職 稱:副研究員
所屬 部門:流體與熱工教研室
學科 專業:油氣田開發工程
研究 方向:非常規油氣巖石力學
聯系 方式:[email protected]
聯系 地址:610500四川省成都市新都區新都大道85號西南石油大學全國重點實驗室B403
趙俊良,四川蒼溪人,博士。2019年6月獲北京大學力學(能源與資源工程)博士學位,2023年10月入職西南石油大學石油與天然氣工程學院。主要從事頁巖油氣、地熱和天然氣水合物相關的微觀力學研究,利用離位和電鏡原位的微納米力學測試技術對地質材料的微尺度力學性質進行表征和探索。其他研究興趣包括力學性質的尺度升級、數字巖心技術與應用以及微觀力學測試和機器學習的聯合應用方案開發等。主持/主研國家自然科學基金、國家科技重大專項和深圳市科技計劃項目等7項。在《SPE Journal》《Journal of Geophysical Research:Solid Earth》《International Journal of Rock Mechanics and Mining Sciences》等SCI期刊發表論文十余篇,其中第一/通訊作者論文7篇。長期擔任《SPE Journal》《Gas Science and Engineering》等期刊審稿人。
●2009.09-2010.06 中國石油大學(北京),數學與應用數學
●2010.07-2013.06 中國石油大學(北京),地質工程,學士
●2013.09-2019.07 北京大學,力學(能源與資源工程),博士(直博)
●2019.07-2020.10 北京大學工學院,實驗員
●2020.11-2023.10 南方科技大學環境科學與工程學院,研究助理教授
●2023.10-2024.01 西南石油大學石油與天然氣工程學院,講師
●2024.01-至今 西南石油大學石油與天然氣工程學院,副研究員
●國家自然科學基金青年科學基金項目,42202137,頁巖中有機質變形和破裂行為的掃描電鏡原位研究,2023.01-2025.12,主持
●國家自然科學基金青年科學面上項目,52174025,深層頁巖密切割壓裂三維曲面裂縫群動態演化機制研究,2022.01-2025.12,主研
●深圳市科技計劃項目,ZDSYS20200421111201738,深圳市天然氣水合物重點實驗室(籌建啟動),2021.03-2023.09,主研
●北京大學教育基金會捐贈項目,050307,碳俘獲、利用與封存—鋼鐵行業,2017.07-2020.12,主研
●“十三五”國家科技重大專項,2017ZX05039-005-001,陸相頁巖氣產能評價技術研究,2017.01-2020.12,主研
●“十三五”國家科技重大專項,2016ZX05037-003-001,頁巖基質多尺度傳質數學模型研究,2016.01-2020.12,主研
●“十三五”國家科技重大專項,2016ZX05034-001-007,東部斷陷盆地頁巖油氣賦存方式與富集規律研究,2016.01-2020.12,主研
●Mo C K,Zhao J L,Zhang D X. Mode I microscopic cracking process of granite considering the criticality of failure[J]. Journal of Geophysical Research:Solid Earth,2023,128(10):e2023JB027040.
●Zhang P Y,Zhao J L,Zhang D X,et al. Microindentation analysis of mechanical properties evolution during an artificial hydrocarbon generation process[J]. Gas Science and Engineering,2023:205003.
●Zhang W,Zhao J L,Zhang D X. Construction and validation of the upscaling model of organic-rich shale by considering water-sensitivity effects[J]. Journal of Petroleum Science and Engineering,2022,216:110718.
●Zhao J L,Zhang W,Zhang D X. Elastic characterization of shale at microscale:A comparison between modulus mapping,PeakForce quantitative nanomechanical mapping,and contact resonance method[J]. SPE Journal,2022:1-22.
●Mo C K,Zhao J L,Zhang D X. Real-time measurement of mechanical behavior of granite during heating-cooling cycle:A mineralogical perspective[J]. Rock Mechanics and Rock Engineering,2022:1-20.
●Zhang W,Zhang D X,Zhao J L. Experimental study of the influence of geochemical features on the viscoelasticity of organic matter in shale[J]. Marine and Petroleum Geology,2022,143:105785.
●Zhang W,Zhang D X,Zhao J L. Experimental investigation of water sensitivity effects on microscale mechanical behavior of shale[J]. International Journal of Rock Mechanics and Mining Sciences,2021,145:104837.
●Zhao J L,Zhang W,Zhang D X,et al. Influence of geochemical features on the mechanical properties of organic matter in shale[J]. Journal of Geophysical Research:Solid Earth,2020,125(9):e2020JB019809.
●Zhao J L,Zhang D X. Dynamic microscale crack propagation in shale[J]. Engineering Fracture Mechanics,2020,228:106906.
●Wu T H,Zhao J L,Zhang W,et al. Nanopore structure and nanomechanical properties of organic-rich terrestrial shale:An insight into technical issues for hydrocarbon production[J]. Nano Energy,2020,69:104426.
●Zhao J L,Zhang D X,Wu T H,et al. Multiscale approach for mechanical characterization of organic-rich shale and its application[J]. International Journal of Geomechanics,2019,19(1):04018180.
●Zhao R,Liang Z B,Gao S,Yang C,Zhu B J,Zhao J L,et al. Puffing up energetic metal-organic frameworks to large carbon networks with hierarchical porosity and atomically dispersed metal sites[J]. Angewandte Chemie,2019,131(7):1997-2001.
●Guo W H,Liang Z B,Zhao J L,et al. Hierarchical cobalt phosphide hollow nanocages toward electrocatalytic ammonia synthesis under ambient pressure and room temperature[J]. Small Methods,2018,2(12):1800204.
●Jiang Z,Zhang D X,Zhao J L,et al. Experimental investigation of the pore structure of triassic terrestrial shale in the Yanchang Formation,Ordos Basin,China[J]. Journal of Natural Gas Science and Engineering,2017,46:436-450.
●Wu T H,Li X,Zhao J L,et al. Multiscale pore structure and its effect on gas transport in organic‐rich shale[J]. Water Resources Research,2017,53(7):5438-5450.
●張東曉,楊婷云,吳天昊,李想,趙俊良.頁巖氣開發機理和關鍵問題[J].科學通報,2016,61(1):62-71.
●地質材料的微觀力學研究
●力學升尺度模型構建
●數字巖心技術與應用
●微觀力學測試和機器學習的聯合應用方案開發
復雜油氣藏滲流理論與應用研究團隊以張烈輝教授為領銜,學術團隊由李曉平、趙玉龍、劉啟國、陳軍、馮國慶、胡書勇、王海濤、羅建新、郭晶晶、譚曉華、唐慧瑩、張濤、田野、李溢龍、趙俊良等骨干教師組成。該研究團隊的主要特點是基于建立的滲流物理模型,以油氣滲流機理實驗研究為手段,以數學、力學為工具,采用多學科交叉滲透結合的研究方法,建立油氣藏科學開發的滲流力學理論,在理論研究取得突破的基礎上,研究油氣田開發中的系列重要關鍵技術,包括油氣藏數值模擬技術、油氣井試井分析技術、油氣藏動態分析技術等。