Lin, Kun-Mo Associate Professor

 

Education

Ph. D. in Mechanical Engineering, National Chiao Tung University, Taiwan

Expertise

Application of Plasma TechnologyPlasma Diagnostics/SimulationThermal/Flow Numerical SimulationHigh-Performance Parallel Computing
Extension 33306
E-mail Emailimekml@ccu.edu.tw
Office College of Engineering(II) R430A
Lab College of Engineering(II) R430B 
Link  
Journal Papers

12. K.-M. Lin*, C.-C. Ou, K.-C. Wang, Z.-W. Liou, and S.-Y. Chuang, “Investigation of pressure waves induced by gas heating of a single microdischarge in atmospheric pressure air dielectric barrier discharges,” International Journal of Heat and Mass Transfer (Submitted, 2020)

 

 

11. K.-M. Lin*, S.-Y. Chuang, W.-Y. Guo, and C.-H Cheng, “Thermal Characterization for a Single Microdischarge in Atmospheric Pressure Air Dielectric Barrier Discharges,” Plasma Sources Science & Technology (Accepted, 2020)
(SCI, IF: 4.128 (2018), 2/32)

 

 

 

10. K.-M. Lin*, Y.-H. Huang, W.-Y. Guo, and Y.-S Chang, “Development of a Semi-Empirical 1.5D Plasma Fluid Model for a Single Microdischarge in Atmospheric-Pressure Dielectric Barrier Discharges,” Plasma Sources Science & Technology, Vol. 28, 115014, 2019
(SCI, IF: 4.128 (2018), 2/32)

 

 

9. K.-M. Lin*, C.-M. Ku, and C.-H. Cheng, “Statistical behavior of a single microdischarge in atmospheric-pressure air dielectric barrier discharges,” Physics of Plasmas, Vol. 26, 013508, 2019
(SCI, IF: 1.941 (2017), 16/32)

 

8. B.-R. Gu, K.-M. Lin, M.-H. Hu, C.-T. Hung, J.-S. Wu* and Y.-S. Chen, “A Temporal Multi-scale Algorithm for Efficient Fluid Modeling of One-dimensional Gas Discharge,” Plasma Sources Science & Technology, Vol. 23, No. 6, 065021, 2014
(SCI, IF: 3.591 (2014), 2/31) (http://dx.doi.org/10.1088/0963-0252/23/6/065021)


7. F.-L. Li, C.-T. Hung, K.-M. Lin, T.-C. Wei, and J.-S. Wu*, “Numerical and experimental investigation of light emissions of a planar nitrogen atmospheric-pressure dielectric barrier discharge due to addition of ammonia considering oxygen impurity”, Plasma Sources Science and Technology, Vol. 22, No. 6, 065003, 2013
(SCI, IF: 3.591 (2014), 2/31) (doi:10.1088/0963-0252/22/6/065003)


6. K.-M. Lin, M.-H. Hu, C.-T. Hung, J.-S. Wu, F.-N. Hwang, Y.-S. Chen, and G. Cheng, “A Parallel Hybrid Numerical Algorithm for Simulating Gas Flow and Gas Discharge of an Atmospheric-Pressure Plasma Jet”, Computer Physics Communication, Vol. 183, pp. 2550–2560, 2012.
(SCI, IF: 3.112 (2014), 1/54) (http://dx.doi.org/10.1016/j.cpc.2012.07.004)


5. K.-M. Lin, C.-T. Hung, F.-N. Hwang, M. R. Smith, Y.-W. Yang, and J.-S. Wu*, “Development of a Parallel Semi-Implicit Two-Dimensional Plasma Fluid Modeling Code Using Finite-Volume Method”, Computer Physics Communication, Vol. 183, pp. 1225-1236, 2012.
(SCI, IF: 3.112 (2014), 1/54) (http://dx.doi.org/10.1016/j.cpc.2012.02.001 )


