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    • 2. 发明申请
    • POWER GENERATION SYSTEM
    • 发电系统
    • US20120237840A1
    • 2012-09-20
    • US13513046
    • 2010-11-30
    • Junji MoritaKoichi KusumuraAkinari NakamuraTakayuki Urata
    • Junji MoritaKoichi KusumuraAkinari NakamuraTakayuki Urata
    • H01M8/04H01M8/06
    • H01M8/04753H01M8/04231H01M8/04664H01M8/0618H01M8/0662
    • Included are: a power generation unit configured to generate electric power by consuming a raw material gas that has passed through a gas meter, the gas meter being configured to, if a state where continuously stopping a flow of the raw material gas for a reset period or longer is not performed has continued for a first upper limit period or longer, exert at least one of a function of outputting an abnormality indication signal and a function of blocking the flow of the raw material gas; a raw material gas supply device configured to supply the raw material gas to the power generation unit; and a controller. The controller is configured to: perform a raw material gas supply operation of supplying the raw material gas from the raw material gas supply device to the power generation unit in a case of performing normal stopping of a power generation operation; and stop the power generation operation, and stop the raw material gas supply operation until at least the reset period elapses, in a case where gas supply abnormality in which said state continues for a second upper limit period or longer has occurred, the second upper limit period being shorter than the first upper limit period.
    • 包括:发电单元,其被配置为通过消耗已经通过燃气表的原料气体发电,如果在原料气体连续停止复位期间的状态下, 不再进行第一上限期间或更长时间,施加输出异常指示信号的功能和阻止原料气体流动的功能中的至少一个; 原料气体供给装置,其将原料气体供给到发电单元; 和控制器。 所述控制器构成为:在进行发电运转的正常停止的情况下,进行从所述原料气体供给装置向所述发电单元供给原料气体的原料气体供给动作; 停止发电运转,停止原料气体供给运转,至少经过了复位期间,在发生了上述状态持续第二上限期间的供气异常的情况下,第二上限 周期比第一上限周期短。
    • 3. 发明申请
    • FUEL CELL SYSTEM AND OPERATION METHOD THEREFOR
    • 燃油电池系统及其运行方法
    • US20120115052A1
    • 2012-05-10
    • US13380453
    • 2011-03-03
    • Hirofumi KokubuKoichi KusumuraAkinari NakamuraTakayuki Urata
    • Hirofumi KokubuKoichi KusumuraAkinari NakamuraTakayuki Urata
    • H01M8/04H01M8/02
    • H01M8/04358H01M8/04029H01M8/04044H01M8/04067H01M8/04156H01M8/04723H01M8/04768
    • A fuel cell system of the present invention is a fuel cell system including a fuel cell (101) and includes a medium circulation passage (71), a heat medium tank (102), a first circulator (105), a recovered water tank (104), a water circulation passage (72), a second circulator (108), a water purifier (109), a temperature detector (111), and a controller (110). The heat medium circulation passage (71) and the water circulation passage (72) are configured so as to realize heat exchange between a heat medium and water. The controller (110) executes a circulation operation in which when the temperature detector (111) detects a temperature lower than a first temperature capable of sterilizing microorganisms, the second circulator (108) is caused to operate such that the temperature detected by the temperature detector (111) becomes the first temperature or higher. The controller (110) forbids the operation of the second circulator (108) when the temperature detector (111) detects a temperature equal to or higher than a second temperature that is lower than a temperature at which heat deterioration of the water purifier (109) occurs.
    • 本发明的燃料电池系统是包括燃料电池(101)的燃料电池系统,包括介质循环通道(71),热介质箱(102),第一循环器(105),回收水箱 104),水循环通道(72),第二循环器(108),净水器(109),温度检测器(111)和控制器(110)。 热介质循环通道(71)和水循环通道(72)构成为实现热介质与水的热交换。 控制器(110)执行循环操作,其中当温度检测器(111)检测到低于能够对微生物灭菌的第一温度的温度时,使第二循环器(108)操作,使得由温度检测器检测到的温度 (111)成为第一温度以上。 当温度检测器(111)检测到等于或高于低于净水器(109)的热劣化的温度的第二温度时,控制器(110)禁止第二循环器(108)的操作, 发生。
    • 4. 发明申请
    • FUEL CELL SYSTEM AND OPERATION METHOD THEREFOR
    • 燃油电池系统及其运行方法
    • US20120077097A1
    • 2012-03-29
    • US13376538
    • 2011-01-26
    • Hirofumi KokubuKoichi KusumuraAkinari NakamuraTakayuki Urata
    • Hirofumi KokubuKoichi KusumuraAkinari NakamuraTakayuki Urata
    • H01M8/06
    • H01M8/04156H01M8/04388H01M8/04395H01M8/04776H01M8/04955H01M2008/1095Y02E60/50
    • A fuel cell system of the present invention includes: a fuel cell apparatus; an exhaust gas passage through which an exhaust gas from the fuel cell apparatus is discharged; and a water tank configured to store water present within the exhaust gas. The water tank includes a first reservoir, a second reservoir, and a communication part which is configured to allow the first reservoir and the second reservoir to communicate with each other at a lower part of the water tank. The second reservoir of the water tank is provided with a drain outlet which is disposed above the communication part. The exhaust gas passage is connected to the first reservoir of the water tank. The exhaust gas passage is configured such that: in cases where a flow of the exhaust gas within the exhaust gas passage is not blocked at any position downstream from the water tank, the exhaust gas is discharged to the atmosphere from the exhaust gas passage; and in cases where the flow of the exhaust gas within the exhaust gas passage is blocked at a position downstream from the water tank, the exhaust gas is discharged to the atmosphere through the drain outlet of the water tank.
