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    • 1. 发明授权
    • Fuel cell system and its control method
    • 燃料电池系统及其控制方法
    • US08815463B2
    • 2014-08-26
    • US12374520
    • 2007-07-06
    • Koji KatanoNorio YamagishiAkihisa Hotta
    • Koji KatanoNorio YamagishiAkihisa Hotta
    • H01M8/02H01M8/04H01M8/24
    • H01M8/04007H01M8/04104H01M8/04223H01M8/04225H01M8/04302H01M8/04328H01M8/04335H01M8/04343H01M8/0435H01M8/04365H01M8/04753H01M8/04783H01M8/04955H01M8/2435Y02E60/50
    • Deterioration of an electrolyte and a sealing member is suppressed taking account of the durable temperature characteristics thereof, while enhancing the starting performance of a fuel cell. For this realization, in a system comprising a gas piping system for supplying a reactant gas to a fuel cell, and a gas supply controller for altering the supply state of the reactant gas in response to a power generation request, a gas supply quantity is altered in accordance with the temperature of the fuel cell. Preferably, the gas supply quantity is altered in accordance with the durable temperature characteristics of a passage member forming a gas passage of the reactant gas. Furthermore, the differential pressure of the gas supply state between the anode side and the cathode side of the fuel cell is preferably taken into account and the differential pressure between both poles is suppressed by altering the gas supply quantity on the cathode side as the case may be.
    • 在提高燃料电池的起动性能的同时,考虑到其耐用的温度特性来抑制电解质和密封构件的劣化。 为了实现这一目的,在包括用于向燃料电池供应反应气体的气体管道系统和用于响应发电请求改变反应气体的供给状态的气体供给控制器的系统中,气体供给量被改变 根据燃料电池的温度。 优选地,气体供给量根据形成反应气体的气体通道的通道构件的耐用温度特性而改变。 此外,优选考虑燃料电池的阳极侧和阴极侧之间的气体供给状态的压差,并且通过改变阴极侧的气体供给量来抑制两极之间的压差,视情况而定 是。
    • 3. 发明申请
    • FUEL CELL SYSTEM AND ITS CONTROL METHOD
    • 燃料电池系统及其控制方法
    • US20090269630A1
    • 2009-10-29
    • US12374520
    • 2007-07-06
    • Koji KatanoNorio YamagishiAkihisa Hotta
    • Koji KatanoNorio YamagishiAkihisa Hotta
    • H01M8/04
    • H01M8/04007H01M8/04104H01M8/04223H01M8/04225H01M8/04302H01M8/04328H01M8/04335H01M8/04343H01M8/0435H01M8/04365H01M8/04753H01M8/04783H01M8/04955H01M8/2435Y02E60/50
    • Deterioration of an electrolyte and a sealing member is suppressed taking account of the durable temperature characteristics thereof, while enhancing the starting performance of a fuel cell. For this realization, in a system comprising a gas piping system for supplying a reactant gas to a fuel cell, and a gas supply controller for altering the supply state of the reactant gas in response to a power generation request, a gas supply quantity is altered in accordance with the temperature of the fuel cell. Preferably, the gas supply quantity is altered in accordance with the durable temperature characteristics of a passage member forming a gas passage of the reactant gas. Furthermore, the differential pressure of the gas supply state between the anode side and the cathode side of the fuel cell is preferably taken into account and the differential pressure between both poles is suppressed by altering the gas supply quantity on the cathode side as the case may be.
    • 在提高燃料电池的起动性能的同时,考虑到其耐用的温度特性来抑制电解质和密封构件的劣化。 为了实现这一目的,在包括用于向燃料电池供应反应气体的气体管道系统和用于响应发电请求改变反应气体的供给状态的气体供给控制器的系统中,气体供给量被改变 根据燃料电池的温度。 优选地,气体供给量根据形成反应气体的气体通道的通道构件的耐用温度特性而改变。 此外,优选考虑燃料电池的阳极侧和阴极侧之间的气体供给状态的压差,并且通过改变阴极侧的气体供给量来抑制两极之间的压差,视情况而定 是。
    • 4. 发明授权
    • Fuel cell system and its operation stop method
    • 燃料电池系统及其运行停止方法
    • US08178247B2
    • 2012-05-15
    • US12084574
    • 2006-12-21
    • Koji KatanoNorio YamagishiAkihisa Hotta
    • Koji KatanoNorio YamagishiAkihisa Hotta
    • H01M8/00
    • F16K31/0655F02D33/006H01M8/04201
    • The present invention provides a fuel cell system including a fuel cell, a hydrogen gas pipe system for supplying a fuel gas to the fuel cell, and an injector for adjusting a pressure of the upstream side of the hydrogen gas pipe system to supply the hydrogen gas to the downstream side, wherein the injector includes an internal channel for communicating the upstream side of the injector with the downstream side of the injector, and a valve body movably arranged in the internal channel for switching a channel opening area in multiple stages corresponding to a movement position of the valve body, and wherein water at least around the valve body of the injector is reduced when the system stops.
