司廷

司廷

司廷,男,博士,中國科學技術大學教授、博士生導師,錢學森傑出青年獎獲得者。

基本介紹

  • 中文名:司廷
  • 國籍:中國
  • 民族:漢
  • 畢業院校:中國科學技術大學
  • 學位/學歷:博士
  • 職業:教師
  • 專業方向:實驗流體力學:實驗方法,實驗技術,實驗設備研製 
  • 職稱:中國科學技術大學教授
  • 任職院校:中國科學技術大學
人物經歷,科研成果,社會兼職,研究方向,論文專著,所獲榮譽,

人物經歷

2004.9~2009.6 中國科學技術大學近代力學系,流體力學博士,導師尹協振教授
2009.6~2012.2 中國科學技術大學,博士後
2012.3~2012.8 美國俄亥俄州立大學(The Ohio State University),訪問學者
2012.2~2017 中國科學技術大學近代力學系,副教授(Tenure-track)
2014.8~2017美國俄亥俄州立大學(The Ohio State University),訪問教授
2017年獲得國家基金委優秀青年科學基金資助,
2018年入選中科院“青促會”會員。
2024年獲得首屆錢學森傑出青年獎
2025年獲得第七屆“科學探索獎”

科研成果

提出了生成微納尺度複合射流、圓弧形匯聚激波以及可控擾動流體界面的新方法,圍繞複雜界面流動開展了系統而深入的研究工作,重點解決其中涉及的關鍵科學問題,並開發多種實用化技術和先進設備。已連續獲得4項國家自然科學基金資助,獲國家專利10餘項,在重要期刊發表80餘篇論文,包括J. Fluid Mech.(10篇)、Phys. Fluids(13篇)、Phys. Rev. Lett.(1篇)、Appl. Phys. Lett.(3篇)、Phys. Rev. E(2篇)、Lab Chip(2篇)等。

社會兼職

中國力學學會微納尺度流動專業組委員,中國光學學會生物醫學光子學專業委員會青年委員,中科院“青促會”合肥分會委員,國際期刊BMC Cancer副編輯,實驗流體力學、空氣動力學學報、氣體物理等青年編委。

研究方向

1、實驗流體力學:實驗方法,實驗技術,實驗設備研製
2、界面不穩定性:RM,RT,KH不穩定性,射流不穩定性
3、微納尺度流動:毛細流動,多相射流,液滴

論文專著

  1. Measurement of a Richtmyer-Meshkov instability at an air-SF6 interface in a semiannular shock tube. Physical Review Letters, 119: 014501, 2017.
  2. On the interaction of a planar shock with a three-dimensional light gas cylinder. Journal of Fluid Mechanics, 828: 289-317. 2017.
  3. Experimental study on a sinusoidal air/SF6 interface accelerated by a cylindrically converging shock. Journal of Fluid Mechanics, 826: 819-829. 2017.
  4. The Richtmyer-Meshkov instability of a ‘V’ shaped air/SF6 interface. Journal of Fluid Mechanics, 802: 186-202, 2016.
  5. On the interaction of a planar shock with an SF6 polygon. Journal of Fluid Mechanics, 773: 366-394, 2015.
  6. Experimental investigation of cylindrical converging shock waves interacting with a polygonal heavy gas cylinder. Journal of Fluid Mechanics, 784: 225-251, 2015.
  7. On the interaction of a planar shock with a light polygonal interface. Journal of Fluid Mechanics, 757: 800-816, 2014.
  8. The Richtmyer-Meshkov instability of a three-dimensional air/SF6 interface with a minimum-surface feature. Journal of Fluid Mechanics(Rapids), 722(R2): 1-11, 2013.
  9. Modes in flow focusing and instability of coaxial liquid-gas jets. Journal of Fluid Mechanics, 629: 1-23, 2009.
  10. Manipulation of three-dimensional Richtmyer-Meshkov instability by initial interfacial principal curvatures. Physics of Fluids, 29: 032106, 2017.
  11. Reflection of cylindrical converging shock wave at an air/helium gaseous interface. Physics of Fluids, 29: 016102, 2017.
  12. Interaction of cylindrically converging diffracted shock with uniform interface. Physics of Fluids, 29: 086101, 2017.
  13. The Richtmyer-Meshkov instability of a ‘V’ shaped air/helium interface subjected to a weak shock. Physics of Fluids, 28: 082104, 2016.
  14. Reflection of cylindrical converging shock wave over a plane wedge. Physics of Fluids, 28: 086101, 2016.
  15. A semi-annular shock tube for studying cylindrically converging Richtmyer-Meshkov instability. Physics of Fluids(Letter), 27: 091702, 2015.
  16. Temporal instability of coflowing liquid-gas jets under an electric field. Physics of Fluids, 26: 054101, 2014.
  17. Experimental investigation of reshocked spherical gas interfaces. Physics of Fluids, 24: 054101, 2012.
  18. Parametric study of cylindrical converging shock waves generated based on shock dynamics theory. Physics of Fluids, 24: 026101, 2012.
  19. On the evolution of spherical gas interfaces accelerated by a planar shock wave. Physics of Fluids, 23: 084104, 2011.
  20. Spatial instability of coflowing liquid-gas jets in capillary flow focusing. Physics of Fluids, 22: 112105, 2010.
  21. Multiplex coaxial flow focusing for producing multicompartment Janus microcapsules with tunable material compositions and structural characteristics. Lab on a Chip, 17: 3168-3175, 2017.
  22. Microencapsulation of indocyanine green for potential applications in image-guided drug delivery. Lab on a Chip(Communications), 15: 646-649, 2015.
  23. Steady cone-jet mode in compound-fluidic electro-flow focusing for fabricating multicompartment microcapsules. Applied Physics Letters(Cover paper), 108: 021601, 2016.
  24. Optical droplet vaporization of nanoparticle-loaded stimuli-responsive microbubbles. Applied Physics Letters, 108: 111109, 2016.
  25. Principal curvature effects on the early evolution of three-dimensional single-mode Richtmyer-Meshkov instabilities. Physical Review E, 93: 023110, 2016.
  26. Richtmyer-Meshkov instability of a three-dimensional SF6-air interface with a minimum-surface feature. Physical Review E, 93: 013101, 2016.
  27. Ultrasound mediated delivery of oxygen and LLL12 loaded stimuli responsive microdroplets for the treatment of hypoxic cancer cells. Scientific Reports, 7: 44908, 2017.
  28. Microfluidic fabrication of stimuli-responsive microdroplets for acoustic and optical droplet vaporizations.Journal of Materials Chemistry B, 4: 2723-2730, 2016

所獲榮譽

2025年8月,榮獲2025年“科學探索獎”。

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