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Improvement on the design and fabrication of planar SOFCs with anode-supported cells based on modified button cells

机译:基于改进的纽扣电池的带有阳极支撑电池的平面SOFC的设计和制造方面的改进

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In this study, a planar solid oxide fuel cells (SOFCs) apparatus with a 6 cm x 6 cm anode supported single cell based on a modified button cell was designed for operation in both regular cell and button cell configurations. The apparatus was assembled with a regular cell with an active area of 5 cm x 5 cm and with a button cell with an active area of 2.54 cm(2). They consist of fuel and oxidant chambers that allow heat conversion and thus increase the temperatures of the fuel inlet and oxidant inlet streams. The chambers reduced the cooling effect, thereby improved the cell performance. In addition, a wire-in-tube-type heat exchanger was designed and fabricated. This device was installed in front of the fuel inlet of the SOFC apparatus to improve heat transfer to better increase the temperature of the fuel inlet stream. Results indicate that the fuel outlet temperature of the system with heat exchanger is much higher than that of the system without heat exchanger. Thus, the performance of system with heat exchanger is largely improved. This improvement means that the wire-in-tube-type heat exchanger is proved to be effectively increases the hydrogen inlet temperature by enhancing heat transfer. (C) 2017 Elsevier Ltd. All rights reserved.
机译:在这项研究中,设计了一种平面固体氧化物燃料电池(SOFC)设备,该设备具有基于改良型纽扣电池的6 cm x 6 cm阳极支撑的单电池,可用于常规电池和纽扣电池配置。该设备装配有一个有效面积为5 cm x 5 cm的常规单元和一个活动面积为2.54 cm(2)的纽扣单元。它们由允许热转换并因此增加燃料入口和氧化剂入口流的温度的燃料和氧化剂室组成。腔室降低了冷却效果,从而提高了电池性能。另外,设计制造了线内管式热交换器。该设备安装在SOFC设备的燃料入口前面,以改善热传递,从而更好地提高燃料入口流的温度。结果表明,带热交换器的系统的燃料出口温度比不带热交换器的系统的燃料出口温度高得多。因此,带有热交换器的系统的性能大大提高了。这种改进意味着线内管式热交换器被证明可以通过增强热传递来有效地提高氢气的入口温度。 (C)2017 Elsevier Ltd.保留所有权利。

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