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公开(公告)号:US07875377B2
公开(公告)日:2011-01-25
申请号:US11996083
申请日:2006-07-20
CPC分类号: H01M8/04164 , H01M8/04097 , H01M8/04231 , H01M8/04365 , H01M8/04388 , H01M8/0444 , H01M8/04559 , H01M8/04589 , H01M8/04761
摘要: A fuel cell system is described that enables discharge of moisture generated by the fuel cell system based on pressure differences between components of the fuel cell system. The fuel cell system includes a fuel cell that discharges oxidant offgas via a cathode discharge pipe and discharges fuel offgas and moisture to an anode drain opening that in turn discharges the fuel offgas and the moisture to a gas-liquid separator via an anode drainpipe. A throttle valve establishes a pressure difference downstream within the anode drainpipe to enable movement of the fuel offgas and the moisture from the anode drain opening to a lower pressure area of the gas-liquid separator. In addition, the pressure difference enables the fuel offgas to flow from the gas-liquid separator to the cathode discharge pipe through the throttle valve.
摘要翻译: 描述了一种能够基于燃料电池系统的部件之间的压力差排出由燃料电池系统产生的水分的燃料电池系统。 燃料电池系统包括通过阴极排放管排出氧化剂废气并将燃料废气和水分排出到阳极排放口的燃料电池,阳极排放口又将燃料废气和水分经由阳极排水管排出到气液分离器。 节流阀在阳极排水管内建立下游压力差,以使燃料废气和水分从阳极排放口移动到气液分离器的较低压力区域。 此外,压力差使得燃料废气从气液分离器通过节流阀流到阴极排出管。
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公开(公告)号:US20080233445A1
公开(公告)日:2008-09-25
申请号:US11996083
申请日:2006-07-20
IPC分类号: H01M8/04
CPC分类号: H01M8/04164 , H01M8/04097 , H01M8/04231 , H01M8/04365 , H01M8/04388 , H01M8/0444 , H01M8/04559 , H01M8/04589 , H01M8/04761
摘要: A fuel cell system is described that enables discharge of moisture generated by the fuel cell system based on pressure differences between components of the fuel cell system. The fuel cell system includes a fuel cell that discharges oxidant offgas via a cathode discharge pipe and discharges fuel offgas and moisture to an anode drain opening that in turn discharges the fuel offgas and the moisture to a gas-liquid separator via an anode drainpipe. A throttle valve establishes a pressure difference downstream within the anode drainpipe to enable movement of the fuel offgas and the moisture from the anode drain opening to a lower pressure area of the gas-liquid separator. In addition, the pressure difference enables the fuel offgas to flow from the gas-liquid separator to the cathode discharge pipe through the throttle valve.
摘要翻译: 描述了一种能够基于燃料电池系统的部件之间的压力差排出由燃料电池系统产生的水分的燃料电池系统。 燃料电池系统包括通过阴极排放管排出氧化剂废气并将燃料废气和水分排出到阳极排放口的燃料电池,阳极排放口又将燃料废气和水分经由阳极排水管排出到气液分离器。 节流阀在阳极排水管内建立下游压力差,以使燃料废气和水分从阳极排放口移动到气液分离器的较低压力区域。 此外,压力差使得燃料废气从气液分离器通过节流阀流到阴极排出管。
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公开(公告)号:US08114534B2
公开(公告)日:2012-02-14
申请号:US12967369
申请日:2010-12-14
CPC分类号: H01M8/04164 , H01M8/04097 , H01M8/04231 , H01M8/04365 , H01M8/04388 , H01M8/0444 , H01M8/04559 , H01M8/04589 , H01M8/04761
摘要: A fuel cell system is described that enables discharge of moisture generated by the fuel cell system based on pressure differences between components of the fuel cell system. The fuel cell system includes a fuel cell that discharges oxidant offgas via a cathode discharge pipe and discharges fuel offgas and moisture to an anode drain opening that in turn discharges the fuel offgas and the moisture to a gas-liquid separator via an anode drainpipe. A throttle valve establishes a pressure difference downstream within the anode drainpipe to enable movement of the fuel offgas and the moisture from the anode drain opening to a lower pressure area of the gas-liquid separator. In addition, the pressure difference enables the fuel offgas to flow from the gas-liquid separator to the cathode discharge pipe through the throttle valve.