    • 本发明提供一种燃料电池系统,包括燃料电池,用于向燃料电池供应燃料气体的氢气管系统和用于调节氢气管道系统的上游侧的压力以提供氢气的喷射器 其特征在于,所述喷射器包括用于将所述喷射器的上游侧与所述喷射器的下游侧连通的内部通道,以及可移动地布置在所述内部通道中的阀体,用于切换多个级中的通道开口区域 阀体的运动位置,并且其中当系统停止时,至少在喷射器的阀体周围的水减少。
    • 6. 发明授权
    • Fuel cell system
    • 燃料电池系统
    • US08088531B2
    • 2012-01-03
    • US12279638
    • 2007-07-06
    • Koji KatanoNorio YamagishiNobutaka TeshimaAkihisa Hotta
    • Koji KatanoNorio YamagishiNobutaka TeshimaAkihisa Hotta
    • H01M8/04
    • H01M8/04089H01M8/04425H01M8/04776
    • The present application provides a technique prevents a regulator arranged on a gas supplying path that supplies gas to a fuel cell installed in a fuel cell system from functioning erroneously, by controlling the pressure increase within the upper stream side of the regulator. The fuel cell system includes a fuel cell, an oxide gas supplying path to supply oxide gas to the fuel cell, a fuel gas supplying path to supply fuel gas to the fuel cell, a secondary regulator arranged on the fuel supplying path, a bypass path communicating the upper stream side path of the secondary regulator with the lower stream side path of the secondary regulator, and a pressure controlling valve that is closed in a case where the pressure difference between the upper stream side path and the lower stream side path is less than a predetermined amount, and opened in a case where the pressure difference between the upper stream side path and the lower stream side path exceeds the predetermined amount.
    • 本申请提供了一种技术,其通过控制调节器的上游侧内的压力增加来防止布置在气体供给路径上的调节器,该气体供给路径向安装在燃料电池系统中的燃料电池供应气体,从而不正常地起作用。 燃料电池系统包括燃料电池,向燃料电池供应氧化物气体的氧化物气体供给路径,向燃料电池供应燃料气体的燃料气体供给路径,设置在燃料供给路径上的二次调节器,旁通路径 将二次调节器的上游侧路径与二级调节器的下游侧路径连通;以及压力控制阀,其在上游侧路径和下游侧路径之间的压力差较小的情况下关闭 超过预定量,并且在上游侧路径和下游侧路径之间的压力差超过预定量的情况下打开。
    • 8. 发明申请
    • FUEL CELL SYSTEM
    • 燃油电池系统
    • US20100233563A1
    • 2010-09-16
    • US12279638
    • 2007-07-06
    • Koji KatanoNorio YamagishiNobutaka TeshimaAkihisa Hotta
    • Koji KatanoNorio YamagishiNobutaka TeshimaAkihisa Hotta
    • H01M8/04
    • H01M8/04089H01M8/04425H01M8/04776
    • The present application provides a technique prevents a regulator arranged on a gas supplying path that supplies gas to a fuel cell installed in a fuel cell system from functioning erroneously, by controlling the pressure increase within the upper stream side of the regulator. The fuel cell system includes a fuel cell, an oxide gas supplying path to supply oxide gas to the fuel cell, a fuel gas supplying path to supply fuel gas to the fuel cell, a secondary regulator arranged on the fuel supplying path, a bypass path communicating the upper stream side path of the secondary regulator with the lower stream side path of the secondary regulator, and a pressure controlling valve that is closed in a case where the pressure difference between the upper stream side path and the lower stream side path is less than a predetermined amount, and opened in a case where the pressure difference between the upper stream side path and the lower stream side path exceeds the predetermined amount.
    • 本申请提供了一种技术,其通过控制调节器的上游侧内的压力增加来防止布置在气体供给路径上的调节器,该气体供给路径向安装在燃料电池系统中的燃料电池供应气体,从而不正常地起作用。 燃料电池系统包括燃料电池,向燃料电池供应氧化物气体的氧化物气体供给路径,向燃料电池供应燃料气体的燃料气体供给路径,设置在燃料供给路径上的二次调节器,旁通路径 将二次调节器的上游侧路径与二级调节器的下游侧路径连通;以及压力控制阀,其在上游侧路径和下游侧路径之间的压力差较小的情况下关闭 超过预定量,并且在上游侧路径和下游侧路径之间的压力差超过预定量的情况下打开。
    • 10. 发明授权
    • Fuel cell system with an injector and having a failure detection device for the injector and a pressure sensor upstream of the injector
    • 具有喷射器并且具有用于喷射器的故障检测装置和在喷射器上游的压力传感器的燃料电池系统
    • US08105730B2
    • 2012-01-31
    • US12438410
    • 2007-07-06
    • Koji KatanoNorio YamagishiAkihisa Hotta
    • Koji KatanoNorio YamagishiAkihisa Hotta
    • H01M8/04
    • H01M8/04089H01M8/04201H01M8/04373H01M8/04388H01M8/04776
    • A fuel cell system having a fuel cell, a fuel supply flow path for allowing a fuel gas supplied from a fuel supply source to flow to the fuel cell, an on-off valve for regulating the state of the gas on the upstream side of the fuel supply flow path to supply it to the downstream side, failure detection means for detecting whether the on-off valve has a closure failure, a pressure sensor for detecting the pressure value of the fuel gas on the upstream side of the on-off valve, and determination condition setting means for setting, based on the pressure value detected by the pressure sensor, the conditions of determination of the closure failure of the on-off valve. The failure detection means determines whether the on-off valve has the closure failure, based on the closure failure determination conditions set by the determination condition setting means.
    • 一种具有燃料电池的燃料电池系统,用于允许从燃料供给源供应的燃料气体流向燃料电池的燃料供给流路,用于调节燃料电池的上游侧的气体的状态的开关阀 用于将其供给到下游侧的燃料供给流动路径,用于检测开闭阀是否具有闭合故障的故障检测装置,用于检测开关阀上游侧的燃料气体的压力值的压力传感器 以及确定条件设定装置,用于根据由压力传感器检测的压力值设定开关阀的关闭故障的判定条件。 故障检测装置基于由确定条件设置装置设置的关闭故障确定条件来确定开关阀是否具有闭合故障。