國立臺灣大學機械工程學系
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潘國隆
中文姓名:潘國隆
職稱:教授
任職期間:
英文姓名:Kuo-Long Pan
Email:panpeter@ntu.edu.tw
聯絡電話:02-33665569
傳真: 02-23631755
辦公室: 機械館505室
影響區域: 創新、能源
研究所組別: 熱流組
實驗室: 流體物理實驗室(機械館511室)
個人簡介
  • 個人簡介
  • 研究領域
  • 教學課程
  • 研究計畫
  • 研究著作

學歷

 

普林斯頓大學, 機械暨航空太空工程博士, 2004
清華大學, 動力機械工程碩士, 1996
清華大學, 動力機械工程學士, 1994

 

 


自傳

 

  潘國隆教授於1994年及1996年分別獲得國立清華大學動力機械工程學系學士與碩士學位,並於2004年取得美國普林斯頓大學機械與航太工程博士學位。博士期間的研究由美國空軍科學研究辦公室(Air Force Office of Scientific Research, AFOSR)資助,該單位隸屬於美國空軍研究實驗室(Air Force Research Laboratory, AFRL)。

 

  潘教授於2004年至2005年間擔任國立中央大學助理教授,2005年起加入國立臺灣大學機械工程學系任教,並於2013年升任正教授。他現為美國航空暨太空學會(AIAA)副會士,以及美國物理學會(APS)終身會員。

 

  潘教授的研究領域涵蓋流體物理、燃燒與能源、計算流體力學及推進系統等方向。目前已發表50篇 SCIE 期刊論文,擁有3項專利,並為超過41種國際期刊擔任審稿人。其研究成果曾於2005年榮獲美國航空暨太空學會(AIAA)最佳論文獎。

 

 


經歷

 

  • Visiting Research Collaborator (Department of Mechanical and Aerospace Engineering, Princeton University, 9/15 – 12/13/2024)
  • 兼任工研院電子與光電系統研究所特聘研究Adjunct Distinguished Research Fellow, Electronic & Optoelectronic System Research Laboratories / Industrial Technology Research Institute (ITRI) (10/12/2021–1/31/2022)
  • Visiting Scholar (Department of Aerospace Engineering, Kyoto University, 8/9/2018 – 9/8/2018)
  • Visiting Scholar (Rudolf Peierls Centre for Theoretical Physics, Department of Physics, University of Oxford, 9/15/2016 – 12/14/2016)
  • Professor (ME, National Taiwan University, 8/1/2013 to present
  • Associate Professor (ME, National Taiwan University, 8/1/2009 – 7/31/2013)
  • Assistant Professor (ME, National Taiwan University, 8/1/2005 – 7/31/2009)
  • Assistant Professor (ME, National Central University, 8/1/2004 – 7/31/2005)

 

 


學術榮譽及獎項

 

  1. 2021/2022/2024 Stanford University’s Top 2% Scientists (Single Year) List.
  2. Plenary speaker, The 22nd Annual Conference on Liquid Atomization and Spray Systems Asia (ILASS ASIA 2022), the Combustion Institute (Indian Section), Indian Institute of Technology (IIT), Indore, India (online lecture, Oct. 28-30, 2022).
  3. Keynote speaker (Key Resource Person), A 5-DAY NATIONAL SPARC WORKSHOP ON COMBUSTION ANALYSIS AND MODERN TRENDS IN IC ENGINES (Virtual Mode), Department of Mechanical Engineering, National Institute of Technology (NIT), Warangal, India (online lecture, Feb. 7-11, 2022).
  4. 國立臺灣大學110年度工學院學術勵進獎(110/9/29)。Academic advancement award, College of Engineering, National Taiwan University (September 29, 2021).
  5. Keynote speaker, The 31st National Conference on Combustion and Energy, Yunlin (April 23-24, 2021). 中華民國燃燒學會第31屆燃燒與能源學術研討會,大會專題演講。
  6. 國立臺灣大學109/110/111/112學年度彈性加給/年度績優教師(109/8/1-113/7/31)Flexible additional pay.
  7. Scheme for Promotion of Academic and Research Collaboration (SPARC), India; Collaborator,with National Institute of Technology (NIT), Warangal (2019–2021).
  8. 民國108年科技部熱流學門成果發表會海報競賽佳作(12/07/2019):『奈米粒子與柴油/生質油的混和油料於微重力場與自由下落之液滴燃燒研究(2/3)』.
  9. Faculty Exchange Program (8/9/2018 – 9/8/2018), Kyoto University, Japan.
  10. Short-term Overseas Scholarship Award, Ministry of Science and Technology (MOST), 2016.
  11. 中華民國力學學會 年輕力學學者獎(中華民國力學學會年會11/20, 2015)Distinguished Young Scholar Award, Society of Theoretical and Applied Mechanics of Republic of China, 2015.
  12. 102年度工研院機械所學界分包計畫績優,『常壓PECVD系統鍍膜均勻度之改善』,1/14/103. Industrial Technology Research Institute (ITRI) Outstanding Project, “Film Uniformity Improvement for AP PECVD System,” 1/14/2014.
  13. Outstanding Young Scholar Research Project, National Science Council (NSC), 國科會102年度『優秀年輕學者計畫』, 8/1/102-7/31/105.
  14. 2013 Associate Fellow of AIAA (announced in Oct., 2012)