    • 本发明的燃料电池系统包括:燃料电池装置; 来自燃料电池装置的废气通过排气通道排出; 以及配置成存储废气中存在的水的水箱。 水箱包括第一储存器,第二储存器和连通部件,其构造成允许第一储存器和第二储存器在水箱的下部彼此连通。 水箱的第二储存器设置有设置在连通部上方的排水口。 废气通道连接到水箱的第一储存器。 废气通道被构造成:在废气通道内的废气流未在水箱下游的任何位置处被阻塞的情况下,废气从废气通道排放到大气中; 并且在废气通道内的废气流在水箱下游的位置处被阻塞的情况下,排气通过水箱的排水口排出到大气中。
    • 5. 发明申请
    • FUEL CELL SYSTEM AND CONTROL SYSTEM FOR SAME
    • 燃油电池系统和控制系统
    • US20120070753A1
    • 2012-03-22
    • US13321639
    • 2011-03-16
    • Akinari NakamuraTakayuki UrataShigeki Yasuda
    • Akinari NakamuraTakayuki UrataShigeki Yasuda
    • H01M8/06H01M8/04
    • H01M8/0625C01B3/384C01B2203/0233C01B2203/0283C01B2203/044C01B2203/066C01B2203/1604H01M8/04395H01M8/04559H01M8/04753H01M8/04783
    • A fuel cell system including: a fuel cell; a fuel processor including a reformer and a selective oxidizer configured to cause a reaction between carbon monoxide contained in a reformed gas and oxygen in air, an air blower configured to send air for use in power generation to a cathode of the fuel cell and to send air for use in a selective oxidation reaction to the selective oxidizer; a cathode air passage, one end of which is connected to the cathode of the fuel cell and the other end of which is connected to the air blower; a selective oxidation air passage, one end of which is connected to a branching point, on the cathode air passage, at which the selective oxidation air passage branches off from the cathode air passage, and the other end of which is connected to the selective oxidizer; a selective oxidation air meter configured to measure the flow rate of air supplied to the selective oxidizer; and a controller configured to control the air blower. The cathode air passage and the selective oxidation air passage are formed such that the flow rate of the air sent to the selective oxidizer is less than the flow rate of the air sent to the cathode. While the fuel cell is generating power, the controller performs feedback control of controlling the supply performance of the air blower based on the air flow rate measured by the selective oxidation air meter, such that the flow rate of the air sent to the selective oxidizer becomes a target value.
