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    • 51. 发明授权
    • Catalytic combustor
    • 催化燃烧器
    • US5975890A
    • 1999-11-02
    • US11881
    • 1998-02-17
    • Yoshitaka KawasakiJiro SuzukiMasato HosakaAkira MaenishiMotohiro SuzukiShigehiko Fujita
    • Yoshitaka KawasakiJiro SuzukiMasato HosakaAkira MaenishiMotohiro SuzukiShigehiko Fujita
    • F21L19/00F21V9/00F23D14/18F23D14/28F23D14/12
    • F23C13/02F21L19/00F21V9/00F23D14/18F23D14/28
    • A catalytic combustor utilizes radioactive heat with a high efficiency, has a radiation wavelength distribution rich in visible ray components, and is excellent in complete combustibility and visual confirmability even in a standby combustion condition. The present invention forms a thin film coat of metal or metal oxide which transmits rays having short wavelengths and reflects rays having long wavelengths on a surface of a transmission window disposed opposite to an upstream surface of a catalyst body. The catalyst body is composed of a metal wire structure having a high aperture ratio and is disposed in a combustion chamber. Furthermore, an auxiliary catalyst body which has a high aperture ratio and a small capacity is disposed in the vicinity of a mixed gas injection port at a location in contact with the mixed gas when the flow rate of the mixed gas is less than a predetermined value. Moreover, a freely openable/closable cover having reflectivity to heat rays is disposed in the vicinity of an outside surface of the transmission window. An air flow path is formed between the transmission window and a second transmission window. Also a thin film coat reflecting radioactive heat rays having long wavelengths is disposed on an inside surface of the second transmission window.
    • PCT No.PCT / JP97 / 02039 Sec。 371日期1998年2月17日 102(e)日期1998年2月17日PCT提交1997年6月12日PCT公布。 第WO97 / 48945号公报 1997年12月24日催化燃烧器利用高效率的放射性热,具有丰富的可见光成分的辐射波长分布,即使在待机燃烧条件下也具有优异的完全可燃性和视觉可靠性。 本发明形成了透射具有短波长的光并且在与催化剂体的上游表面相对设置的透光窗的表面上反射具有长波长的光的金属或金属氧化物的薄膜涂层。 催化剂体由具有高孔径比的金属丝结构构成,并设置在燃烧室中。 此外,当混合气体的流量小于预定值时,在与混合气体接触的位置处的混合气体注入口附近设置具有高开口率和小容量的辅助催化剂体 。 此外,在透射窗的外表面附近设置具有对热射线具有反射性的可自由打开/关闭的盖。 在透射窗和第二透射窗之间形成气流路径。 此外,反射具有长波长的放射线热射线的薄膜涂层设置在第二透射窗的内表面上。
    • 53. 发明授权
    • Humidifier for fuel cell and process for warming the same
    • 用于燃料电池的加湿器及其加热过程
    • US08298710B2
    • 2012-10-30
    • US12009278
    • 2008-01-17
    • Yoshio KusanoToshikatsu KatagiriMotohiro SuzukiKenji Nagumo
    • Yoshio KusanoToshikatsu KatagiriMotohiro SuzukiKenji Nagumo
    • H01M8/06H01M8/04
    • H01M8/04029H01M8/04126
    • A humidifier for humidifying a fuel cell composed of an anode side humidifier and a cathode side humidifier each possessing a plurality of hollow fiber membrane modules for migrating moisture between a supply gas, which is supplied to a fuel cell, and an exhaust gas, which is exhausted from the fuel cell to thereby humidify the supply gas, the humidifier comprising: a pair of heads which hold both ends of the hollow fiber membrane modules, a connecting member which connects each of heads, and a device for warming the supply gas composed of conduits through which a cooling medium exhausted from the fuel cell is passed. The device for warming the supply gas is configured so that first warms a humidifier at an outlet side of the supply gas, and then warms a humidifier at an inlet side of the supply gas.
    • 一种用于加湿由阳极侧加湿器和阴极侧加湿器构成的燃料电池的加湿器,每个具有多个中空纤维膜组件,用于在供应到燃料电池的供应气体与排气之间迁移水分, 从燃料电池排出,从而使供给气体加湿,加湿器包括:一对保持中空纤维膜组件的两端的头部,连接每个头部的连接构件和用于加热由 通过燃料电池排出的冷却介质通过的导管。 用于加热供气的装置构造成使得首先使供给气体的出口侧的加湿器加热,然后在供给气体的入口侧加热加湿器。
    • 54. 发明授权
    • Power supply control apparatus of navigation system
    • 导航系统电源控制装置
    • US08260541B2
    • 2012-09-04
    • US12795179
    • 2010-06-07
    • Motohiro Suzuki
    • Motohiro Suzuki
    • G01C21/00
    • G01C21/26
    • A power supply control apparatus of a navigation system includes a power switch for a user to turn a display screen of the navigation system on or off; a navigation power switching unit to turn an internal function of the navigation system on or off by a power supply connection; a navigation information unnecessary state detecting unit to detect a navigation information unnecessary state where a user does not need navigation information; and a power supply control unit to turn the navigation power switching unit off when the navigation information unnecessary state detecting unit detects the navigation information unnecessary state.