 


指導學生獲獎

 

  1. 指導學生周豈禾獲得中華民國燃燒學會「2022年碩博士論文獎」碩士論文獎第一名:『在直接模擬蒙地卡羅法中重新分配反應後之內能並應用於極音速反應流』。(03/22/2023)
  2. 指導高中階段非學校型態實驗教育學生張又懿代表我國參加巴西科學博覽會,獲得大會一等獎及卡西歐特別獎。111年10月25-27日,南大河州新漢堡市。巴西科學博覽會(MOSTRATEC)」為南美洲規模最盛大的科學博覽會。
  3. 指導高中階段非學校型態實驗教育學生張又懿獲得國立臺灣科學教育館舉辦之「2022臺灣國際科學展覽會」大會二等獎(物理與天文學科),111年1月28日,並獲得台大頒與的指導教師行政獎勵。
  4. 指導學生黃冠嶺獲得中華民國力學學會一〇九年度「博士學位論文獎(熱流能源組)」, National Conference on Theoretical and Applied Mechanics (CTAM 2020), Society of Theoretical and Applied Mechanics of the Republic of China (Nov. 26-27, 2020)
  5. 中華民國燃燒學會第30屆燃燒與能源學術研討會,學生論文競賽第三名,『醇類添加奈米顆粒的微爆機制』,賴彥偉、潘國隆(國立勤益科技大學,台中,6/20, 2020)。

 

 

研究專長

 

流體物理、燃燒與能源、計算流體力學、噴射推進

 

 

實驗研究方向

 

  流體物理實驗室致力於理解和應用流體物理學,涉及界面動力學、高速空氣動力學以及複雜的反應,例如燃燒和等離子體。我們最近研究的主題包括:液滴碰撞、多相流、火焰動力學、微重力液滴燃燒、生物燃料、計算流體動力學、微/奈米流體力學、界面活性劑、飛行器和機械、高速和電磁推進、等離子體模擬和等離子體增強化學氣相沉積、地熱能和渦輪機設計。以下是一些研究成果的示例圖像。

 

 

 

 

 

流體力學/可壓縮流體力學

計算流體力學

噴射推進

高等熱力學

飛行器原理與實作

燃燒學

氣體物理

工程數學

量測原理與機工實驗 (I) (II)

  1. 國家科學及技術委員會,National Science and Technology Council,“應用自然界磁場的先進太空推進原理之研發,” 契約編號:113-2221-E-002-179- (2024/08/01 – 2025/07/31).
  2. 國家科學及技術委員會,National Science and Technology Council,“Direct Simulation Monte Carlo Reaction Model Development and it's application in Supersonic reacting flows. 直接模擬蒙地卡羅法之反應模型發展並應用於超音速反應流,” 契約編號:113-2221-E-002-180-MY2 (2024/08/01 – 2026/07/31).
  3. 國防先進科技研究計畫,國家中山科學研究院,National Chung-Shan Institute of Science and Technology, “Numerical simulation of reacting flows involving Boron particles in a ramjet combustor硼富燃料推進劑之二次燃燒流場特性研究,” 契約編號:NCSIST-ACOM-112-6517004 (2023/02/01 – 2024/12/31).
  4. Ministry of Science and Technology, PI, “Critical interfacial phenomena in binary droplet collisions雙液滴碰撞的重要界面現象,” MOST 110-2221-E-002-088-MY3, 2021/08/01 – 2024/07/31.
  5. Ministry of Science and Technology, PI, “Three profound problems in binary droplet collisions: (1) droplet size; (2) heterogeneous drops; (3) pinching dynamics雙液滴碰撞的三個深究問題:(一)液滴尺寸;(二)異質液滴;(三)液柱截斷,” MOST 109-2221-E-002-203, 2020/08/01 – 2021/07/31.
  6. Ministry of Science and Technology, PI, “Combustion of a multi-component droplet of diesel/biofuels doped with nanoparticles in microgravity and free-falling conditions奈米粒子與柴油/生質油的混和油料於微重力場與自由下落之液滴燃燒研究(3/3),” MOST 108-2221-E-002-054, 2019/08/01 – 2020/10/31.
  7. National Taiwan University and Academia Sinica Innovative Joint Program國立臺灣大學與中央研究院創新性合作計畫,PI, “Development of magnetic propulsion using geomagnetic fields and superconductors and demonstration by an innovative sensor for micro-thrust measurement應用地磁場與超導體的電磁力推進原理與系統之研發,” 2019/01/01 – 2020/12/31. 
期刊論文  (Journal Papers):Corresponding Author(通訊作者)*

