當前位置: 智能油氣田研究所
王曉璞
作者: 發布者:趙小明 發布時間:2024-05-08 訪問次數:12469

職稱:副教授

單位:智能油氣田研究所

最高學曆/學位:研究生/博士

學科:海洋油氣工程學科,石油與天然氣工程

所學專業:生物化學工程

電子郵箱:wxp@upc.edu.cn

聯係電話:

地址郵編:山東省青島市經濟技術開發區長江西路66號必威app精裝版客服 海洋油氣工程係,266580

  • 個人主頁
  • 學習與工作經曆
    2019至今,中國石油大學(華東),海洋油氣工程係,副教授
    2014-2019,中國石油大學(華東),海洋油氣工程係,講師
    2013-2014,澳洲墨爾本大學,化學與生物分子工程係,輔導講師
    2010-2013,美國弗吉尼亞大學,化學工程博士
    2007-2010,美國弗吉尼亞大學,化學工程碩士
    2003-2007,浙江大學,生物工程學士
  • 研究方向
    地下有機汙染遷移與綠色修複、二氧化碳提高采收率與碳儲、極限條件微流控芯片設計與應用、流體力學等
  • 招生方向
  • 主講課程
    本科生課程:
    海洋油氣開發環境保護(英語)
    (工程)流體力學(中文、英文)
    流體力學模擬與實驗等


    研究生課程:
    海洋油氣安全與環保

  • 學術兼職
    青島市碳中和經濟產業聯合會專家委員會成員(2024.4-)
    Eco-Environment & Health期刊預備編委(2024.4-)
    聯合國糧農署國際土壤汙染合作組織(International Network on Soil Pollution, INSOP)成員(2023.4-)
    Energies特刊Subsurface Energy and Environmental Protection客座編輯(2022.5-2024.5)
  • 指導研究生
    指導並聯合指導20餘名碩博研究生
  • 承擔科研課題
    15. 國家環境保護土壤環境管理與汙染控製重點實驗室開放課題,基於微流控芯片的石油汙染孔隙尺度遷移與綠色修複研究,2023
    14. 科技部,“綠色智能”石油與天然氣工程一流學科團隊引智項目,2022-2023
    13. 山東省自然科學基金-麵上項目,非均質石油汙染土壤微觀修複基礎研究,2022-2024
    12. 橫向項目,CO2響應性凝膠體係的裂縫封竄性能測試,2022
    11. 橫向項目,降粘複合開采機理研究及參數優化,2022
    10. 國家自然科學基金-麵上項目,海域泥質細粉砂天然氣水合物儲層分解前沿控製機理研究,2021-2024
    9. 國家自然科學基金-麵上項目,油頁岩催化劑輔助注蒸汽原位開采方法及機理研究,2020-2023
    8. 國家自然科學基金-麵上項目,非常規致密儲層壓裂液傷害的微生物修複方法及機理研究,2019-2022
    7. 國家自然科學基金-青年基金,利用趨化細菌修複非均質地下水係統中石油汙染的機理研究,2016-2018
    6. 高校自主創新科研計劃-青年基金,微流控技術在土壤石油汙染物處理中的應用研究,2015-2016
    5. 校人才引進計劃,趨化性微生物對有孔介質中石油汙染物的生物修複,2015-2016
    4. 國家科技重大專項專題,儲層敏感性特征評價,2016-2019,(3/16)
    3. 973項目,海洋深水油氣安全高效鑽完井基礎研究,2015-2019(參與)
    2. 美國國家科學基金,Collaborative Research: A Multiscale Analysis of the Transport of Chemotactic Bacteria in Heterogeneous Porous Media,2011-2015(3/10)
    1. 美國國家科學基金,Collaborative Research: Chemotaxis in Porous Media: Experimental Observations and Upscaling for Development of a Descriptive Theory,2007-2011(3/10)
  • 獲獎情況
    教學類:
    教育部,海洋深水鑽井平台認知及關鍵作業程序實訓—國家級虛擬仿真實驗教學一流課程,2020,排名:15
    中國石油大學(華東),流體力學“544”課程體係的建設與實踐,教學成果二等獎,2017,排名:12
    2011-2012年度弗吉尼亞大學傑出助教獎(1/25)


    科研類:
    2013年度Louis T. Rader化工獎(1/50)
    2008年度Harmon博士獎學金(1/11)

