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  • Papers

  1. Yu-Kai Chen, W. –C. Wang*, “The Production of Pyrolytic Jet Fuel from Biomass,” Applied Energy (2019) under review

  2. Yu-Cheng Liu, W. –C. Wang*, “The Comparisons of Processes and Techno-Economic Analysis of Pyrolysis-to-jet and Fisher-Tropsch-to-jet,” Journal of Cleaner Production (2019) under review

  3. Yu-Cheng Lin, Wen Tong Chong, W. –C. Wang*, “Performance Evaluations of Helical Cross-axis Wind Turbine at the Rooftop of Urban Building through Wind Tunnel Experiment,” Renewable Energy (2019) under review

  4. Yu-Cheng Liu, W. –C. Wang*, “Process Design and Techno-Economic Analysis of Pyrolytic Renewable Jet Fuel,” Fuel (2019) under review

  5. Xiang-Xin Chen, W. –C. Wang*, “The Applications of Particle Image Velocimetry (PIV) to Experimentally Observe the Flow Behaviors inside the Selective Laser Melting (SLM) Working Chamber,” Flow Measurement and Instrumentation (2019) under review

  6. Sz-Jia Tzeng, W. –C. Wang*, “Numerical Studies of metal particle behaviors inside the Selective Laser Melting (SLM) Chamber through Computational Fluid Dynamics (CFD),” Advanced Powder Technology (2019) under review

  7. Sz-Jia Tzeng, Xiang-Xin Chen, W. –C. Wang*, “Numerical and Experimental Observations of the Flow Field inside the Selective Laser Melting (SLM) Chamber through Computational Fluid Dynamics (CFD) and Particle Image Velocimetry (PIV),” Powder Technology (2019) under review

  8. W. –C. Wang*, Chung-Hung Hsieh, “Study of Hydro-processed Esters and Fatty Acids: Converting Biomass-derived Oil into Straight-chain Alkanes,” Chemical Engineering Research and Design (2019) under review

  9. Yu-Kai Chen, Chung-Hung Hsieh, W. –C. Wang*, “The Production of Renewable Aviation Fuel from Waste Cooking Oil. Part II: Catalytic Hydro-cracking/isomerization of Hydro-processed Alkanes into Jet Fuel Range Products,” Renewable Energy (2019) under review

  10. W. –C. Wang*, “Techno-Economic Analysis for Evaluating the Potential Feedstocks for Producing Hydro-processed Renewable Jet Fuel in Taiwan,” Energy 179 (2019) 771-783.

  11. Pimpun Tongpun, W. –C. Wang*, Penjit Srinophakun, “Techno-Economic Analysis of Renewable Aviation Fuel Production: From Farming to Refinery Processes,” Journal of Cleaner Production 226 (2019) 6-17.

  12.  Ren-Sin Chen, W. –C. Wang*, “The Production of Renewable Aviation Fuel from Waste Cooking Oil. Part I: Bio-Alkane Conversion through Hydro-Processing of Oil,” Renewable Energy 135 (2019) 819-835.

  13. W. –C. Wang*, An-Cheng Lee, “The Study of Producing "Drop-in" Fuels from Agricultural Waste through Fast Pyrolysis and Catalytic Hydro-processing,” Renewable Energy 133 (2019) 1-10.

  14. W. –C. Wang*, Jheng-Jie Wang, Wen Tong Chong, “The Effects of Unsteady Wind on the Performances of a Newly Developed Cross-Axis Wind Turbine: a Wind Tunnel Study,” Renewable Energy 131 (2019) 644-659.

  15. Keng-Hao Hsu, W. –C. Wang*, Yu-Cheng Liu, “Experimental studies and Techno-Economic analysis of Hydro-processed Renewable Diesel production in Taiwan,” Energy 164 (2018) 99-111.

  16. W. –C. Wang*, An-Cheng Lee, “Thermo-chemical Processing of Miscanthus through the Fluidized Bed Fast Pyrolysis: a Parametric Study,” Chemical Engineering & Technology 41 (2018) 1737-1745.

  17. W. –C. Wang*, Jyun-Jhih Jan, “From Laboratory to Pilot: Design Concept and Techno-economic Analyses of the Fluidized Bed Fast Pyrolysis of Biomass,” Energy 155 (2018) 139-151.

