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Influence Of Stack Arrangement On Performance Of Multiple-stack Solid Oxide Fuel Cells With Non-uniform Potential Operation

机译:堆布置方式对具有非均匀电位运行的多堆固体氧化物燃料电池性能的影响

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摘要

The performance of multiple-stack solid oxide fuel cells (SOFCs) with different stack arrangements is compared with respect to the presence of an in-stack pressure drop. It was demonstrated in our previous work that when a multiple-stack SOFC is arranged in series and the operating voltages are allowed to vary among the different stacks, an improved performance over a conventional SOFC (stacks arranged in parallel and operated under the same operating voltage) can be realized. Nevertheless, the differences in pressure drop and the required power for compression among the different operations were not taken into account. In the study reported here, it is demonstrated that the pressure drop in the stack depends not only on the feed rate and operating voltage, but also on the stack arrangement. The pressure drop in the anode channels is about half that in the cathode channels. The configuration of stacks in series with compressors installed only at the inlets of the first stack is the best option as it shows the highest electrical power generation. The pressure drops in the anode and cathode channels are about 4.7 and 3.75 times those in the corresponding channels of the conventional case with the stacks arranged in parallel. In addition, when considering the net obtained electrical power, it appears that multiple-stack SOFCs with stacks arranged in series are not as attractive as the conventional SOFC because they require much higher compression power. Therefore, it is suggested that a new stack design with a low pressure drop is required for the concept of multiple-stack SOFC with non-uniform potential operation to become practical.
机译:针对堆内压降的存在,比较了具有不同堆结构的多堆固体氧化物燃料电池(SOFC)的性能。在我们以前的工作中已经证明,当将多堆SOFC串联布置并且允许不同堆之间的工作电压发生变化时,与传统SOFC(并联布置并在相同工作电压下工作的堆)相比,性能得到了改善。 )可以实现。但是,未考虑不同操作之间的压降差异和压缩所需的功率。在这里报告的研究中,证明了烟囱中的压降不仅取决于进料速度和工作电压,而且还取决于烟囱的布置。阳极通道中的压降约为阴极通道中的压降的一半。最好仅选择在第一个烟囱入口处安装压缩机的烟囱串联配置,因为它显示出最高的发电量。阳极和阴极通道中的压降约为常规情况下相应情况的4.7倍和3.75倍,而叠层是平行排列的。另外,当考虑净获得的电力时,似乎具有串联布置的堆叠的多堆叠SOFC不如常规SOFC吸引人,因为它们需要高得多的压缩功率。因此,建议使具有不均匀电势操作的多烟囱SOFC的概念需要具有低压降的新烟囱设计成为现实。

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