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    • 1. 发明申请
    • Fuel Cell Stack with Improved End Cell Performance
    • 燃料电池堆,改善端电池性能
    • US20080299418A1
    • 2008-12-04
    • US11757843
    • 2007-06-04
    • Yeh-Hung LaiPinkhas A. RapaportPo-Ya Abel ChuangWenbin Gu
    • Yeh-Hung LaiPinkhas A. RapaportPo-Ya Abel ChuangWenbin Gu
    • H01M8/00
    • H01M8/04201H01M8/023
    • A fuel cell stack that includes a gas diffusion media for the end cells in the stack that has less of an intrusion into the flow field channels of the end cells that the other cells, so as to increase the flow rate through the flow channels in the end cells relative to the flow rate through the flow channels in the other cells. A different diffusion media can be used in the end cells than the nominal cells, where the end cell diffusion media has less of a channel intrusion as a result of diffusion media characteristics. Also, the same diffusion media could be used in the end cells as the nominal cells, but the end cell diffusion media layers could be thinner than the nominal cell diffusion media layers. Further, a higher amount of pre-compression can be used for the diffusion media in the end cells.
    • 一种燃料电池堆,其包括用于堆叠中的末端电池的气体扩散介质,其具有较少侵入到其他电池的端电池的流场通道,以便增加通过其中的流动通道的流速 相对于通过其他电池中的流动通道的流速来说,终端电池。 在末端电池中可以使用不同的扩散介质,而不是标称电池,其中末端电池扩散介质由于扩散介质特性而具有较少的通道入侵。 此外,相同的扩散介质可以在末端电池中用作标称电池,但是终端电池扩散介质层可以比标称电池扩散介质层更薄。 此外,更高量的预压缩可以用于端电池中的扩散介质。
    • 7. 发明申请
    • METHOD FOR OPTIMIZING DIFFUSION MEDIA WITH SPATIALLY VARYING MASS TRANSPORT RESISTANCE
    • 用于优化具有空间变化的大容量运输电阻的扩散介质的方法
    • US20090024373A1
    • 2009-01-22
    • US11778741
    • 2007-07-17
    • Torsten BerningChristian WieserPo-Ya Abel ChuangThomas A. Trabold
    • Torsten BerningChristian WieserPo-Ya Abel ChuangThomas A. Trabold
    • G06G7/48
    • H01M8/0245H01M8/04305H01M2250/20Y02T90/32
    • A method for optimizing a fuel cell diffusion media having a spatially varying mass transport resistance is provided. The method includes at least two passes where a first-pass D/Deff profile for the fuel cell diffusion media is provided and applied to a computational model of the fuel cell having a baseline variable profile. At least one first-pass variable profile resulting from the application of the first-pass D/Deff profile to the computational mode is calculated and compared to a desired variable range. The first-pass D/Deff profile is refined, if necessary, to provide a second-pass D/Deff profile. A relative performance of the fuel cell with a second-pass variable profile resulting from an application of the second-pass D/Deff profile is determined. The second-pass D/Deff profile is refined, if necessary, until the second-pass variable profile has a desirable performance. An effective D/Deff profile is thereby provided.
    • 提供了一种用于优化具有空间变化的质量传输电阻的燃料电池扩散介质的方法。 该方法包括至少两次通过,其中提供用于燃料电池扩散介质的第一通道D / Deff曲线并将其应用于具有基线可变轮廓的燃料电池的计算模型。 计算从应用第一遍D / Deff轮廓到计算模式的至少一个第一遍可变轮廓,并将其与期望的可变范围进行比较。 如果需要,首选D / Deff配置文件将被改进,以提供二次D / Deff配置文件。 确定由施加二次D / Deff轮廓导致的具有二次可变轮廓的燃料电池的相对性能。 如果需要,二次D / Deff轮廓被精炼,直到第二道次可变轮廓具有期望的性能。 由此提供有效的D / Deff曲线。
    • 8. 发明授权
    • Method for optimizing diffusion media with spatially varying mass transport resistance
    • 用于优化具有空间变化的质量传输阻力的扩散介质的方法
    • US07829230B2
    • 2010-11-09
    • US11778741
    • 2007-07-17
    • Torsten BerningChristian WieserPo-Ya Abel ChuangThomas A. Trabold
    • Torsten BerningChristian WieserPo-Ya Abel ChuangThomas A. Trabold
    • H01M8/00
    • H01M8/0245H01M8/04305H01M2250/20Y02T90/32
    • A method for optimizing a fuel cell diffusion media having a spatially varying mass transport resistance is provided. The method includes at least two passes where a first-pass D/Deff profile for the fuel cell diffusion media is provided and applied to a computational model of the fuel cell having a baseline variable profile. At least one first-pass variable profile resulting from the application of the first-pass D/Deff profile to the computational mode is calculated and compared to a desired variable range. The first-pass D/Deff profile is refined, if necessary, to provide a second-pass D/Deff profile. A relative performance of the fuel cell with a second-pass variable profile resulting from an application of the second-pass D/Deff profile is determined. The second-pass D/Deff profile is refined, if necessary, until the second-pass variable profile has a desirable performance. An effective D/Deff profile is thereby provided.
    • 提供了一种用于优化具有空间变化的质量传输电阻的燃料电池扩散介质的方法。 该方法包括至少两次通过,其中提供用于燃料电池扩散介质的第一通道D / Deff曲线并将其应用于具有基线可变轮廓的燃料电池的计算模型。 计算从应用第一遍D / Deff轮廓到计算模式的至少一个第一遍可变轮廓,并将其与期望的可变范围进行比较。 如果需要,首选D / Deff配置文件将被改进,以提供二次D / Deff配置文件。 确定由施加二次D / Deff轮廓导致的具有二次可变轮廓的燃料电池的相对性能。 如果需要,二次D / Deff轮廓被精炼,直到第二道次可变轮廓具有期望的性能。 由此提供有效的D / Deff曲线。