  • 榮譽稱號
    青島市黃島區第二批高層次緊缺人才
    2020年度中國石油大學(華東)百優班主任
  • 著作
  • 論文
    39. Zhao, Y., Liu, X., Wang, H., Wang, Z., Wang, X., Dai, Y., Yue, T., Zhao, J., Xing, B. (2024). Size-selective attachment of polyvinyl chloride microplastics on iron oxides in aqueous environments. Chemical Engineering Journal, 150721 (Q1, IF: 15.1)
    38. Geng, C., Gao, Y., Zhang, H., Xue, D., Shan, H., Wang, B., Wang, X.*, Zhao, J.* (2024). Microplastic migration in porous media at various scales: a review. Environmental Chemistry Letters, 22, 691–713 (Q1, IF: 15.7)
    37. Liu, J., Li, H., Liu, S., Xu, J., Wang, X., Tan, Q. (2023). Investigating the impact of aqueous phase on CO2 huff ‘n’puff in tight oil reservoirs using nuclear magnetic resonance technology: stimulation measures and mechanisms. SPE Journal, 1-17 (Q1, IF: 3.6)
    36. Wang, Z., Li, H., Liu, S., Xu, J.,Liu, J., Wang, X. (2023). Risk evaluation of CO2 leakage through fracture zone in geological storage reservoir. Fuel, 342, 127896 (Q1, IF: 7.4)
    35. Wang, Y., Li, H., Xu, J., Liu, S., Tan, Q., Wang, X. (2023). Machine learning assisted two-phase upscaling for large-scale oil-water system. Applied Energy, 337, 120854 (Q1, IF: 11.2)
    34. Gao, B., Wang, X.*, & Ford, R. M.* (2023). Chemotaxis along local chemical gradients enhanced bacteria dispersion and PAH bioavailability in a heterogeneous porous medium. Science of the Total Environment, 160004 (Q1, IF: 10.754)
    33. Wang, X., Ren, L., Long, T., Geng, C., & Tian, X. (2023). Migration and remediation of organic liquid pollutants in porous soils and sedimentary rocks: a review. Environmental Chemistry Letters, 1-18 (Q1, IF: 13.615)
    32. Wang, X., Tian, X., Chen, X., Ren, L., & Geng, C. (2022). A review of end-of-life crystalline silicon solar photovoltaic panel recycling technology. Solar Energy Materials and Solar Cells, 248, 111976 (Q1, IF: 7.305)
    31. Wang, X., Hou, L., He, T., Diao, Z., Yao, C., Long, T., & Fan, L. (2022). Numerical simulation of the enrichment of chemotactic bacteria in oil-water two-phase transfer fields of heterogeneous porous media. Applied Sciences, 12(10), 5215 (Q2, IF: 2.838)
    30. Li, H., Zhou, Z., Long, T., Wei, Y., Xu, J., Liu, S., & Wang, X.* (2022). Big-data analysis and machine learning based on oil pollution remediation cases from CERCLA database. Energies, 15(15), 5698 (Q3, IF: 3.252)
    29. Wang, Z., Liu, S., Li, H., Li, S., Xu, J., & Wang, X. (2022). A numerical simulation study of methane hydrate reformation during the dissociation process induced by depressurization. Fuel, 313, 122983 (Q1, IF: 8.035)
    28. Wang, Y., Li, H., Xu, J., Liu, S., & Wang, X. (2022). Machine learning assisted relative permeability upscaling for uncertainty quantification. Energy, 245, 123284 (Q1, IF: 8.857)
    27. Xu, J., Zhou, W., Li, H., Wang, X., Liu, S., & Fan, L. (2022). Stochastic simplex approximation gradient for reservoir production optimization: Algorithm testing and parameter analysis. Journal of Petroleum Science and Engineering, 209, 109755 (Q1, IF: 5.168)
    26. Xu, J., Bu, Z., Li, H., Wang, X., & Liu, S. (2022). Permeability models of hydrate-bearing sediments: a comprehensive review with focus on normalized permeability. Energies, 15(13), 4524 (Q3, IF: 3.252)
