タイトル | Evaluation of a Passive Heat Exchanger Based Cooling System for Fuel Cell Applications |
本文(外部サイト) | http://hdl.handle.net/2060/20110007103 |
著者(英) | Burke, Kenneth A.; Colozza, Anthony J. |
著者所属(英) | NASA Glenn Research Center |
発行日 | 2011-01-01 |
言語 | eng |
内容記述 | Fuel cell cooling is conventionally performed with an actively controlled, dedicated coolant loop that exchanges heat with a separate external cooling loop. To simplify this system the concept of directly cooling a fuel cell utilizing a coolant loop with a regenerative heat exchanger to preheat the coolant entering the fuel cell with the coolant exiting the fuel cell was analyzed. The preheating is necessary to minimize the temperature difference across the fuel cell stack. This type of coolant system would minimize the controls needed on the coolant loop and provide a mostly passive means of cooling the fuel cell. The results indicate that an operating temperature of near or greater than 70 C is achievable with a heat exchanger effectiveness of around 90 percent. Of the heat exchanger types evaluated with the same type of fluid on the hot and cold side, a counter flow type heat exchanger would be required which has the possibility of achieving the required effectiveness. The number of heat transfer units required by the heat exchanger would be around 9 or greater. Although the analysis indicates the concept is feasible, the heat exchanger design would need to be developed and optimized for a specific fuel cell operation in order to achieve the high effectiveness value required. |
NASA分類 | Energy Production and Conversion |
レポートNO | NASA/TM-2011-216962 E-17567 |
権利 | Copyright, Distribution as joint owner in the copyright |
URI | https://repository.exst.jaxa.jp/dspace/handle/a-is/248576 |