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    • 53. 发明申请
    • FUEL CELL SYSTEM AND METHOD OF CONTROLLING FUEL CELL SYSTEM
    • 燃料电池系统和控制燃料电池系统的方法
    • US20130309589A1
    • 2013-11-21
    • US13887899
    • 2013-05-06
    • PANASONIC CORPORATION
    • Hitoshi OISHIMotomichi KATOUIchiro NASU
    • H01M8/04
    • H01M8/04298F24D12/02F24D2200/18F24D2200/19F24H2240/10H01M8/0432H01M8/04664H01M8/04701H01M2250/405Y02B10/70Y02B30/14Y02B90/16Y02P90/40
    • A fuel cell system according to the present invention includes: a power generation unit; a hot water storage unit; a display; and a controller. A control device of the display is configured such that when an alarm signal is inputted from the controller, the control device causes a display device to display both thermal information and alarm information, the thermal information containing at least one of a set temperature of hot water supply from the hot water storage unit, a remaining hot water amount in the hot water storage unit, and an operation state of a heating device configured to heat hot water in the hot water storage unit, the alarm information indicating a content associated with the alarm signal. Thereafter, when an operating device is operated, the control device causes the display device to display both the alarm information and detailed alarm information which indicates a more detailed content than the alarm information.
    • 根据本发明的燃料电池系统包括:发电单元; 热水储存单元; 一个显示器 和控制器。 显示器的控制装置被构造成使得当从控制器输入报警信号时,控制装置使显示装置显示热信息和报警信息,热信息包含热水设定温度中的至少一个 从热水存储单元供应热水存储单元中的剩余热水量以及被配置为加热热水存储单元中的热水的加热装置的操作状态,指示与报警相关联的内容的报警信息 信号。 此后,当操作装置被操作时,控制装置使显示装置显示报警信息和指示比报警信息更详细内容的详细报警信息。
    • 58. 发明授权
    • Fuel cell system
    • 燃料电池系统
    • US08158293B2
    • 2012-04-17
    • US13103723
    • 2011-05-09
    • Yoshiaki NaganumaHiromi TanakaOsamu YumitaMasashi FujiNobukazu Mizuno
    • Yoshiaki NaganumaHiromi TanakaOsamu YumitaMasashi FujiNobukazu Mizuno
    • H01M8/04
    • B60L11/1898B60L11/1868B60L11/1887B60L11/1892B60L11/1894B60L2200/32B60L2210/10B60L2240/34H01M8/04007H01M8/04223H01M8/04225H01M8/04619H01M8/04701H01M8/04746H01M16/00H01M16/006H01M2250/20Y02T10/7066Y02T10/7216Y02T90/32Y02T90/34
    • A fuel cell system includes a fuel cell, a secondary battery, an oxidizing gas supplier, a gas supply flow regulator, an oxidizing gas supply path, a cathode off-gas exhaust path, a bypass flow path, a flow regulator, an available power output acquirer, and an operation controller, wherein the gas supply flow regulator regulates the gas supply flow rate to cause the oxidizing gas supplier to supply an excess gas flow rate, which is set to be greater than a target fuel gas-requiring gas flow rate, wherein the target fuel gas-requiring gas flow rate is the fuel cell-requiring gas flow rate to be supplied to the fuel cell in order to achieve the target current value, when the available power output is less than a minimum amount of electric power required for the oxidizing gas supplier to increase the gas supply flow rate from 0 to a preset gas flow rate within a preset time period, and the operation controller controls the flow regulator to make the bypass flow rate equal to a difference gas flow rate between the excess gas flow rate and the target fuel cell-requiring gas flow rate.