  18. Kok Hoe Wong, Wen Tong Chong*, Nazatul Liana Sukiman, Yui-Chuin Shiah, Sin Chew Poh, Kamaruzaman Sopian, W. –C. Wang, “Experimental and Simulation Investigation into the Effects of a Flat Plate Deflector on Vertical Axis Wind Turbine, “ Energy Conversion and Management 160 (2018) 109-125.

  19. W. –C. Wang*, Wen Tong Chong, Tien-Hsin Chao, “Performance Analysis of a Cross-axis Wind Turbine from Wind Tunnel Experiments,” Journal of Wind Engineering & Industrial Aerodynamics 174 (2018) 312-329.

  20. Wei-Lin Wu, W. –C. Wang*, Wei-Lo, “The Computational Analysis for Improving the Strip Flatness in Run-Out-Table during Laminar Cooling,” International Journal of Advanced Manufacturing Technology 95 (2018) 4419-4437.

  21. L. Tao*, A. Milbrandt, Y. Zhang, W. –C. Wang, “Techno-economic and resource analysis of hydroprocessed renewable jet fuel,” Biotechnology for Biofuels, 10:261 (2017) doi.org/10.1186/s13068-017-0945-3. 

  22. W. –C. Wang*, C. –Y. Chang, “Flow Analysis of the Laminated Manufacturing System with Laser Sintering of Metal Powder. Part I: Flow Uniformity inside the Working Chamber,” International Journal of Advanced Manufacturing Technology 92 (2017) 1299-1314.

  23. S. Mahajan, W. –C. Wang*, H. –Y. Teah, “Life Cycle Assessment for Palm Derived Biodiesel in Taiwan,” Clean Technologies and Environmental Policy 19 (2017) 959-969.

  24. W. –C. Wang*, H. –Y. Teah, “Life Cycle Assessment of Small-Scale Horizontal Axis Wind Turbines (HAWT) in Taiwan,” Journal of Cleaner Production 141 (2017) 492-501.

  25. R. –H. Chen, W. –C. Wang*, Y. –W. Chen, “Like-drop collisions of biodiesel and emulsion diesel,” European Journal of Mechanics - B/Fluids 60 (2016) 62-69.

  26.  S.-Y. Lin, Y. –Y. Lin, C. –J. Bai, W. –C. Wang*, “Performance Analysis of Vertical-Axis-Wind-Turbine Blade with Modified Trailing Edge through Computational Fluid Dynamics,” Renewable Energy 99 (2016) 654-662.

  27. P. –W Chen, C.-J. Bai, W. –C. Wang*, “Experimental and Numerical Studies of Low Aspect Ratio Wing at Critical Reynolds Number,” European Journal of Mechanics - B/Fluids 59 (2016) 161-168.

  28. C.-J. Bai, W. –C. Wang*, P. –W Chen, “Experimental and Numerical Studies on the performance and surface streamlines on the blades of a Horizontal-Axis Wind Turbine,” Clean Technologies and Environmental Policy 19 (2017) 471-481.

  29. C.-J. Bai, W. –C. Wang*, “Review of computational and experimental approaches to analysis of aerodynamic performance in horizontal-axis wind turbines (HAWTs),” Renewable and Sustainable Energy Reviews 63 (2016) 506-519.

  30. C.-J. Bai, W. –C. Wang*, P. –W Chen, “The Effects of Sinusoidal Leading Edge of the turbine blade on the power coefficient of Horizontal-Axis Wind Turbine (HAWT),“ International Journal of Green Energy 13 (2016) 1193-1200.

  31. W. –C. Wang*, “Techno-Economic Analysis of a Bio-refinery Process for Producing Hydro-processed Renewable Jet Fuel from Jatropha,” Renewable Energy, 95 (2016) 63-73.

  32. C.-J. Bai, P. –W Chen, W. –C. Wang*, “Aerodynamic design and analysis of a 10 kW horizontal-axis wind turbine for Tainan, Taiwan,” Clean Technologies and Environmental Policy, 18 (2016) 1151-1166.

  33. W. –C. Wang*, C.-J. Bai, C.-T. Lin, S. Prakash, “Alternative fuel produced from thermal pyrolysis of waste tires and its use in a DI diesel engine,” Applied Thermal Engineering, 93 (2016) 330-338.

  34. W. –C. Wang*, L. Tao, “Bio-Jet Fuel Conversion Technologies,” Renewable and Sustainable Energy Reviews, 53 (2016) 801-822.

