Dihydrogenated Tallowalkyl Dimethyl Ammonium Chloride and Water J. Phys. Chem. in press (SCI摘錄)
    6. Qin, W., Liu, X., Yang, J. Amperometric Sensors for Detection of Phenol in Oilfield Wastewater Using Electrochemical Polymerization of Zincon Film, Anal. Methods, 2014, 6, 5734-5740. (SCI摘錄)
    7. Li, R; Pan, J; Qin, W.; Yang, J. Effect of pH on Characterization and Coagulation Performance of Poly-silicic-cation Coagulant, Desalination, 2014, 351, 37-42. (SCI摘錄)
    8. Yang, J., Yang, Z., Lu, Y., Rheological Properties of Zwitterionic Wormlike Micelle in Presence of Solvents and Cosurfactant at High Temperature, J. Dispersion Sci. Tech. 34 (2013)8: 1124-1129 (SCI摘錄)。
    9. Jiang W. Yang, J.;et al, Environment Friendly Nanoemulsion as Fluid Flowback Additives in Unconventional Gas Production, International Academic Conference on the Environment, Energy and Power Engineering, Jun 14-15, 2014, Changsha, China. (EI摘錄 )
    10. Yang, J.; Zhou, Y.N.; Lu, Y.J. et al, Novel Thermo Thickening Smart Gel with Interpenetrating Polymer and Surfactant Network, Advanced Materials Research, 983(2014) 7-10. (EI摘錄)
    11. Yang, J., Wang, X., Lu, Y., Effect of Dynamic Surface Activity of Surfactant on Performance of Foam for Gas Well Deliquification. SPE Western Regional & AAPG Pacific Section Meeting, 2013 Joint Technical Conference 19−25 April 2013, Monterey, CA, USA. Paper #165366. (EI摘錄)
    12. Yang, J., Lu, Y., Guan, B., Effect of Liquid Crystal on Gel Formation Rate of Viscoelastic Surfactant for Hydraulic Fracturing, SPE Western Regional & AAPG Pacific Section Meeting, 2013 Joint Technical Conference 19−25 April 2013, Monterey, CA, USA. Paper #165366. (EI 摘錄)
    13. Yang, J., Lu, Y., Guan, B., Viscoelastic Evaluation of Gemini Surfactant Gel for Hydraulic Fracturing, SPE European Formation Damage Conference, Noordwijk, Netherlands, 5–7 June 2013. paper #165177。 (EI 摘錄)
    14. Yang, J.; Jovancicevic, V.; Mancuso, S. High Performance Batch Treating Corrosion Inhibitor”, NACE 2007 , Paper #07693. (EI 摘錄)
    15. Orta, D.; Ramanchandran, S.; Yang, J. A Novel Foamer for Deliquification of Condensate Loaded Wells, SPE Rocky Mountain Oil & Gas Technology Symposium held in Denver, Colorado, U.S.A., 16–18 April 2007, Paper #107980. (EI 摘錄)
    16. Yang, J.; Jovancivic, V. Foam for Gas Well Deliquification, Colloid and Surface A, 309 (2007) 177-181. (SCI摘錄)
    17. J. Yang, Application of surfactant phase behavior in developing oilfield products”, Journal of Dispersion Science and Technology 27 (2006) 745. (SCI摘錄)
    18. Yang, J.; Ramachandran S.; Li, W. Protecting and Increasing Production of Gas Wells Using Corrosion Inhibitors and Foamers”, 16th International Corrosion Congress, Beijing, China, Paper #17-14, September 2005. (EI摘錄)
    19. Yang, J. Interaction of Surfactants and Aminoindophenol Dye, J. Colloid Interface Science, 271(2004) 237-243. (SCI摘錄)
    20. Yang, J. Viscoelastic Wormlike Micelle and Their Applications”, Current Opinion in Colloid and Surface Science, 7 (2002), 276-281. (SCI摘錄)
    21. 周逸凝,楊江,等,一種新型超分子複合壓裂液性能研究,油田化學, 已接受, 在版。
    22. 秦文龍,楊江,等,高密度粘彈性表麵活性劑入井液的性能研究,鑽井液完井液,已接受, 在版。
    23. 秦文龍,楊江,納米技術在提高采收率化學中的應用新進展, 斷塊油氣田,2013,20(1), 10-13。
    24. 楊江,秦文龍,陳軍斌等,納米技術在油氣田開發中複變流體的應用,應用化工,2013, 42(4), 717-719。
    25. 楊珍,秦文龍,楊江,一種陽離子雙子表麵活性劑壓裂液的研究及應用,鑽井液完井液,2013, 30(6)64-67。
    26. 薑偉,管保山,楊江,煤層氣壓裂用解吸附的研製與應用,鑽井液完井液,2013, 30(6)61-63。
    27. 楊冠科,楊江,管保山 秦文龍, 耐高溫低傷害VES-HT01壓裂液的性能評價,油田化學,2014, 31(1), 29-32.
    28. 秦文龍,楊江,長鏈酰胺基磺酸鹽型雙子表麵活性劑的合成及性能研究;日用化學工業; 2014, 44(6-9), 18.
  • 專利
    1. 超低滲透氣井納米微乳液助排劑,申 請 號: 201410025814.0
    2. 一種納米複合壓裂液及其製備方法與應用,申 請 號: 201310372987.5
    3. 粘彈性表麵活性劑壓裂液及其製備方法與應用,申 請 號: 201210533642.9
    4. 含多個親水和疏水基表麵活性劑自轉向酸化液,申 請 號: 201310101432.7
    5. 石油生產用新型特種緩蝕劑 中國專利號:200910080533.4
    6. 石油天然氣增產用緩蝕發泡劑,中國專利號:200910080534.9
    7. 壓裂地下岩層的方法,中國專利公開號:CN1389538
    8. 包含粘彈性表麵活性劑的液體和其使用方法” 中國專利公開號CN1263481
    9. Microemulsion Containing Oil Field Chemicals Useful for Oil and Gas Field Applications”, US Patent 7851414(2010).
    10. Process for Foaming A Wet Hydrocarbon Composition”, US Patent US 7823647 (2010)
    11. Corrosion Inhibitors For Oilfield Applications”, US Patent Application No 20090181867.
    12. Microemulsion Containing Oil Field Chemicals Useful for Oil and Gas Field Applications”, US Patent 7615516(2009).
    13. Viscoelastic Surfactant and Related Methods of Use,US Patent 7238648(2007)
    14. Method and Apparatus for Preventing Slug Flow in Pipeline, US Patent No 7,395,864(2008)
    15. High Performance Foamer for Unloading Gas Well, US Patent No 7422064(2008)
    16. Polymeric Nanoemulsions Drag Reducer for Multiphase Flow,US Patent 7,468,402(2008).
    17. “Viscoelastic Surfactant and Related Methods of Use” US Patent No:6,831,108 (2004).
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