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    • 16. 发明申请
    • Fuel Cell System
    • 燃料电池系统
    • US20070212582A1
    • 2007-09-13
    • US11547562
    • 2005-08-04
    • Hideo OharaMasataka OzekiAkinari NakamuraYoshikazu TanakaShigeki YasudaTakashi Nishikawa
    • Hideo OharaMasataka OzekiAkinari NakamuraYoshikazu TanakaShigeki YasudaTakashi Nishikawa
    • H01M8/04
    • H01M8/04156H01M8/04022H01M8/04223H01M8/04228H01M8/0612H01M8/0662
    • The object of the invention is to provide a fuel cell system capable of performing appropriate, expeditious shutdown operation without use of an auxiliary power source and inert gas (nitrogen gas) in the event of an emergency stop situation such as a power failure. The fuel cell system (100) comprises: a fuel cell (12) configured to generate power by consuming a fuel gas and having an outlet port (104) through which the fuel gas flows out; a moisture removal unit (15) configured to remove moisture contained in the fuel gas that has been sent through the outlet port (104); a burner (16) located downstream of the moisture removal unit (15), for combusting the fuel gas; and a gas pipe on-off valve (18) configured to open and close a pipe (106) that makes the moisture removal unit (15) and the burner (16) communicate with each other, and the fuel cell system (100) is designed such that the gas pipe on-off valve (18) closes when the power generation stops.
    • 发明内容本发明的目的在于提供一种燃料电池系统,其能够在诸如停电之类的紧急停止情况下,不使用辅助电源和惰性气体(氮气)来执行适当的快速关机操作。 燃料电池系统(100)包括:燃料电池(12),其被配置为通过消耗燃料气体并具有燃料气体通过其流出的出口(104)来发电; 除湿单元(15),其被配置为去除通过所述出口(104)发送的燃料气体中包含的水分; 位于除湿单元(15)下游的燃烧器(16),用于燃烧燃料气体; 以及燃气管开闭阀(18),被配置为打开和关闭使除湿单元(15)和燃烧器(16)彼此连通的管道(106),并且燃料电池系统(100)是 被设计为使得当发电停止时,燃气管开关阀(18)关闭。
    • 18. 发明授权
    • Cogeneration system using surplus electrical current
    • 热电联产系统采用剩余电流
    • US08280237B2
    • 2012-10-02
    • US12602133
    • 2008-05-28
    • Yoshikazu TanakaKiyoshi TaguchiHideo Ohara
    • Yoshikazu TanakaKiyoshi TaguchiHideo Ohara
    • F28D7/00A47J31/00F24H1/18
    • F24D19/1051F24D12/02F24D17/0057F24D2200/08F24D2200/19F24H9/2021F24H2240/10Y02B10/70Y02B30/14Y02P80/15
    • A cogeneration system of the present invention includes: a fuel cell (1) configured to generate electricity and heat; a hot water tank (2) configured to store hot water having recovered the heat generated by the fuel cell (1); a heat exchanger (7) configured to transfer the heat generated by the fuel cell (1) to the hot water; a hot water passage (8) that is a first heat medium passage configured such that the heat is transferred to the hot water by the heat exchanger (7) and the hot water flows into the hot water tank (2); a heat medium supplier (9) configured to cause the heat medium to flow through the first heat medium passage (8); a hot water supplying passage (11) through which the hot water stored in the hot water tank (2) is supplied to the heat load; an electric power consuming heater (12) configured to heat the hot water flowing through the hot water supplying passage (11) toward the heat load by consuming surplus electric power of the fuel cell (1) and commercial electric power; and a second heat medium passage (A) configured such that the hot water is heated by the electric power consuming heater (12) and flows into the hot water tank (2).
    • 本发明的热电联产系统包括:燃料电池(1),被配置为产生电和热; 一个热水箱(2),用于储存已经回收了由燃料电池(1)产生的热量的热水; 被配置为将由所述燃料电池(1)产生的热量传递到所述热水的热交换器(7); 热水通道(8),其是通过热交换器(7)将热量传递到热水并且热水流入热水箱(2)的第一热介质通道; 配置为使所述热介质流过所述第一热介质通路(8)的热介质供给体(9)。 热水供给通道(11),将储存在热水箱(2)中的热水供给到热负荷; 电力消耗加热器(12),其被构造成通过消耗燃料电池(1)的剩余电力和商用电力来将流过所述热水供给通道(11)的热水朝向所述热负荷加热; 以及第二热介质通道(A),其被配置为使得热水被电力消耗加热器(12)加热并流入热水箱(2)。
    • 19. 发明申请
    • COGENERATION SYSTEM
    • 加工系统
    • US20100178043A1
    • 2010-07-15
    • US12602133
    • 2008-05-28
    • Yoshikazu TanakaKiyoshi TaguchiHideo Ohara
    • Yoshikazu TanakaKiyoshi TaguchiHideo Ohara
    • F24H1/00
    • F24D19/1051F24D12/02F24D17/0057F24D2200/08F24D2200/19F24H9/2021F24H2240/10Y02B10/70Y02B30/14Y02P80/15
    • A cogeneration system of the present invention includes: a fuel cell (1) configured to generate electricity and heat; a hot water tank (2) configured to store hot water having recovered the heat generated by the fuel cell (1); a heat exchanger (7) configured to transfer the heat generated by the fuel cell (1) to the hot water; a hot water passage (8) that is a first heat medium passage configured such that the heat is transferred to the hot water by the heat exchanger (7) and the hot water flows into the hot water tank (2); a heat medium supplier (9) configured to cause the heat medium to flow through the first heat medium passage (8); a hot water supplying passage (11) through which the hot water stored in the hot water tank (2) is supplied to the heat load; an electric power consuming heater (12) configured to heat the hot water flowing through the hot water supplying passage (11) toward the heat load by consuming surplus electric power of the fuel cell (1) and commercial electric power; and a second heat medium passage (A) configured such that the hot water is heated by the electric power consuming heater (12) and flows into the hot water tank (2).
    • 本发明的热电联产系统包括:燃料电池(1),被配置为产生电和热; 一个热水箱(2),用于储存已经回收了由燃料电池(1)产生的热量的热水; 被配置为将由所述燃料电池(1)产生的热量传递到所述热水的热交换器(7); 热水通道(8),其是通过热交换器(7)将热量传递到热水并且热水流入热水箱(2)的第一热介质通道; 配置为使所述热介质流过所述第一热介质通路(8)的热介质供给体(9)。 热水供给通道(11),将储存在热水箱(2)中的热水供给到热负荷; 电力消耗加热器(12),其通过消耗燃料电池(1)的剩余电力和商用电力来将流过所述热水供给通道(11)的热水朝向所述热负荷加热; 以及第二热介质通道(A),其被配置为使得热水被电力消耗加热器(12)加热并流入热水箱(2)。