 

  1. Chi-Ho Chou, Kuo-Long Pan*, “Redistribution of the post-reaction internal energies in DSMC using quantum-kinetic model,” Computer Physics Communications 314 (SCIE), 109641 (2025). 
  2. Chi-Ho Chou and Kuo-Long Pan*, “Computational investigation of chemical and non-equilibrium effects on the Richtmyer–Meshkov instability,” Proceedings of the Combustion Institute 40 (SCIE), 105335 (2024).
  3. Carole Planchette*, Grazia Lamanna and Kuo-Long Pan, “Editorial: Physics of droplets,” Frontiers in Physics 12 (SCIE), p. 01-02 (2024).
  4. Y. W. Lai and K. L. Pan*, “Disruption and microexplosion mechanisms of burning alcohol droplets with the addition of nanoparticles,” Combustion and Flame 256 (SCIE), 112958 (October 2023).
  5. S. J. Chen and K. L. Pan*, “On non-premixed flames of dual porous cylinders in tandem,” International Communications in Heat and Mass Transfer 142 (SCIE), 106670 (2023).
  6. Kuan-Ling Huang and Kuo-Long Pan*, “Transitions of Bouncing and Coalescence in binary droplet collisions,” Journal of Fluid Mechanics (SCIE), p. A7-1-19 (2021), published online 4 Oct.
  7. Kosuke Suzuki, Takaji Inamuro, Aoi Nakamura, Fuminori Horai, Kuo-Long Pan, and Masato Yoshino, “Simple extended lattice Boltzmann methods for incompressible viscous single-phase and two-phase fluid flows,” Physics of Fluids 33 (SCIE), 037118 (2021).
  8. Heng-Wei Kuo, Kuo-Long Pan*, and Wei-Li Lee, “A propellant-free superconducting solenoid thruster driven by geomagnetic field,” Journal of Advanced Research 28 (SCIE), February, 269-275 (2021); available online 10 August 2020.
  9. Wei-Shen Lee and Kuo-Long Pan*, “Computational investigation of an ethylene-fueled supersonic combustor assisted by a porous cylindrical burner,” Aerospace Science and Technology 107 (SCIE), December, 106350 (2020); online 13th November.
  10. K. L. Huang, K. L. Pan*, and Christophe Josserand, “Pinching dynamics and satellite droplet formation in symmetrical droplet collisions,” Physical Review Letters 123 (SCIE), No. 23, 6th December, 234502 (2019).
  11. K. L. Pan*, K. L. Huang, W. T. Hsieh, and C. R. Lu, “Rotational separation after temporary coalescence in binary droplet collisions,” Physical Review Fluids 4 (SCIE), No. 12, 2nd December, 123602 (2019).
  12. P. H. Chou, J. C. Huang, K. L. Pan*, and J. Y. Juang*, “Enhancement of electrical conductivity of transparent Ga-doped zinc oxide films via quench reduction in an atmospheric pressure plasma jet,” Physical Review Applied 12 (SCIE), 25th September, 034050 (2019).
  13. C. Y. Chao, H. W. Tsai, K. L. Pan*, and C. W. Hsieh, “On the microexplosion mechanisms of burning droplets blended with biodiesel and alcohol,” Combustion and Flame 205 (SCI, EI), p. 397-406 (July 2019).
 
國際會議論文  (International Conference Papers)

 

