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    • 1. 发明申请
    • FUEL CELL SYSTEM
    • 燃油电池系统
    • US20120021315A1
    • 2012-01-26
    • US13258978
    • 2010-03-26
    • Yoshio TamuraKiyoshi TaguchiKoichi KusumuraShigeki Yasuda
    • Yoshio TamuraKiyoshi TaguchiKoichi KusumuraShigeki Yasuda
    • H01M8/06
    • H01M8/0618C01B3/384C01B3/48C01B2203/0233C01B2203/0283C01B2203/066C01B2203/0822C01B2203/0827C01B2203/1217C01B2203/1235H01M8/04022H01M8/04686H01M8/04955Y02P20/128
    • A fuel cell system (100) according to the present invention includes: a hydrogen generator (1) configured to generate a fuel gas through a reforming reaction by using a raw fuel; a fuel cell (7) configured to generate power by using the fuel gas; a combustor (2) configured to heat the hydrogen generator (1); at least one on-off valve (9A, 9B) configured to open/block a gas passage (9) through which the gas that is sent out from the hydrogen generator (1) is supplied to the combustor (2); and a combustion air supply device (4) configured to supply combustion air to the combustor (2); an ignition device (5) provided at the combustor (2), and a controller (30). The combustor (2) is configured to perform combustion during power generation of the fuel cell (7) by using the gas supplied through the gas passage (9). In a case where accidental flame extinction has occurred at the combustor (2) during the power generation of the fuel cell (7), the controller (30) performs an ignition operation of the ignition device (5) with the on-off valve (9A, 9B) kept opened.
    • 根据本发明的燃料电池系统(100)包括:氢发生器(1),其通过使用原燃料通过重整反应产生燃料气体; 配置为通过使用所述燃料气体来发电的燃料电池(7) 构造成加热氢生成器(1)的燃烧器(2); 至少一个开关阀(9A,9B),其构造成打开/阻塞从所述氢发生器(1)输出的气体通过所述气体通道供应到所述燃烧器(2); 和燃烧空气供给装置(4),其构造成向燃烧器(2)供给燃烧空气; 设置在燃烧器(2)的点火装置(5)和控制器(30)。 燃烧器(2)构造成通过使用通过气体通道(9)供给的气体在燃料电池(7)的发电期间进行燃烧。 在燃料电池(7)的发电期间在燃烧器(2)处发生意外的火焰熄灭的情况下,控制器(30)利用开闭阀(3)进行点火装置(5)的点火操作 9A,9B)保持打开。
    • 3. 发明申请
    • FUEL CELL SYSTEM
    • 燃油电池系统
    • US20120021321A1
    • 2012-01-26
    • US13260844
    • 2010-04-01
    • Shigeki YasudaKoichi KusumuraKiyoshi TaguchiYoshio Tamura
    • Shigeki YasudaKoichi KusumuraKiyoshi TaguchiYoshio Tamura
    • H01M8/04
    • H01M8/04007H01M8/04037H01M8/04225H01M8/04253H01M8/04268H01M8/04303H01M8/04492H01M8/04522H01M8/04664H01M8/04716H01M8/04731H01M8/04768H01M8/04776H01M8/04843H01M2008/1095Y02E60/50
    • A fuel cell system (301) of the present invention comprises a fuel cell (1); a water circulating path (9) through which water associated with an operation of the fuel cell (1) circulates; a water circulator (10) for circulating water in the water circulating path (9); a heater (14) for heating the water circulating path (9); a first abnormality detector (29, 30) for detecting a first abnormality which is an abnormality relating to leakage of water from the water circulating path (9); and a controller (16); the fuel cell system being configured to cause the water circulator (10) to perform a water circulating operation for circulating the water in the water circulating path (9) and cause the heater (14) to perform a heating operation for heating the water circulating path (9), to suppress freezing in the water circulating path, wherein the controller (16) is configured to inhibit the water circulating operation for suppressing freezing and not to inhibit the heating operation for suppressing freezing, in a case where the fuel cell system (301) is shut down in response to detection of the first abnormality by the first abnormality detector (29, 30).