摘要翻译: 描述了一种能够基于燃料电池系统的部件之间的压力差排出由燃料电池系统产生的水分的燃料电池系统。 燃料电池系统包括通过阴极排放管排出氧化剂废气并将燃料废气和水分排出到阳极排放口的燃料电池,阳极排放口又将燃料废气和水分经由阳极排水管排出到气液分离器。 节流阀在阳极排水管内建立下游压力差,以使燃料废气和水分从阳极排放口移动到气液分离器的较低压力区域。 此外,压力差使得燃料废气从气液分离器通过节流阀流到阴极排出管。
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公开(公告)号:US08034142B2
公开(公告)日:2011-10-11
申请号:US12294190
申请日:2006-03-24
申请人: Akihiro Sakakida , Hiroshi Tanaka , Junichi Hasegawa , Ken Nakayama , Kazuhiro Kageyama , Satoshi Okano , Takayoshi Nabeta , Yoshinori Nakano , Nobuo Sakatsume , Kotaro Akashi , Hisashi Niioka , Douglas Vanderwees , Mark Britton , Manaf Hasan , Craig Hogg
发明人: Akihiro Sakakida , Hiroshi Tanaka , Junichi Hasegawa , Ken Nakayama , Kazuhiro Kageyama , Satoshi Okano , Takayoshi Nabeta , Yoshinori Nakano , Nobuo Sakatsume , Kotaro Akashi , Hisashi Niioka , Douglas Vanderwees , Mark Britton , Manaf Hasan , Craig Hogg
IPC分类号: B04C3/00
摘要: A gas/liquid separator is provided in which separation performance for fluid into gas and liquid is enhanced. A gas/liquid separator includes a body which separates a circulation gas into water and hydrogen gas in a separating space, a supply port from which the circulation gas flows into the inner space, the supply port being provided on the side wall surface forming the separating space, and a discharge port through which the separated hydrogen gas flows out of the separating space, the discharge port being provided on the side wall surface. In this case, the discharge port is provided above the supply port.
摘要翻译: 提供了一种气/液分离器,其中流体进入气体和液体的分离性能得到提高。 气/液分离器包括将循环气体分离成水的主体和分离空间中的氢气,循环气体从该供给口流入内部空间,供给口设置在形成分离器的侧壁面上 空间和分离的氢气从分离空间流出的排出口,排出口设置在侧壁表面上。 在这种情况下,排出口设置在供给口的上方。
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公开(公告)号:US20090205297A1
公开(公告)日:2009-08-20
申请号:US12294190
申请日:2006-03-24
申请人: Akihiro Sakakida , Hiroshi Tanaka , Junichi Hasegawa , Ken Nakayama , Kazuhiro Kageyama , Satoshi Okano , Takayoshi Nabeta , Yoshinori Nakano , Nobuo Sakatsume , Kotaro Akashi , Hisashi Niioka , Douglas Vanderwees , Mark Britton , Manaf Hasan , Craig Hogg
发明人: Akihiro Sakakida , Hiroshi Tanaka , Junichi Hasegawa , Ken Nakayama , Kazuhiro Kageyama , Satoshi Okano , Takayoshi Nabeta , Yoshinori Nakano , Nobuo Sakatsume , Kotaro Akashi , Hisashi Niioka , Douglas Vanderwees , Mark Britton , Manaf Hasan , Craig Hogg
摘要: A gas/liquid separator in which separation performance for fluid into gas and liquid is enhanced is provided.A gas/liquid separator 10 includes a body 40 which separates a circulation gas into water and hydrogen gas in a separating space S1, a supply port 45 from which the circulation gas flows into the inner space S1, the supply port 45 being provided on the side wall surface 43 forming the separating space S1, and a discharge port48 through which the separated hydrogen gas flows out of the separating space S1, the discharge port 48 being provided on the side wall surface 43. In this case, the discharge port 48 is provided above the supply port 45.
摘要翻译: 提供了一种气/液分离器,其中流体进入气体和液体的分离性能得到增强。 气/液分离器10包括将循环气体分离成水的主体40和分离空间S1中的氢气,循环气体从其流入内部空间S1的供给口45,供给口45设置在 形成分离空间S1的侧壁面43和分离的氢气从分离空间S1流出的排出口48,排出口48设置在侧壁面43上。在这种情况下,排出口48为 设置在供给口45的上方。
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公开(公告)号:US20110081584A1
公开(公告)日:2011-04-07
申请号:US12967369
申请日:2010-12-14
CPC分类号: H01M8/04164 , H01M8/04097 , H01M8/04231 , H01M8/04365 , H01M8/04388 , H01M8/0444 , H01M8/04559 , H01M8/04589 , H01M8/04761
摘要: A fuel cell system is described that enables discharge of moisture generated by the fuel cell system based on pressure differences between components of the fuel cell system. The fuel cell system includes a fuel cell that discharges oxidant offgas via a cathode discharge pipe and discharges fuel offgas and moisture to an anode drain opening that in turn discharges the fuel offgas and the moisture to a gas-liquid separator via an anode drainpipe. A throttle valve establishes a pressure difference downstream within the anode drainpipe to enable movement of the fuel offgas and the moisture from the anode drain opening to a lower pressure area of the gas-liquid separator. In addition, the pressure difference enables the fuel offgas to flow from the gas-liquid separator to the cathode discharge pipe through the throttle valve.