4. F.-L. Li, K.-M. Lin, Y.-W. Yang, C.-T. Hung, J.-S. Wu*, and J.-P. Yu, “Numerical Investigation of a Parallel-Plate Atmospheric-Pressure Nitrogen/Ammonia Dielectric Barrier Discharge,” Plasma Chemistry and Plasma Processing, Vol. 31, Number 3, pp. 547-564, 2012.
(SCI, IF: 2.056 (2014), 12/31) (http://dx.doi.org/10.1007/s11090-012-9368-x)


3. K.-W. Cheng, C.-T. Hung, K.-M. Lin, Y.-M. Chiu, J.-S. Wu* and J.-P. Yu, "Fluid Modeling of a Nitrogen Atmospheric-Pressure Planar Dielectric Barrier Discharge Driven by a Realistic Distorted Sinusoidal AC Power Source ", Japan Journal of Applied Physics, Vol. 51, 116001, 2012
(SCI, IF: 1.127 (2014), 97/144) (http://dx.doi.org/10.7567/jjap.51.116001 )


2. M. R. Smith, K.-M. Lin, C.-T. Hung, Y.-S. Chen, and J.-S. Wu*, “Development of an improved spatial reconstruction technique for the HLL method and its applications”, Journal of Computational Physics, Vol. 230, pp. 477-493, 2011.
(SCI, IF: 2.434 (2014), 3/54) (http://dx.doi.org/10.1016/j.jcp.2010.09.023)


1. M. R. Smith, C.-T. Hung, K.-M. Lin, J.-S. Wu, and J.-P. Yu, “Development of a semi-implicit fluid modeling code using finite-volume method based on Cartesian grids,” Computer Physics Communications, Vol. 182, pp. 170-172, 2011
(SCI, IF: 3.112 (2014), 1/54) (http://dx.doi.org/10.1016/j.cpc.2010.05.018)

Conference Papers

15. (Oral) K.-M. Lin*, Y.-H. Huang, W.-Y. Guo, “Numerical Simulations of a Single Microdischarge in Atmospheric Pressure Dielectric Barrier Discharges,” 7th Asian Pacific Congress on Computational Mechanics (APCOM), Taipei, Taiwan, December 17-20, 2019. (Session: Recent Advances in Application of CFD Tools to Complex Flow Problems)

 

 

14. (Oral) S.-Y. Zhuang, K.-M. Lin*, and Y.-S. Chang, “Thermal Characterization of an Atmospheric Pressure Helium Dielectric Barrier Discharge Reactor,” 16th International Conference on Flow Dynamics (ICFD), Sendai, Japan, November 6-8, 2019. (OS12: Complex Thermofluid System - Numerical Modeling) (MOST 108-2922-I-194-024)

 

 

13. (Invited) K.-M. Lin*, Y.-H. Huang, W.-Y. Guo, and Y.-S. Chang, “Development of a Plasma Fluid Model for Atmospheric Pressure Air Dielectric Barrier Discharges,” 16th International Conference on Flow Dynamics (ICFD), Sendai, Japan, November 6-8, 2019. (Session chair: OS12: Complex Thermofluid System - Numerical Modeling) (MOST 108-2914-I-194 -013 -A1)

 

 

12. (Invited) K.-M. Lin*, C.-H. Cheng, W.-Y. Guo, and R.-J. Zhan, “Thermal Characterization of an Atmospheric-Pressure Air DBD Reactor,” 15th International Conference on Flow Dynamics (ICFD), Sendai, Japan, November 7-9, 2018. (Session chair: OS11: Complex Thermofluid System - Plasma Physics and Numerical Methods) (MOST 107-2221-E-194-026-)

 

 

11. (Oral) R.-J. Zhan, K.-M. Lin*, C.-Y. Lee, and C.-F. Wong, “Characterization of Ozone Densities in the Atmospheric-Pressure Helium/Oxygen Dielectric-Barrier Discharges,” 15th International Conference on Flow Dynamics (ICFD), Sendai, Japan, November 7-9, 2018. (Session: OS5: Advanced Applications of Multi-functional Fluids) (MOST 107-2221-E-194-026-)

 

 