    • 本发明的燃料电池系统(301)包括燃料电池(1); 与循环燃料电池(1)的操作相关联的水的水循环路径(9); 用于在水循环路径(9)中循环水的水循环器(10); 用于加热水循环路径(9)的加热器(14); 第一异常检测器(29,30),用于检测与来自水循环路径(9)的水的泄漏有关的异常的第一异常; 和控制器(16); 所述燃料电池系统被配置为使所述水循环器(10)进行水循环操作,以使所述水循环路径(9)中的水循环,并使所述加热器(14)进行用于加热所述水循环路径 (9)中,为了抑制水循环路径中的冻结,其中,在燃料电池系统(1)的情况下,控制器(16)被配置为抑制用于抑制冷冻的水循环操作并且不抑制用于抑制冷冻的加热操作 301)响应于由第一异常检测器(29,30)检测到第一异常而关闭。
    • 4. 发明授权
    • Fuel cell system
    • 燃料电池系统
    • US09252436B2
    • 2016-02-02
    • US13260844
    • 2010-04-01
    • Shigeki YasudaKoichi KusumuraKiyoshi TaguchiYoshio Tamura
    • Shigeki YasudaKoichi KusumuraKiyoshi TaguchiYoshio Tamura
    • H01M8/04H01M8/10
    • H01M8/04007H01M8/04037H01M8/04225H01M8/04253H01M8/04268H01M8/04303H01M8/04492H01M8/04522H01M8/04664H01M8/04716H01M8/04731H01M8/04768H01M8/04776H01M8/04843H01M2008/1095Y02E60/50
    • A fuel cell system (301) of the present invention comprises a fuel cell (1); a water circulating path (9) through which water associated with an operation of the fuel cell (1) circulates; a water circulator (10) for circulating water in the water circulating path (9); a heater (14) for heating the water circulating path (9); a first abnormality detector (29, 30) for detecting a first abnormality which is an abnormality relating to leakage of water from the water circulating path (9); and a controller (16); the fuel cell system being configured to cause the water circulator (10) to perform a water circulating operation for circulating the water in the water circulating path (9) and cause the heater (14) to perform a heating operation for heating the water circulating path (9), to suppress freezing in the water circulating path, wherein the controller (16) is configured to inhibit the water circulating operation for suppressing freezing and not to inhibit the heating operation for suppressing freezing, in a case where the fuel cell system (301) is shut down in response to detection of the first abnormality by the first abnormality detector (29, 30).
    • 本发明的燃料电池系统(301)包括燃料电池(1); 与循环燃料电池(1)的操作相关联的水的水循环路径(9); 用于在水循环路径(9)中循环水的水循环器(10); 用于加热水循环路径(9)的加热器(14); 第一异常检测器(29,30),用于检测与来自水循环路径(9)的水的泄漏有关的异常的第一异常; 和控制器(16); 所述燃料电池系统被配置为使所述水循环器(10)进行水循环操作,以使所述水循环路径(9)中的水循环,并使所述加热器(14)进行用于加热所述水循环路径 (9)中,为了抑制水循环路径中的冻结,其中,在燃料电池系统(1)的情况下,控制器(16)被配置为抑制用于抑制冷冻的水循环操作并且不抑制用于抑制冷冻的加热操作 301)响应于由第一异常检测器(29,30)检测到第一异常而关闭。
    • 6. 发明申请
    • FUEL CELL SYSTEM AND OPERATING METHOD THEREOF
    • 燃料电池系统及其操作方法
    • US20120028144A1
    • 2012-02-02
    • US13262131
    • 2010-03-09
    • Yoshikazu TanakaKiyoshi TaguchiYoshio TamuraShigeki YasudaHiroaki Kaneko
    • Yoshikazu TanakaKiyoshi TaguchiYoshio TamuraShigeki YasudaHiroaki Kaneko
    • H01M8/06
    • H01M8/0606H01M8/04022H01M8/04223H01M8/04225H01M8/04228H01M8/04302H01M8/04303H01M8/04373H01M8/04738H01M8/04776H01M8/04955H01M2250/10Y02B90/14
    • Provided are a fuel cell system capable of shortening the wait time of an observer who confirms set points of a system interconnection protective device before starting a system interconnection operation, and a method for operating the fuel cell system.A fuel cell system 100 includes: a hydrogen generating unit 16 configured to generate a hydrogen-containing gas by using a raw material; a heater 18 configured to heat the hydrogen generating unit; an electric power generation start command unit 32 configured to receive a command of start of an electric power generating operation of the fuel cell system, the command being input by a manual operation of an operator, the electric power generating operation being interconnected with an electric power system; and a controller 28 configured to: execute electric power generation stand-by, in which the fuel cell system stands by for the start of the electric power generating operation interconnected with the electric power system, while executing a temperature maintaining process of the hydrogen generating unit by the heater after completion of a temperature increasing process of the hydrogen generating unit by the heater; and when the electric power generation start command unit receives the command of the start of the electric power generating operation, stop the electric power generation stand-by and start the electric power generating operation interconnected with the electric power system.