  35. C. –J. Bai, Y. –Y Lin, S. –Y. Lin, W. –C. Wang*, “CFD Analysis of the Vertical Axis Wind Turbine Blade with Tubercle Leading Edge,” Journal of Renewable and Sustainable Energy, 7 (2015) 033124-1-14.

  36. W. –C. Wang*, C. –J. Bai, N. Thapaliya,” The production of renewable transportation fuel through fed-batch and continuous deoxygenation of biomass derived fatty acids over Pd/C catalyst”, International Journal of Energy Research, 39 (2015) 1083-1093.

  37. R. H. Natelson*, W. –C. Wang, W. L. Roberts, K. D. Zering,” Technoeconomic analysis of jet fuel production from hydrolysis, decarboxylation, and reforming of camelina oil,” Biomass and Bioenergy, 75 (2015) 23–34.

  38. C. –J. Bai, W. –C. Wang*, P. –W. Chen, W. –T. Chong, “System Integration of the Horizontal-Axis Wind Turbine: The Design of Turbine Blades with an Axial-Flux Permanent Magnet Generator” Energies, 7 (2014) 7773-7793.

  39. W. –C. Wang, E. Allen, A. A. Campos, R. K. Cade, L. Dean, J. G. Immer, S. Mixson, S. Srirangan, M-L Sauer, S. Schreck, K. Sun, N. Thapaliya, C. Wilson, J. Burkholder, A. M. Grunden, H. H. Lamb, H. Sederoff, L. F. Stikeleather, W. L. Roberts*, “ASI: Dunaliella Marine Microalgae to Drop-In Replacement Liquid Transportation Fuel,” Environmental Progress and Sustainable Energy, 32 (2013) 916-925.

  40. W. -C. Wang, R. H. Natelson*, L.F. Stikeleather, W.L. Roberts, “Product Sampling and Kinetic Modeling during the Transient Stage of Continuous Countercurrent Hydrolysis of Canola Oil,” Computers and Chemical Engineering, 58 (2013) 144-155.

  41. P. –C. Chen, W. -C. Wang, W. L. Roberts, T. Fang*, “Spray and atomization of diesel fuel and its alternatives from a single-hole injector using a common rail fuel injection system”, FUEL, 103 (2013) 850-861.

  42. W. -C. Wang*, W. L. Roberts, L.F. Stikeleather, “Hydrocarbon Fuels from Gas Phase Decarboxylation of Hydrolyzed Free Fatty Acid,” Journal of Energy Resource Technology, 134 (2012) 0322031-0322037.

  43. W. -C. Wang, T. L. Turner, W. L. Roberts, L. F. Stikeleather*, “Direct Injection of Superheated Steam for Continuous Hydrolysis Reactions,” Chemical Engineering and Processing: Process Intensification, 59 (2012) 52-59.

  44. W. -C. Wang, T. L. Turner, L. F. Stikeleather*, W. L. Roberts, “Exploration of Process Parameters for Continuous Hydrolysis of Canola Oil, Camelina Oil and Algal Oil,” Chemical Engineering and Processing: Process Intensification, 57-58 (2012) 51-58.

  45. W. -C. Wang, R. H. Natelson*, L.F. Stikeleather, W.L. Roberts,” CFD Simulation of Transient Stage of Continuous Countercurrent Hydrolysis of Canola Oil,” Computers & Chemical Engineering, 43 (2012) 108-119.

  46. W. -C. Wang*, “Laboratory Investigation of Drying Rates of Illinois Coals,” Powder Technology, 225 (2012) 72-85.

  47. W. -C. Wang, W. -H. Lin*, C. -P. Kuo, J. -Y. Wu, “The relation between dioxin concentration from exhaust gas of diesel engine and chlorine content,” Journal of Analytical and Applied Pyrolysis, 94 (2012) 10-16.

  48. W. -C. Wang*, N. Thapaliya, L.F. Stikeleather, W.L. Roberts,” Hydrocarbon Fuels from Vegetable Oils via Hydrolysis and Thermo-catalytic Decarboxylation,” FUEL, 95 (2012) 622-629.

越南研討會

越南研討會

泰國研討會

泰國研討會

越南研討會合影

越南研討會合影

2018畢業生與教授合影

2018畢業生與教授合影

TCD 檢測

TCD 檢測

GC-MS  FID 檢測

GC-MS FID 檢測

利用氣相層析儀進行油品檢測

ISO 認證

ISO 認證

SGS 油品認證

SGS 油品認證

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