10. (Oral) K.-M. Lin*, W.-Y. Guo, R.-J. Zhan, and C.-H. Cheng, “Heat Transfer Analysis in an Atmospheric-Pressure Air DBD Reactor,” 12th Asian Computational Fluid Dynamics Conference (ACFD) (the 25th National Computational Fluid Dynamics Conference, NCFD), Yilan City, Taiwan, October 15-18, 2018. (Session chair: Heat/Mass transfer) (MOST 107-2221-E-194-026-)

 

 

9. (Oral) K.-M. Lin*, C.-M. Ku, Y.-H. Huang, C.-H. Cheng, C.-Y. Lee, “Characterization of a Single Microdischarge in Atmospheric-Pressure Air Dielectric-Barrier Discharges,” 28th Symposium on Plasma Physics and Technology, Czech Technical University in Prague, Prague, Czech, June 18-22, 2018 (MOST 106-2221-E-194-039-)

 

 

8. C.-T. Hung, K.-M. Lin, M.-H. Hu, Y.-M. Chiu, C.-C. Chiou, S.-Y. Wang, J.-S. Wu*, “Development of Parallel Fluid Modeling Tools for Low-Temperature Non-equilibrium Plasma Physics and Chemistry,” 6th International Conference on Plasma NanoTechnology & Science (IC-PLANTS 2013), Gero Synergy Center, Gero City, Gifu, Japan, January 2-3, 2013.


7. K.-M. Lin, M.-H. Hu, C.-T. Hung and J.-S. Wu*, “Development of Parallel Hybrid Simulation Tools for Modeling Atmospheric-Pressure Gas Discharges,” 8th EU-Japan Joint Symposium on Plasma Processing (JSPP2012), Nara, Japan, January 16-18, 2012.


6. K.-M. Lin, M.-H. Hu, C.-T. Hung, and J.-S. Wu, “Development of a Parallel 2-D Hybrid Gas Flow and Plasma Fluid Modeling Algorithm and Its Application in Atmospheric-Pressure Plasma Jets”, The 7th Asia-Pacific International Symposium on the Basics and Applications of Plasma Technology, Taiwan, April 14-16, 2012


5. K.-M. Lin, M.-H. Hu, C.-T. Hung, and J.-S. Wu, “Numerical Investigation of Atmospheric Pressure Plasma Jet Using Helium Discharge Driven by a Radio-Frequency Power Source”, American Vacuum Society (AVS) International Plasma Workshop, Taipei, Taiwan, March 22-25, 2011


4. K.-M Lin, C.-T. Hung, M. R. Smith, and J.-S. Wu*, “One-dimensional Fluid Modeling of Helium/Oxygen Gas Discharges Driven by a Nearly Sinusoidal AC Power Source”, 7th International Conference on Flow Dynamics, Sendai, Japan, November 1-3, 2010.


3. K.-M. Lin, M. R. Smith, and J.-S. Wu*, “Development of a large scale parallel fluid modeling code using finite-volume method based on Cartesian grids”, Conference on Computational Physics (CCP) 2009, Kaohsiung, Taiwan, December 15-19, 2009.


2. C.-T. Hung, M.-H. Hu, Y.-M. Chiu, K.-M Lin, Y.-C. Wang, and J.-S. Wu, “Non-Thermal Plasma Simulation Using Parallel Fluid Modeling Code,” HPC-Asia 2009, March 2-5 (2009), Kaohsiung, Taiwan


1. M. R. Smith, C.-T. Hung, K.-M. Lin, J.-S. Wu, and J.-P. Yu, “Development of a semi-implicit fluid modeling code using finite-volume method based on Cartesian grids,” Conference on Computational Physics (CCP) 2009, Kaohsiung, Taiwan, December 15-19, 2009

Program

研究計畫:

3. 常壓氦氣/氧氣電漿之臭氧濃度特性分析,科技部,2018

2. 常壓空氣電漿之激發態氮氣分子特性分析-第二部分: 後輝光放電區反應機制與傳輸現象,科技部,2017

1. 常壓空氣電漿之激發態氮氣分子特性分析,科技部, 2017