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Influence of convective heat transfer by air flow on local current/temperatures along microtubular solid oxide fuel cells in-situ identified by electrode-segmentation method for Co- and counter-flow configurations
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Ö. AYDIN Et Al. , "Influence of convective heat transfer by air flow on local current/temperatures along microtubular solid oxide fuel cells in-situ identified by electrode-segmentation method for Co- and counter-flow configurations," ECS Conference on Electrochemical Energy Conversion Storage with SOFC-XIV , vol.68, Glasgow, United Kingdom, pp.2141-2150, 2015

AYDIN, Ö. Et Al. 2015. Influence of convective heat transfer by air flow on local current/temperatures along microtubular solid oxide fuel cells in-situ identified by electrode-segmentation method for Co- and counter-flow configurations. ECS Conference on Electrochemical Energy Conversion Storage with SOFC-XIV , (Glasgow, United Kingdom), 2141-2150.

AYDIN, Ö., Nakajima, H., & Kitahara, T., (2015). Influence of convective heat transfer by air flow on local current/temperatures along microtubular solid oxide fuel cells in-situ identified by electrode-segmentation method for Co- and counter-flow configurations . ECS Conference on Electrochemical Energy Conversion Storage with SOFC-XIV (pp.2141-2150). Glasgow, United Kingdom

AYDIN, ÖZGÜR, Hironori Nakajima, And Tatsumi Kitahara. "Influence of convective heat transfer by air flow on local current/temperatures along microtubular solid oxide fuel cells in-situ identified by electrode-segmentation method for Co- and counter-flow configurations," ECS Conference on Electrochemical Energy Conversion Storage with SOFC-XIV, Glasgow, United Kingdom, 2015

AYDIN, ÖZGÜR Et Al. "Influence of convective heat transfer by air flow on local current/temperatures along microtubular solid oxide fuel cells in-situ identified by electrode-segmentation method for Co- and counter-flow configurations." ECS Conference on Electrochemical Energy Conversion Storage with SOFC-XIV , Glasgow, United Kingdom, pp.2141-2150, 2015

AYDIN, Ö. Nakajima, H. And Kitahara, T. (2015) . "Influence of convective heat transfer by air flow on local current/temperatures along microtubular solid oxide fuel cells in-situ identified by electrode-segmentation method for Co- and counter-flow configurations." ECS Conference on Electrochemical Energy Conversion Storage with SOFC-XIV , Glasgow, United Kingdom, pp.2141-2150.

@conferencepaper{conferencepaper, author={ÖZGÜR AYDIN Et Al. }, title={Influence of convective heat transfer by air flow on local current/temperatures along microtubular solid oxide fuel cells in-situ identified by electrode-segmentation method for Co- and counter-flow configurations}, congress name={ECS Conference on Electrochemical Energy Conversion Storage with SOFC-XIV}, city={Glasgow}, country={United Kingdom}, year={2015}, pages={2141-2150} }