    25. Da, Q., Yao, C., Zhang, X., Wang, X., Qu, X., Lei, G. (2022). Investigation on microscopic invasion characteristics and retention mechanism of fracturing fluid in fractured porous media. Petroleum Science, 19 (4), 1745-1756 (Q1, IF: 4.757)
    24. Wang, X., Wang, X., He, T., Li, Y., & Hou, L. (2021). The mechanism of NAPL layer formation in a microfluidic device with dual-permeability: experiments and numerical simulation. In IOP Conference Series: Earth and Environmental Science, 675, 1, 012175 (EI)
    23. Li, S., Wu, D., Wang, X., & Hao, Y. (2021). Enhanced gas production from marine hydrate reservoirs by hydraulic fracturing assisted with sealing burdens. Energy, 232, 120889 (Q1, IF: 8.857)
    22. Li, S., Wang, Z., Li, S., Wang, X., & Hao, Y. (2021). Investigations on performance of hydrate dissociation by depressurization near the quadruple point. Journal of Natural Gas Science and Engineering, 90, 103929 (Q1, IF: 5.285)
    21. Fan, L., Tan, Q., Li, H., Xu, J., Wang, X., & Liu, S. (2021). Simulation on effects of injection parameters on CO2 enhanced gas recovery in a heterogeneous natural gas reservoir. Advanced Theory and Simulations, 4(8), 2100127 (Q2, IF: 4.105)
    20. Li, S., Ding, S., Wu, D., Wang, X., Hao, Y., Li, Q., & Pang, W. (2021). Analysis of stratum subsidence induced by depressurization at an offshore hydrate-bearing sediment. Energy & Fuels, 35(2), 1381-1388 (Q2, IF: 4.654)
    19. Xu, J., Du, S., Yang, X., Hao, Y., & Wang, X. (2021). Molecular dynamics simulation of the effects of different salts on methane hydrate formation: an analysis of NaCl, KCl and CaCl2. IOP Conference Series: Earth and Environmental Science, 675, 1, 012180 (EI)
    18. Chen, Y., Gao, Y., Zhang, N., Chen, L., Wang, X., & Sun, B. (2020). Microfluidics application for monitoring hydrate phase transition in flow throats and evaluation of its saturation measurement. Chemical Engineering Journal, 383, 123081 (Q1, IF: 13.273)
    17. Pan, B., Gong, C., Wang, X., Li, Y., & Iglauer, S. (2020). The interfacial properties of clay-coated quartz at reservoir conditions. Fuel, 262, 116461 (Q1, IF: 8.035)
    16. Pan, B., Li, Y., Zhang, M., Wang, X., & Iglauer, S. (2020). Effect of total organic carbon (TOC) content on shale wettability at high pressure and high temperature conditions. Journal of Petroleum Science and Engineering, 193, 107374 (Q1, IF: 5.168)
    15. Liu, S., Sun, B., Xu, J., Li, H., & Wang, X. (2020). Study on competitive adsorption and displacing properties of CO2 enhanced shale gas recovery: advances and challenges. Geofluids, 2020 (Q2, IF: 2.176)
    14. Chen, Y., Sun, B., Chen, L., Wang, X., Zhao, X., & Gao, Y. (2019). Simulation and observation of hydrate phase transition in porous medium via microfluidic application. Industrial & Engineering Chemistry Research, 58(12), 5071-5079 (Q2, IF: 4.326)
    13. Pan, B., Li, Y., Xie, L., Wang, X.*, He, Q., Li, Y., Hejazi, S. (2019). Iglauer, S., Role of fluid density on quartz wettability, Journal of Petroleum Science and Engineering, 172, 511-516 (Q1, IF: 2.382)
    12. Xu, J., Li, L., Liu, J., Wang, X., Yan, Y., & Zhang, J., The molecular mechanism of the inhibition effects of PVCaps on the growth of sI hydrate: an unstable adsorption mechanism, Physical Chemistry Chemical Physics, 2018, 20 (12), 8326-8332 (Q1, IF: 4.123)
