Fuel Cell Power Generation Refrigerating System
    1.
    发明申请
    Fuel Cell Power Generation Refrigerating System 有权
    燃料电池发电制冷系统

    公开(公告)号:US20070193289A1

    公开(公告)日:2007-08-23

    申请号:US10594601

    申请日:2005-03-10

    IPC分类号: F25B49/00 F25B27/00

    摘要: A cell body receiving fuel supply to generate power, an inverter receiving output power of the cell body to convert it into ac power, and a vapor-compression refrigerating machine receiving the ac power output from the inverter as operating power and using a motor as its driving source are provided. An intermediate part of a connection line connecting the aforementioned inverter and vapor-compression refrigerating machine is connected to a refrigeration air-conditioning power board to make effective use of a fuel cell and to prevent the footprint and construction costs from increasing.

    摘要翻译: 接收燃料供应以产生电力的电池体,接收电池体的输出功率以将其转换为交流电力的逆变器,以及接收从逆变器输出的交流电力作为工作电力并使用电动机作为其的电动机的蒸气压缩式制冷机 提供驱动源。 连接上述逆变器和蒸气压缩式制冷机的连接线的中间部分连接到制冷空调电源板,以有效利用燃料电池并防止占地面积和施工成本增加。

    Humidity controller apparatus
    2.
    发明授权
    Humidity controller apparatus 失效
    湿度控制器

    公开(公告)号:US07690582B2

    公开(公告)日:2010-04-06

    申请号:US10558422

    申请日:2004-05-28

    IPC分类号: G05D22/02

    摘要: A humidity controller apparatus (20) contains an adsorption rotor (24) and a heater (25). A first passage (21) along which a first air stream flows and a second passage (22) along which a second air stream flows are formed in the humidity controller apparatus (20). The amount of heat exchange between the first and second air streams and the amount of moisture exchange between the first and second air streams vary by adjustment to the rotating speed of the adsorption rotor (24), and the humidity controller apparatus (20) is switched between a dehumidification operation and a humidification/heating operation. During the dehumidification operation, the rotating speed of the adsorption rotor (24) is set low. The first air stream is dehumidified by the adsorption rotor (24) and then supplied to the inside of a room. The second air stream is used for regeneration of the adsorption rotor (24) and then discharged to the outside of the room. During the humidification/heating operation, the rotating speed of the adsorption rotor (24) is set high. The first air stream receives heat and moisture from the adsorption rotor (24) and then is supplied to the inside of the room. The second air stream is heat/moisture-adsorbed by the adsorption rotor (24) and then discharged to the outside of the room.

    摘要翻译: 湿度调节装置(20)包含吸附转子(24)和加热器(25)。 第一气流流过的第一通道(21)和流过第二空气流的第二通道(22)形成在湿度调节装置(20)中。 第一和第二空气流之间的热交换量和第一和第二空气流之间的水分交换量根据吸附转子(24)的转速的调整而变化,并且湿度控制器装置(20)被切换 在除湿操作和加湿/加热操作之间。 在除湿运转中,吸附转子(24)的旋转速度变低。 第一气流被吸附转子(24)除湿,然后供给室内。 第二气流用于再生吸附转子(24),然后排出到室外。 在加湿运转时,吸附转子(24)的旋转速度变高。 第一气流从吸附转子(24)接收热量和湿气,然后被供给到室内。 第二气流由吸附转子(24)进行热吸湿,然后排出到室外。

    Fuel cell power generation system
    3.
    发明申请
    Fuel cell power generation system 审中-公开
    燃料电池发电系统

    公开(公告)号:US20060019139A1

    公开(公告)日:2006-01-26

    申请号:US10526011

    申请日:2003-08-27

    IPC分类号: H01M8/04

    摘要: A fuel cell electrical power generation system (1) is provided which is made up of components including a desulfurizer (3), a prereformer (5), an internal reforming type solid electrolyte fuel cell (7) etc. The fuel cell (7) is made up of components including an air electrode (31), an electrolyte (33), a fuel electrode (35), an air chamber (37), a fuel chamber (39), external circuits etc. The prereformer (5) operates as follows. After being flowed through the desulfurizer (3), the town gas/air is flowed through the prereformer (5) during the startup phase of the internal reforming type solid electrolyte fuel cell (7), thereby to cause partial oxidation of hydrocarbons present in the town gas to generate a partial oxidation gas which contains CO and H2. This partial oxidation gas is supplied to the fuel chamber (39).