    • 燃料电池系统包括燃料电池,二次电池,氧化气体供应器,气体供应流量调节器,氧化气体供应路径,阴极废气排放路径,旁路流路,流量调节器,可用功率 输出采集器和操作控制器,其中气体供应流量调节器调节气体供应流量,以使氧化气体供应商提供过量的气体流量,其设定为大于目标燃料气体需求气体流量 其特征在于,所述目标燃料气体需要气体流量是当所述可用功率输出小于最小电力量时,向所述燃料电池供给燃料电池需要气体流量,以达到所述目标电流值 氧化气体供给器在预设时间段内将气体供给流量从0增加到预设气体流量所需的量,并且操作控制器控制流量调节器以使旁路流量等于差 过量气体流量与目标燃料电池需要气体流量之间的气体流量。
    • 59. 发明申请
    • SOLID OXIDE FUEL CELL
    • 固体氧化物燃料电池
    • US20120015271A1
    • 2012-01-19
    • US13262135
    • 2010-03-31
    • Tsukasa ShigezumiToshiharu OoeKatsuhisa TsuchiyaKiyotaka NakanoYoshiyuki Kawamura
    • Tsukasa ShigezumiToshiharu OoeKatsuhisa TsuchiyaKiyotaka NakanoYoshiyuki Kawamura
    • H01M8/04H01M8/24
    • H01M8/04619H01M8/04701H01M8/04753H01M2008/1293Y02E60/50Y02E60/525
    • To provide a solid oxide fuel cell capable of extending the time period over which a minimum rated output power can be maintained while restraining the advance of fuel cell module degradation.The present invention is a solid oxide fuel cell (1), having a fuel cell module (2), a fuel supply device (38), an oxidant gas supply device (45), and a controller (110); wherein the controller is furnished with a degradation determining circuit for determining degradation (110a) and a fuel correction circuit for correcting operating condition (110b); in which the fuel correction circuit executes a correction to reduce rated output power so that the fuel supply amount is reduced when a determination is made that the fuel cell module has degraded, and when degradation of the fuel cell module advances and predetermined correction switching condition is satisfied, the fuel correction circuit corrects the fuel supply amount supplied to the fuel cell module so as to maintain the reduced rated output power.
    • 提供一种固体氧化物燃料电池,其能够延长能够保持最小额定输出功率的时间段,同时抑制燃料电池模块劣化的进行。 本发明是一种具有燃料电池模块(2),燃料供应装置(38),氧化剂气体供应装置(45)和控制器(110)的固体氧化物燃料电池(1) 其中所述控制器配备有用于确定劣化的劣化确定电路(110a)和用于校正操作条件(110b)的燃料校正电路; 其中燃料校正电路执行校正以降低额定输出功率,使得当确定燃料电池模块已经劣化时,并且当燃料电池模块的劣化前进并且预定的校正切换条件为 燃料校正电路校正供给燃料电池模块的燃料供给量,以保持额定输出功率的降低。
    • 60. 发明申请
    • FUEL FLEXIBILITY CONFIGURATION IN HIGH TEMPERATURE FUEL CELL SYSTEMS
    • 燃油灵敏度配置在高温燃料电池系统
    • US20110305962A1
    • 2011-12-15
    • US13219310
    • 2011-08-26
    • Tero HOTTINENKim ÅströmTimo Kivisaari
    • Tero HOTTINENKim ÅströmTimo Kivisaari
    • H01M8/06
    • H01M8/04447H01M8/04097H01M8/04701H01M8/04753H01M8/04776H01M8/04925H01M8/0612Y02P70/56
    • A method is disclosed for producing electricity in high temperature fuel cell systems. Gas is circulated at anode sides of the fuel cells. A gas composition at anode sides is determined for providing composition information, and desired temperature conditions are arranged for producing electricity with fuel cells. Rated power of the fuel cell system is controlled by an auxiliary water feed to the fuel cell system by utilizing the composition information, by performing controlled gas recirculation at anode sides by utilizing the composition information by changing the gas recirculation, when a desire arises, and by performing controlled gas feed in to the fuel cell system by utilizing the composition information by changing the gas feed, when a need arises, to change the rated power of the fuel cell system to keep electricity production conditions substantially optimal for the gas used as fuel in the high temperature fuel cell system.
    • 公开了一种用于在高温燃料电池系统中产生电力的方法。 气体在燃料电池的阳极侧循环。 确定阳极侧的气体组成以提供组合物信息,并且设置期望的温度条件以用燃料电池产生电力。 燃料电池系统的额定功率通过利用组合物信息的辅助供水来控制,通过在需要时通过改变气体再循环利用组合物信息在阳极侧执行受控气体再循环,以及 通过利用改变气体供给的组合物信息来控制气体进料到燃料电池系统中,当需要时,改变燃料电池系统的额定功率以保持电力生产条件对于用作燃料的气体基本上是最佳的 在高温燃料电池系统中。