    • 一种燃料电池系统,包括:燃料电池; 包括重整器和选择性氧化器的燃料处理器,其被配置为引起重整气体中包含的一氧化碳与空气中的氧气之间的反应;被配置为将用于发电的空气发送到燃料电池的阴极的鼓风机,并且发送 用于选择性氧化反应的空气; 一个阴极空气通道,其一端连接到燃料电池的阴极,另一端与鼓风机连接; 一个选择性氧化空气通道,其一端连接到分支点,在阴极空气通道上,选择性氧化空气通道从阴极空气通道分支,另一端连接到选择性氧化剂 ; 选择性氧化空气计,被配置为测量供应到所述选择性氧化剂的空气的流量; 以及控制器,其构造成控制所述鼓风机。 阴极空气通道和选择性氧化空气通道形成为使得送到选择性氧化器的空气的流量小于送到阴极的空气的流量。 当燃料电池正在发电时,控制器基于由选择性氧化空气计测量的空气流量来执行控制鼓风机的供应性能的反馈控制,使得送到选择性氧化器的空气的流量变为 一个目标值。
    • 7. 发明申请
    • FUEL CELL SYSTEM AND METHOD OF OPERATING THEREOF
    • 燃料电池系统及其运行方法
    • US20120328964A1
    • 2012-12-27
    • US13582668
    • 2011-03-02
    • Takayuki UrataAkinari NakamuraShigeki Yasuda
    • Takayuki UrataAkinari NakamuraShigeki Yasuda
    • H01M8/06
    • H01M8/04417H01M8/04029H01M8/04156H01M8/0441H01M8/04686H01M8/04761H01M8/04768H01M8/04955
    • A fuel cell system includes: a fuel cell unit 50; a first water tank 41 configured to store at least one of condensation water, cooling water, and stored hot water; a second water tank 43 configured to store at least one of the condensation water, the cooling water, and the stored hot water; a first water amount sensor 42 configured to detect the amount of water in the first water tank; a second water amount sensor 44 configured to detect the amount of water in the second water tank; a first water moving mechanism 60 configured to move water in the first water tank to the second water tank; and a controller 40 configured to perform control of the first water moving mechanism. The controller performs control of the first water moving mechanism and thereafter performs an abnormality handling operation in at least one of the following cases: a case where the amount of water detected by the first water amount sensor has not decreased as compared to before starting to perform the control of the first water control mechanism; and a case where the amount of water detected by the second water amount sensor has not increased as compared to before starting to perform the control of the first water control mechanism, the abnormality handling operation including at least one of a determination operation to determine that there is an abnormality, outputting of an abnormality signal, and stopping of the system's operation.
    • 燃料电池系统包括:燃料电池单元50; 第一水箱41,其配置为存储冷凝水,冷却水和储存的热水中的至少一种; 第二水箱43,其构造为存储冷凝水,冷却水和所存储的热水中的至少一个; 第一水量传感器42,被配置为检测第一水箱中的水量; 第二水量传感器44,被配置为检测第二水箱中的水量; 第一水移动机构60,被配置为将第一水箱中的水移动到第二水箱; 以及控制器40,被配置为执行第一水移动机构的控制。 控制器执行第一水移动机构的控制,然后在以下情况中的至少一个中执行异常处理操作:与开始执行之前相比,第一水量传感器检测到的水量没有减少的情况 控制第一个水控机构; 以及与开始执行第一水控制机构的控制之前的第二水量传感器检测出的水量没有增加的情况,异常处理操作包括确定操作中的至少一个 异常,输出异常信号,停止系统的动作。
    • 9. 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
    • US20120219872A1
    • 2012-08-30
    • US13505339
    • 2010-12-01
    • Yoshikazu TanakaAkinari NakamuraTakayuki Urata
    • Yoshikazu TanakaAkinari NakamuraTakayuki Urata
    • H01M8/06H01M8/04
    • H01M8/04291H01M8/04425H01M8/04686H01M8/04776H01M8/04828H01M8/04992H01M8/0618H01M8/0662
    • A fuel cell system according to the present invention includes: a hydrogen generator; a burner; an air supply device; a fuel cell; a condenser configured to condense an exhaust reducing gas to recover condensed water, the exhaust reducing gas being discharged from the fuel cell; a condensed water tank configured to store the condensed water recovered by the condenser; a water level detector configured to detect a water level in the condensed water tank; a degasifier configured to remove a carbonic acid component contained in the condensed water by using an exhaust oxidizing gas discharged from the fuel cell; a water conveyance passage configured to connect the condensed water tank and the degasifier and including a water sealing structure at a portion thereof; a water level changing unit configured to change the water level in the condensed water tank; and a controller, and the controller causes the water level changing unit to change the water level in the condensed water tank, and when the water level detector has detected the change of the water level, the controller determines that the water level detector is normally operating.
    • 根据本发明的燃料电池系统包括:氢气发生器; 燃烧器 供气装置; 燃料电池 冷凝器,其构造成冷凝排气还原气体以回收冷凝水,所述排气还原气体从所述燃料电池排出; 冷凝水箱,被配置为储存由冷凝器回收的冷凝水; 水位检测器,被配置为检测冷凝水箱中的水位; 脱气装置,其构造为通过使用从所述燃料电池排出的废气氧化气体除去所述冷凝水中所含的碳酸成分; 水输送通道,其构造成将冷凝水箱和脱气器连接,并且在其一部分包括水封结构; 水位改变单元,被配置为改变冷凝水箱中的水位; 和控制器,并且控制器使水位改变单元改变冷凝水箱中的水位,并且当水位检测器检测到水位的变化时,控制器确定水位检测器正常工作 。