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    • 21. 发明授权
    • Fuel cell system including an air pressure-driven ejector
    • 燃料电池系统,包括气压驱动喷射器
    • US08722268B2
    • 2014-05-13
    • US12787085
    • 2010-05-25
    • Chihiro WakeKoichiro MiyataJumpei Ogawa
    • Chihiro WakeKoichiro MiyataJumpei Ogawa
    • H01M8/06
    • H01M8/04179H01M8/04097H01M8/04104H01M8/04164H01M8/0432H01M8/04388H01M8/04552H01M8/04753
    • A fuel cell system comprises a fuel cell stack, a cell voltage monitor, a hydrogen tank, a hydrogen supply channel, an ejector, a hydrogen off-gas channel, a purge valve, a compressor, an air supply channel, a pressure control unit for controlling air pressure, a pilot pressure input channel branching off from the air supply channel and inputting the air pressure to the ejector as pilot pressure, and a control unit for controlling the purge valve and the pressure control unit. The ejector includes a pressure control mechanism which increases the ejector's secondary-side pressure by increasing the area of the nozzle's ejecting hole when the pilot pressure input from the pilot pressure input channel rises. When electricity generation status of the fuel cell stack is judged to be poor, the control unit opens the purge valve after raising the air pressure and the pilot pressure by using the pressure control unit.
    • 燃料电池系统包括燃料电池堆,电池电压监视器,氢罐,氢供应通道,喷射器,氢气废气通道,净化阀,压缩机,供气通道,压力控制单元 用于控制空气压力,从所述供气通道分支的先导压力输入通道,并将空气压力输入到所述喷射器作为先导压力;以及控制单元,用于控制所述清洗阀和所述压力控制单元。 喷射器包括压力控制机构,当从先导压力输入通道输入的先导压力上升时,通过增加喷嘴喷射孔的面积来增加喷射器的次级侧压力。 当燃料电池堆的发电状态被判定为差时,控制单元通过使用压力控制单元在升高空气压力和先导压力之后打开净化阀。
    • 23. 发明授权
    • Fuel-cell system and method for scavenging fuel cell
    • 燃料电池系统及清除燃料电池的方法
    • US08007945B2
    • 2011-08-30
    • US11498373
    • 2006-08-03
    • Koichiro MiyataChihiro WakeJumpei Ogawa
    • Koichiro MiyataChihiro WakeJumpei Ogawa
    • H01M8/04
    • H01M8/04104H01M8/04179H01M8/04388H01M8/04395H01M8/04402H01M8/04753H01M8/04761H01M2008/1095
    • A fuel-cell system 1 includes: a fuel cell 13 configured to generate electricity through reaction between hydrogen gas and air; a compressor 12 configured to supply air as a scavenging gas to a reactant gas path 13a of the fuel cell 13; a control part 18 configured to control an amount of air supplied from the compressor 12 to the fuel cell 13 to perform scavenging of the fuel cell 13; and pressure sensors P1 and P2 configured to monitor a pressure drop in the reactant gas path 13a of the fuel cell 13. The control part 18 controls an amount of supplied air so as to keep the pressure drop in the reactant gas path 13a substantially constant when the fuel cell 13 is scavenged. With this configuration, residual water can be suitably purged from the fuel cell while energy consumption is suppressed.
    • 燃料电池系统1包括:燃料电池13,被配置为通过氢气和空气之间的反应发电; 构造成将空气作为清扫气体供给到燃料电池13的反应气体通道13a的压缩机12; 控制部18,被配置为控制从压缩机12向燃料电池13供给的空气量,以进行燃料电池13的清扫; 以及被配置为监测燃料电池13的反应气体通道13a中的压力降的压力传感器P1和P2。控制部分18控制供给的空气量,以便在反应气体通路13a中保持压降基本上恒定,当 燃料电池13被清扫。 利用这种结构,可以在能量消耗被抑制的同时从燃料电池适当地清除残留的水。
    • 26. 发明授权
    • Fuel cell system and fuel cell control method
    • 燃料电池系统和燃料电池控制方法
    • US07829232B2
    • 2010-11-09
    • US11700885
    • 2007-02-01
    • Chihiro WakeKoichiro Miyata
    • Chihiro WakeKoichiro Miyata
    • H01M8/04
    • H01M8/04589H01M8/04313H01M8/04343H01M8/04529H01M8/04753H01M8/04761H01M8/0485H01M8/0491
    • A fuel cell system allows suppression of the deterioration of a fuel cell even if a part of a membrane configuring the fuel cell is unavailable for power production. The fuel cell is configured with a membrane, and an anode and a cathode provided so as to sandwich the membrane, and produces electric power from reaction of reactive gases via the membrane when the reactive gases are supplied to the anode and the cathode. The fuel cell system is configured with the fuel cell, an MEA power production effective area calculating means for calculating an area of the membrane surface available for power production, an upper limit power producing current calculating means for controlling the total power production of the fuel cell based on the power production effective area calculated by the MEA power production effective area calculating means, and a current controller.
    • 即使构成燃料电池的膜的一部分不能用于发电,燃料电池系统也能够抑制燃料电池的劣化。 燃料电池配置有膜,阳极和阴极设置成夹住膜,并且当反应气体被供应到阳极和阴极时,通过反应气体经由膜的反应产生电力。 燃料电池系统由燃料电池构成,MEA发电生产有效面积计算装置,用于计算可用于发电的膜面积的面积;上限功率产生电流计算装置,用于控制燃料电池的总发电量 基于由MEA功率生产有效面积计算装置计算的功率生产有效面积和电流控制器。
    • 28. 发明申请
    • FUEL CELL SYSTEM AND METHOD FOR OPERATING THE SAME
    • 燃料电池系统及其操作方法
    • US20090035614A1
    • 2009-02-05
    • US12184360
    • 2008-08-01
    • Chihiro WakeKoichiro Miyata
    • Chihiro WakeKoichiro Miyata
    • H01M8/04H01M8/02
    • H01M8/04179H01M8/04231H01M8/04253H01M8/04462H01M8/04753
    • A fuel cell system including: a fuel cell including a fuel gas channel and an oxidant gas channel, which is configured to generate electricity using a fuel gas and an oxidant gas; a diluting unit configured to dilute gas discharged from the fuel gas channel by mixing the discharged gas with a dilution gas which is supplied from an oxidant gas supply unit and passed through and discharged from the fuel cell, and to exhaust the diluted gas to outside; a purge valve configured to purge gas in the fuel gas channel to the diluting unit; a scavenging unit configured to scavenge the fuel gas channel and the oxidant gas channel; and a dilution assist unit configured to supply a dilution assist gas to the diluting unit through an assist passage connected to the diluting unit to assist dilution in the diluting unit, during scavenging by the scavenging unit.
    • 一种燃料电池系统,包括:燃料电池,其包括燃料气体通道和氧化剂气体通道,其被配置为使用燃料气体和氧化剂气体发电; 稀释单元,被配置为通过将排出的气体与从氧化剂气体供应单元供给并从燃料电池供给并排出的稀释气体混合,稀释从燃料气体通道排出的气体,并将稀释气体排出到外部; 净化阀,其构造成将所述燃料气体通道中的气体吹扫到所述稀释单元; 清除单元,构造成清除燃料气体通道和氧化剂气体通道; 以及稀释辅助单元,其构造成通过与所述稀释单元连接的辅助通道向所述稀释单元供给稀释辅助气体,以在所述清除单元清扫期间辅助稀释单元中的稀释。