    • 提供一种燃料电池系统,其能够缩短在开始系统互连操作之前确认系统互连保护装置的设定点的观察者的等待时间,以及用于操作燃料电池系统的方法。 燃料电池系统100包括:氢生成单元16,被配置为通过使用原料产生含氢气体; 构造成加热氢生成单元的加热器18; 发电开始指令单元32,其被配置为接收燃料电池系统的发电操作的开始指令,所述指令由操作者的手动操作输入,所述发电动作与电力互连 系统; 以及控制器28,其被配置为:在执行所述氢生成单元的温度保持处理的同时,执行所述燃料电池系统等待与所述电力系统相互连接的所述发电动作开始的发电待机 通过加热器完成氢生成单元的升温过程之后的加热器; 并且当发电开始指令单元接收到发电操作开始的指令时,停止发电待机并开始与电力系统相互连接的发电动作。
    • 8. 发明授权
    • Hydrogen generator and fuel cell system including same
    • 氢发生器和燃料电池系统包括相同
    • US08916304B2
    • 2014-12-23
    • US12863736
    • 2009-11-20
    • Yoshio TamuraKiyoshi TaguchiYoshikazu TanakaShigeki Yasuda
    • Yoshio TamuraKiyoshi TaguchiYoshikazu TanakaShigeki Yasuda
    • H01M8/06G05B1/00G05D23/00C01B3/38
    • H01M8/0618C01B3/384C01B2203/0205C01B2203/066C01B2203/0811C01B2203/0822C01B2203/0827C01B2203/0872C01B2203/1609Y02E60/50Y02P20/123Y02P20/124Y02P20/128Y02P20/129
    • A hydrogen generator includes: a reformer (102) configured to generate a hydrogen-containing gas by a reforming reaction using a raw material; a combustor (104) configured to heat the reformer; an air supplying device (106) configured to supply combustion air to the combustor; a first heat exchanger (108) configured to recover heat from a flue gas discharged from the combustor; a first heat medium passage (110) through which a first heat medium flows, the first heat medium receiving the heat recovered from the flue gas in the first heat exchanger; a first pump (112) configured to cause the first heat medium in the first heat medium passage to flow; a heat accumulator (140) configured to store the heat recovered by the first heat medium; and a controller (114) configured to cause the first pump to operate in a cooling step that is a step of cooling down at least the reformer by supplying the air from the air supplying device to the combustor in a state where the combustor is not carrying out combustion during a stop processing
    • 氢发生器包括:重构器(102),其通过使用原料的重整反应产生含氢气体; 构造成加热重整器的燃烧器(104); 空气供给装置(106),其构造成向燃烧器供给燃烧空气; 第一热交换器(108),其构造成从燃烧器排出的废气中回收热量; 第一热介质通道(110),第一热介质流过该第一热介质通道,第一热介质接收在第一热交换器中从烟道气回收的热量; 构造成使所述第一热介质通道中的所述第一热介质流动的第一泵(112) 蓄热器(140),其被配置为存储由所述第一热介质回收的热量; 以及控制器(114),其被配置为使得所述第一泵在所述冷却步骤中操作,所述冷却步骤是通过在所述燃烧器不携带的状态下将来自所述供气装置的空气供给到所述燃烧器的至少冷却所述重整器的步骤 在停止处理期间燃烧