    摘要翻译: 提供燃料电池发电系统(1),其由包括脱硫器(3),预重整器(5),内部重整型固体电解质燃料电池(7)等的部件组成。燃料电池(7) 由包括空气电极(31),电解质(33),燃料电极(35),空气室(37),燃料室(39),外部电路等的部件组成。预重整器(5)操作 如下。 在通过脱硫器(3)流动之后,在内部重整型固体电解质燃料电池(7)的启动阶段期间,城镇煤气/空气流过预重整器(5),从而导致存在于 以产生含有CO和H 2 N 2的部分氧化气体。 将该部分氧化气体供给到燃料室(39)。

    Fuel cell power generation refrigerating system
    4.
    发明授权
    Fuel cell power generation refrigerating system 有权
    燃料电池发电制冷系统

    公开(公告)号:US07614245B2

    公开(公告)日:2009-11-10

    申请号:US10594601

    申请日:2005-03-10

    IPC分类号: F25B27/00

    摘要: A cell body receiving fuel supply to generate power, an inverter receiving output power of the cell body to convert it into ac power, and a vapor-compression refrigerating machine receiving the ac power output from the inverter as operating power and using a motor as its driving source are provided. An intermediate part of a connection line connecting the aforementioned inverter and vapor-compression refrigerating machine is connected to a refrigeration air-conditioning power board to make effective use of a fuel cell and to prevent the footprint and construction costs from increasing.

    摘要翻译: 接收燃料供应以产生电力的电池体,接收电池体的输出功率以将其转换为交流电力的逆变器,以及接收从逆变器输出的交流电力作为工作电力并使用电动机作为其的电动机的蒸气压缩式制冷机 提供驱动源。 连接上述逆变器和蒸气压缩式制冷机的连接线的中间部分连接到制冷空调电源板,以有效利用燃料电池并防止占地面积和施工成本增加。

    SOLID OXIDE FUEL CELL
    5.
    发明申请
    SOLID OXIDE FUEL CELL 审中-公开
    固体氧化物燃料电池

    公开(公告)号:US20090214907A1

    公开(公告)日:2009-08-27

    申请号:US11912048

    申请日:2006-01-23

    IPC分类号: H01M8/18 H01M2/02

    摘要: A stack of disc-type fuel cells and disc-type separators stacked alternately is housed in a casing. A fuel supply part extends through the central part of the upper wall of the casing to supply fuel to the central part of the stack. An air supply part extends through the central part of the lower wall of the casing to supply air to the central part of the stack. A fuel discharge part extends through the central part of the lower wall of the casing to discharge fuel after power generation. An exhaust discharge part extends through the peripheral part of the lower wall of the casing to discharge an exhaust gas resulting from the combustion of mixture of the fuel after power generation and air, and a recirculation part for mixing the fuel after power generation discharged from the fuel discharge part with newly-supplied fuel.

    摘要翻译: 交替堆叠的盘式燃料电池和盘式隔板的堆叠被容纳在壳体中。 燃料供给部分延伸穿过壳体的上壁的中心部分,以将燃料供应到堆叠的中心部分。 空气供应部分延伸穿过壳体的下壁的中心部分,以将空气供应到堆叠的中心部分。 燃料排出部分延伸穿过壳体的下壁的中心部分,以在发电后排出燃料。 废气排出部分延伸穿过壳体的下壁的周边部分,以排放由发电和空气之后的燃料混合物燃烧而产生的废气,以及用于将发电后的燃料混合的再循环部分 燃料排放部分与新供应的燃料。

    Humidity controller apparatus
    6.
    发明申请
    Humidity controller apparatus 失效
    湿度控制器

    公开(公告)号:US20060260332A1

    公开(公告)日:2006-11-23

    申请号:US10558422

    申请日:2004-05-28

    IPC分类号: F25D17/06 F25D17/04 F25D23/00

    摘要: A humidity controller apparatus (20) contains an adsorption rotor (24) and a heater (25). A first passage (21) along which a first air stream flows and a second passage (22) along which a second air stream flows are formed in the humidity controller apparatus (20). The amount of heat exchange between the first and second air streams and the amount of moisture exchange between the first and second air streams vary by adjustment to the rotating speed of the adsorption rotor (24), and the humidity controller apparatus (20) is switched between a dehumidification operation and a humidification/heating operation. During the dehumidification operation, the rotating speed of the adsorption rotor (24) is set low. The first air stream is dehumidified by the adsorption rotor (24) and then supplied to the inside of a room. The second air stream is used for regeneration of the adsorption rotor (24) and then discharged to the outside of the room. During the humidification/heating operation, the rotating speed of the adsorption rotor (24) is set high. The first air stream receives heat and moisture from the adsorption rotor (24) and then is supplied to the inside of the room. The second air stream is heat/moisture-adsorbed by the adsorption rotor (24) and then discharged to the outside of the room.

    摘要翻译: 湿度调节装置(20)包含吸附转子(24)和加热器(25)。 第一气流流过的第一通道(21)和流过第二空气流的第二通道(22)形成在湿度调节装置(20)中。 第一和第二空气流之间的热交换量和第一和第二空气流之间的水分交换量根据吸附转子(24)的转速的调整而变化,并且湿度控制器装置(20)被切换 在除湿操作和加湿/加热操作之间。 在除湿运转中,吸附转子(24)的旋转速度变低。 第一气流被吸附转子(24)除湿,然后供给室内。 第二气流用于再生吸附转子(24),然后排出到室外。 在加湿运转时,吸附转子(24)的旋转速度变高。 第一气流从吸附转子(24)接收热量和湿气,然后被供给到室内。 第二气流由吸附转子(24)进行热吸湿,然后排出到室外。