    • 导航系统的电源控制装置包括用于用户打开或关闭导航系统的显示屏的电源开关; 导航功率切换单元,通过电源连接来接通或关闭导航系统的内部功能; 导航信息不必要状态检测单元,用于检测用户不需要导航信息的导航信息不必要的状态; 以及电源控制单元,当导航信息不必要状态检测单元检测到导航信息不必要的状态时,关闭导航电源切换单元。
    • 57. 发明申请
    • FUEL CELL SYSTEM INCLUDING WATER INJECTION DEVICE
    • 包括水注射装置的燃料电池系统
    • US20110244343A1
    • 2011-10-06
    • US13076431
    • 2011-03-31
    • Tatsuya SUGAWARAMotohiro Suzuki
    • Tatsuya SUGAWARAMotohiro Suzuki
    • H01M8/06H01M8/04
    • H01M8/04111H01M8/04126H01M8/04141H01M8/04164H01M8/04507H01M8/04753H01M8/04835
    • A fuel cell system includes a fuel cell, an oxidant-gas supply passage, a compressor, a water injection device, a return passage, and a regulation valve. The fuel cell is to generate power utilizing an electrochemical reaction between oxidant gas and fuel gas. The oxidant gas flows toward the fuel cell through the oxidant-gas supply passage. The compressor is provided in the oxidant-gas supply passage. The compressor is capable of sucking and pressurizing the oxidant gas to discharge the oxidant gas toward the fuel cell. The water injection device is to inject water toward a suction port of the compressor. The return passage connects an upstream portion in the oxidant-gas supply passage upstream the compressor and a downstream portion in the oxidant-gas supply passage downstream the compressor to bypass the compressor. Opening of the regulation valve is adjustable. The regulation valve is provided in the return passage.
    • 燃料电池系统包括燃料电池,氧化剂气体供应通道,压缩机,注水装置,返回通道和调节阀。 燃料电池利用氧化剂气体和燃料气体之间的电化学反应发电。 氧化剂气体通过氧化剂气体供给通道流向燃料电池。 压缩机设置在氧化剂气体供给通路内。 压缩机能够吸入和加压氧化剂气体以将氧化剂气体排向燃料电池。 注水装置是向压缩机的吸入口注入水。 返回通道将压缩机上游的氧化剂 - 气体供应通道中的上游部分和压缩机下游的氧化剂 - 气体供应通道的下游部分连接以绕过压缩机。 调节阀打开可调。 调节阀设置在返回通道中。
    • 59. 发明授权
    • Humidified fuel cell system and process for warming the same
    • 加温燃料电池系统及其加热过程相同
    • US07344790B2
    • 2008-03-18
    • US10714464
    • 2003-11-14
    • Yoshio KusanoToshikatsu KatagiriMotohiro SuzukiKenji Nagumo
    • Yoshio KusanoToshikatsu KatagiriMotohiro SuzukiKenji Nagumo
    • H01M8/04
    • H01M8/04029H01M8/04126
    • A humidifier for humidifying a fuel cell composed of an anode side humidifier and a cathode side humidifier each possessing a plurality of hollow fiber membrane modules for migrating moisture between a supply gas, which is supplied to a fuel cell, and an exhaust gas, which is exhausted from the fuel cell to thereby humidify the supply gas, the humidifier comprising: a pair of heads which hold both ends of the hollow fiber membrane modules, a connecting member which connects each of heads, and a device for warming the supply gas composed of conduits through which a cooling medium exhausted from the fuel cell is passed. The device for warming the supply gas is configured so that first warms a humidifier at an outlet side of the supply gas, and then warms a humidifier at an inlet side of the supply gas.
    • 一种用于加湿由阳极侧加湿器和阴极侧加湿器构成的燃料电池的加湿器,每个具有多个中空纤维膜组件,用于在供应到燃料电池的供应气体与排气之间迁移水分, 从燃料电池排出,从而使供给气体加湿,加湿器包括:一对保持中空纤维膜组件的两端的头部,连接每个头部的连接构件和用于加热由 通过燃料电池排出的冷却介质通过的导管。 用于加热供气的装置构造成使得首先使供给气体的出口侧的加湿器加热,然后在供给气体的入口侧加热加湿器。