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Featured researches published by Yu Chen.


Journal of Fuel Cell Science and Technology | 2011

A New Complex Design for Air-Breathing Polymer Electrolyte Membrane Fuel Cells Aided by Rapid Prototyping

Chen Yu Chen; Yun Che Wen; Wei Hsiang Lai; Ming Chang Chou; Biing Jyh Weng; Ching Yuan Hsieh; Chien Chih Kung

One of the most difficult issues to fabricate a fuel cell with a complex design is the manufacturing method. To solve this difficulty, the authors applied an innovative method of fuel cell fabrication, i.e., rapid prototyping technology. The rapid prototyping technology can both fabricate the complex design and shorten the fabrication time. In this paper, the authors used a 3D software (CATIA) on the fuel cell design and utilized the rapid prototyping to accelerate the prototype development of complex stack designs and to verify the practicability of the new fabrication for fuel cells. The honeycomb shape methanol reservoir and cathode structure design of a direct methanol fuel cell (DMFC) and the complex flow distributor design of a monopolar air-breathing proton exchange membrane fuel cell (PEMFC) stack, which were almost impossibly manufactured by traditional manufacturing, were made in this study. The performance of the traditional air-pumping DMFC and that of an air-breathing DMFC were compared in this study. The feasibility of a complex pseudobipolar design DMFC stack was also verified. For the miniature air-breathing PEMFC made by rapid prototyping with ABS material, its performance is close to the state-of-the-art compared to previous published literatures (Hsieh et al. 2006, Study of Operational Parameters on the Performance of Micro PEMFCs With Different Flow Fields, Energy Convers. Manage., 47, pp. 1868― 1878 ; Schmitz, A., Wagner, S., Hahn, R., Uzun, H., and Hebling, C., 2004, Stability of Planar PEMFC in Printed Circuit Board Technology, J. Power Sources, 127, pp. 197―205; Hottinen, T., Mikkola, M., and Lund, P., 2004, Evaluation of Planar Free-Breathing Polymer Electrolyte Membrane Fuel Cell Design, J. Power Sources, 129, pp. 68―72). A new solution to manufacture complex fuel cell design, rapid prototyping, has been first applied to the fabrication of complicated flow channels in ABS materials and directly used in both DMFC and PEMFC in this paper. Its feasibility was verified and its promising performance was also proved.


Journal of Power Sources | 2010

Effects of temperature and humidity on the cell performance and resistance of a phosphoric acid doped polybenzimidazole fuel cell

Chen Yu Chen; Wei Hsiang Lai


Journal of Power Sources | 2008

Planar array stack design aided by rapid prototyping in development of air-breathing PEMFC

Chen Yu Chen; Wei Hsiang Lai; Biing Jyh Weng; Huey Jan Chuang; Ching Yuan Hsieh; Chien Chih Kung


Journal of Power Sources | 2013

Effects of nitrogen and carbon monoxide concentrations on performance of proton exchange membrane fuel cells with Pt-Ru anodic catalyst

Chen Yu Chen; Wei Hsiang Lai; Wei-Mon Yan; Chun Chi Chen; Sui Wei Hsu


International Journal of Hydrogen Energy | 2014

Characteristic studies of a PBI/H3PO4 high temperature membrane PEMFC under simulated reformate gases

Chen Yu Chen; Wei Hsiang Lai; Yi Kuang Chen; Siou Sheng Su


Energy Procedia | 2012

Experimental study on the performance of oxidative dry reforming from simulated biogas

Ming Pin Lai; Wei Hsiang Lai; Rong Fang Horng; Chen Yu Chen; Wei Cheng Chiu; Siou Sheng Su; You Ming Chang


International Journal of Hydrogen Energy | 2016

Development and performance diagnosis of a high power air-cooled PEMFC stack

Chen Yu Chen; Keng-Pin Huang; Wei-Mon Yan; Ming-Ping Lai; Chen-Cheng Yang


International Journal of Heat and Mass Transfer | 2017

Heat and mass transfer of a planar membrane humidifier for proton exchange membrane fuel cell

Chen Yu Chen; Wei-Mon Yan; Chi-Nan Lai; Jian-Hao Su


International Journal of Hydrogen Energy | 2017

Performance and transient behavior of the kW-grade PEMFC stack with the PtRu catalyst under CO-contained diluted hydrogen

Chen Yu Chen; Keng-Pin Huang


International Journal of Hydrogen Energy | 2014

The infrared thermograph observation of a porous medium assisted catalyst packed-bed under excess enthalpy reforming

Ming Pin Lai; Rong Fang Horng; Chen Yu Chen; Wei Hsiang Lai

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Wei Hsiang Lai

National Cheng Kung University

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Ming Pin Lai

National Cheng Kung University

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Wei-Mon Yan

National University of Tainan

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Chun Chi Chen

National Cheng Kung University

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Siou Sheng Su

National Cheng Kung University

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Keng Pin Huang

National Cheng Kung University

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Keng-Pin Huang

National Cheng Kung University

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Chen Cheng Yang

National Cheng Kung University

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