    11. 王曉璞,丁廷稷,陳哲,徐加放,微流控技術在石油工程流體流變性測試中的應用[J],實驗技術與管理,2017, 34 (2) pp. 57-61 (中文核心教育論文)
    10. Cameron, M., Xu, J., Wang, X., Zhang, J., Chen, Z., & Li, X. (2017). Molecular dynamics simulation of hydrated Na-montmorillonite with inorganic salts addition at high temperature and high pressure, Applied Clay Science, 146, 206-215 (Q1, IF: 3.101)
    9. Xu, J., Chen, Z., Liu, J., Sun, Z., Wang, X., & Zhang, J. (2017). A molecular dynamic study on the dissociation mechanism of SI methane hydrate in inorganic salt aqueous solutions, Journal of Molecular Graphics and Modelling. 75, 403-412 (Q2, IF: 1.754)
    8. Wang, X., Lanning, L. M. & Ford, R. M. (2016). Enhanced retention of chemotactic bacteria in a pore network with residual NAPL contamination, Environmental Science & Technology, 50 (1), 165-172 (Q1, IF: 6.198)
    7. Xu, K., Wang, X., Ford, R. M. & Landers, J. P. (2016). Self-partitioned droplet array on laser-patterned superhydrophilic glass surface for wall- less cell arrays, Analytical Chemistry, 88 (5), 2652–2658 (Q1, IF: 6.320)
    6. Xu, J., Gu, T., Sun, Z., Li, X. & Wang, X.* (2016). Molecular dynamics study on the dissociation of methane hydrate via inorganic salts, Molecular Physics, 114 (1), 34-43 (Q2, IF: 1.733)
    5. Xu, J., Gu, T., Shen, W., Wang, X., Ma, Y., Peng, L. & Li, X. (2016). Influence simulation of inorganic salts on montmorillonite elastic mechanical parameters and experimental study, Journal of China University of Petroleum, Edition of Natural Science, 40 (2), 83-90 (Chinese Essential Journal List)
    4. Wang, X., Atencia J. & Ford, R. M. (2015). Quantitative analysis of chemotaxis towards toluene by Pseudomonas putida in a convection- free microfluidic device, Biotechnology & Bioengineering, 112 (5) 896-904 (Q1, IF: 4.481)
    3. Wang, X., Long, T. & Ford, R. M. (2012). Bacterial chemotaxis toward a NAPL source within a pore-scale microfluidic chamber, Biotechnology & Bioengineering, 109 (7), 1622-1628 (Q1, IF: 4.481)
    2. Kamei, K., Guo, S., Yu, Z. T. F., Takahashi, H., Gschweng, E., Shu, C., Wang, X., Tang, J., McLaughlin, J., Witte, O. N., Lee, K. B. & Tseng, H. R. (2009). An integrated microfluidic culture device for quantitative analysis of human embryonic stem cells, Lab on Chip, 9 (4), 555-563 (Q1, IF: 6.045)
    1. Yu, Z. T. F., Kamei, K., Takahashi, H., Shu, C., Wang, X., He, W., Silverman, R., Radu, C. G., Witte, O. N., Lee, K. B. & Tseng H. R. (2009). Integrated microfluidic devices for combinatorial cell-based assays, Biomedical Microdevices, 11 (3), 547-555 (Q2, IF: 3.323)
  • 專利
    國家發明專利(主要)
    3. 一種用於模擬土壤-地下水非均質係統的微流控芯片,2022.06.07,ZL202011212867.5,排名:1
    2. 應用微流控技術測量流體粘度的實驗裝置及實驗方法,2018.03.13,ZL201611011840.3,排名:1
    1. 模擬地下水係統中有機溶劑汙染的微流控芯片,2017.07.28,ZL201610895101.9 ,排名:1
  • 學術交流
    2024.04 學組報告,第一屆全國地下水資源與生態環境大會,武漢
    2023.10 受邀報告,AGER論壇,線上
    2023.08 學組報告,第九屆土壤與地下水國際研討會,成都
    2023.04 學組報告,第一屆多孔介質滲流理論與應用會議,北京
    2021.10 學組報告,第二屆全國土壤修複大會,南京
    2020.12 學組報告,美國AGU年會,線上
    2020.09 學組報告,美國InterPore年會,線上
    2018.12 學組報告,美國AGU年會,美國華盛頓特區
    2018.05 展板報告,美國InterPore年會,美國新奧爾良
    2018.01 大會報告,第一屆國際水環境可持續發展會議,中國沈陽
    2017.07 大會報告,第七屆全國環保型鑽井液及鑽井廢棄物處理技術研討會,中國成都
    2012.08 學組報告,美國化學協會年度會議,美國費城
    2011.10 展板報告,美國化學工程師協會年度會議,美國明尼阿波利斯市
    2011.09 會展報告,弗吉尼亞大學工學院研究論壇,美國夏洛茲維爾市
    2010.12 展板報告,美國地球物理協會年度會議,美國舊金山市
  • 個人風采