  1. Hao-Jen Chuang, Wei-Hung Shen, K. L. Pan*, and Sheng-Der Chao “Revisiting droplet walking on a vibrating bath through a slit,” The 26th International Congress of Theoretical and Applied Mechanics (ICTAM 2024), Daegu, South Korea (August 25-30, 2024), Oral (long) Presentation (ID: FrFM0665).
  2. Chi-Ho Chou and Kuo-Long Pan*, “Computational investigation of chemical and non-equilibrium effects on the Richtmyer–Meshkov instability,” The Combustion Institute's 40th International Symposium – Emphasizing Energy Transition, Milan, Italy (July 21-26, 2024).
  3. W. K. Cheung and K. L. Pan*, “Numerical study of a liquid n-decane fueled supersonic combustor aided by a porous cylindrical burner,” The 33rd International Symposium on Rarefied Gas Dynamics (RGD33), Göttingen, Germany (July 15-19, 2024).
  4. Ci-Jie Jhang, Kuo-Long Pan*, “On the impact of a liquid crystal droplet upon a surface pre-treated by various liquids,” APS March Meeting 2024, Minneapolis, MN (March 3-8, 2024). Abstract # 2105042 (RR03.00009).
  5. Pei-Hsun Huang, Ching-Huan Tseng, Kuo-Long Pan*, “PIV Measurement and Numerical Simulation of Flow Field in a Novel Burner with a Cap,” The 14th Asia-Pacific Conference on Combustion (ASPACC), Kaohsiung, Taiwan (14th-18th May 2023), Paper Number: 336.
  6. Chi-Ho Chou, Kuo-Long Pan*, “Energy Redistribution in DSMC Using Modified Quantum-Kinetic Model,” The 32nd International Symposium on Rarefied Gas Dynamics (RGD32), Seoul, South Korea (July 4-8th, 2022).
  7. K. L. Huang, K. L. Pan*, and J. C. Chen, “Suppressing breakups in binary droplet collisions by surfactant,” 15th Triennial International Conference on Liquid Atomization and Spray Systems (ICLASS 2021), Edinburgh, UK (8/29 – 9/2, 2021).
  8. C. P. Huang and K. L. Pan*, “Colliding merging of binary immiscible droplets,” The 25th International Congress of Theoretical and Applied Mechanics (ICTAM 2020+1), Milano, Italy (August 22-27, 2021), oral presentation (ID: O106534).
  9. Wei-Shen Lee and Kuo-Long Pan*, “Performance enhancement of an ethylene-fueled scramjet combustor using a porous cylindrical burner,” AIAA Propulsion and Energy 2019 Forum (EI), Indianapolis, Indiana, USA. Paper Number: AIAA 2019-4232 (August 19 – 22, 2019).
  10. Wei-Shen Lee, Kuo-Long Pan*, “Three-dimensional simulation of a scramjet combustor fueled by ethylene,” The 32nd International Symposium on Shock Waves (ISSW32), Singapore (July 14-19, 2019). Abstract # OR-03-0372. Proceeding, p. 769-774. doi:10.3850/978-981-11-2730-4_0372-cd.
  11. Chu-Po Huang, Kuo-Long Pan*, “Experimental and analytical studies on colliding merging of two immiscible drops,” APS March Meeting 2019, Boston, Massachusetts (March 4-8, 2019). Abstract # S48.00008.
 
國內會議論文  (Domestic Conference Papers)

 

  1. Hao Wei Sung, Shao-Luen Huang, Kuo-Long Pan*, “Study on the Combustion Flow Field Characteristics of Boron-Based Fuel in a Two-Dimensional Flow Field,” 66th Astronautical Society of the Republic of China, 第六十六屆中華民國航空太空學會,國立成功大學,論文編號:1114 (Dec. 7, 2024)。
  2. S. H. Huang, H. W. Sung and K. L. Pan*, “Numerical Simulation of Reacting Flows Involving Boron Particles In A Ramjet Combustor.” 醇硼富燃料推進劑之二次燃燒流場特性研究(中科院基礎型),黃仕豪、宋浩維、潘國隆,第32屆國防科技學術研討會,國防大學理工學院,桃園(11/10, 2023)。
  3. K. L. Huang and K. L. Pan*, “Transitions of Bouncing and Coalescence in Binary Droplet Collisions,” 44th National Conference on Theoretical and Applied Mechanics, 中華民國第四十五屆全國力學會議,線上會議 (Nov. 18-19, 2021)。
  4. Kuo-Long Pan, “On the Breakups of Binary Droplet Collisions,”44th National Conference on Theoretical and Applied Mechanics, 中華民國第四十四屆全國力學會議, 國立宜蘭大學,Yilan宜蘭,論文編號:1190 (Nov. 26-27, 2020)。
  5. Kuan-Ling Huang and Kuo-Long Pan*, “Transitions of Bouncing and Coalescence in Binary Droplet Collisions,”37th National Conference on Mechanical Engineering of CSME, 中國機械工程學會第三十七屆全國學術研討會, 國立虎尾科技大學,雲林,論文編號:330 (Nov. 20-21, 2020)。
  6. Y. W. Lai and K. L. Pan*, “On the microexplosion mechanisms of burning alcohol droplets with the addition of nanoparticles,” The 30th National Conference on Combustion and Energy, Taichung (June 20, 2020). 醇類添加奈米顆粒的微爆機制,賴彥偉、潘國隆,中華民國燃燒學會第三十屆燃燒與能源學術研討會, 國立勤益科技大學,台中(6/20, 2020),論文編號:O14001。