摘要翻译: 描述了一种能够基于燃料电池系统的部件之间的压力差排出由燃料电池系统产生的水分的燃料电池系统。 燃料电池系统包括通过阴极排放管排出氧化剂废气并将燃料废气和水分排出到阳极排放口的燃料电池,阳极排放口又将燃料废气和水分经由阳极排水管排出到气液分离器。 节流阀在阳极排水管内建立下游压力差,以使燃料废气和水分从阳极排放口移动到气液分离器的较低压力区域。 此外,压力差使得燃料废气从气液分离器通过节流阀流到阴极排出管。
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公开(公告)号:US20120171590A1
公开(公告)日:2012-07-05
申请号:US13394046
申请日:2010-08-05
IPC分类号: H01M8/04
CPC分类号: H01M8/04753 , H01M8/04164 , H01M8/04179 , H01M8/04231 , H01M8/04253 , H01M8/0432 , H01M8/04365 , H01M8/04388 , H01M8/045 , H01M2008/1095
摘要: An anode non-circulation type fuel cell sets an anode upper limit pressure and an anode lower limit pressure, and sets an anode pressure increase rate based on at least a detected temperature of a fuel cell. The system controls the supply of an anode gas to the fuel cell so as to repeat pressure increase and pressure decrease. The pressure increase is conducted by supplying the anode gas to the anode upper limit pressure at the anode pressure increase rate. The pressure decrease is conducted by restricting the supply of the anode gas to the anode lower limit pressure. When the detected temperature of the fuel cell is lower than a predetermined temperature, the system sets the anode pressure increase rate at a slower rate than when the temperature of the fuel cell is equal to or higher than the predetermined temperature.
摘要翻译: 阳极非循环型燃料电池设定阳极上限压力和阳极下限压力,并且至少基于燃料电池的检测温度设定阳极压力增加率。 该系统控制向燃料电池供应阳极气体,以便重复增加压力和降低压力。 通过以阳极压力增加率将阳极气体供给到阳极上限压力来进行压力增加。 通过将阳极气体的供给限制在阳极下限压力来进行压力降低。 当燃料电池的检测温度低于预定温度时,与燃料电池的温度等于或高于预定温度相比,系统将阳极压力增加率设定得比较慢。
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公开(公告)号:US11042785B2
公开(公告)日:2021-06-22
申请号:US16842101
申请日:2020-04-07
申请人: David Cox , Walter Scheirer , Samuel Anthony , Ken Nakayama
发明人: David Cox , Walter Scheirer , Samuel Anthony , Ken Nakayama
摘要: In various embodiments, training objects are classified by human annotators, psychometric data characterizing the annotation of the training objects is acquired, a human-weighted loss function based at least in part on the classification data and the psychometric data is computationally derived, and one or more features of a query object are computationally classifies based at least in part on the human-weighted loss function.
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公开(公告)号:US08607817B2
公开(公告)日:2013-12-17
申请号:US12597760
申请日:2007-10-18
申请人: Ken Nakayama , Seiichi Noda , Yoshimichi Kawakami
发明人: Ken Nakayama , Seiichi Noda , Yoshimichi Kawakami
CPC分类号: G01D5/425 , G01M3/32 , Y10T137/7287
摘要: A control method of a filled water volume in a fluid space requiring a water filling test is disclosed. The method includes disposing a pipe in the fluid space and enclosing the pipe with an enclosure, detecting pressure of a water filled portion in the fluid space or outside of the enclosure, and controlling the volumes of filling fluid and water to a water filling portion in the fluid space inside and outside the enclosure based on the detected pressure such that the pressure in the enclosure becomes higher than the pressure at the water filling part in the fluid space outside the enclosure.
摘要翻译: 公开了一种需要填水试验的流体空间中的填充水体积的控制方法。 该方法包括将管道设置在流体空间中并用外壳封闭管道,检测流体空间中或水套外部的填充水的部分的压力,以及将填充流体和水的体积控制在水填充部分中 基于检测到的压力,外壳内部和外部的流体空间使得外壳中的压力变得高于外壳外部的流体空间中的充水部分处的压力。
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公开(公告)号:US20120223566A1
公开(公告)日:2012-09-06
申请号:US13502968
申请日:2010-10-19
申请人: Ken Nakayama , Kouichirou Wakizono , Ryou Igarashi
发明人: Ken Nakayama , Kouichirou Wakizono , Ryou Igarashi
IPC分类号: A47C7/40
CPC分类号: A47C31/02 , A47C1/03255 , A47C1/03272 , A47C1/03283 , A47C7/40
摘要: A backrest for a chair, including a bag-like upholstery material, with which a back frame is upholstered by fitting the bag-like upholstery material onto the back frame that has a pair of right and left side frames extending in an up-down direction. A low-friction member is disposed on at least one of an inner surface of both side portions of the upholstery material and an outer surface of the right and left side frames contacting the inner surface of the side portions of the upholstery material, the low-friction member being configured to reduce a sliding resistance in an area of contact between the upholstery material and the side frames.
摘要翻译: 一种用于椅子的靠背,包括袋状装饰材料,通过将背包框架装配到背部框架上,将背包框架装配在背部框架上,后框架具有沿上下方向延伸的一对左右侧框架 。 低摩擦构件设置在装饰材料的两侧部的内表面中的至少一个上,并且右侧框架和左侧框架的外表面与内装材料的侧部的内表面接触, 摩擦构件被构造成减小所述装饰材料和所述侧框架之间的接触区域中的滑动阻力。
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