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    • 1. 发明申请
    • SYSTEM AND METHOD FOR PROCESS GAS STREAM DELIVERY AND REGULATION IN A FUEL CELL SYSTEM USING DOWN SPOOL CONTROL
    • 使用降温控制在燃料电池系统中处理气流输送和调节的系统和方法
    • WO2004027907A3
    • 2004-06-24
    • PCT/CA0301449
    • 2003-09-23
    • HYDROGENICS CORPCARGNELLI JOSEPHSIMPSON TODD ABURANY STEPHEN
    • CARGNELLI JOSEPHSIMPSON TODD ABURANY STEPHEN
    • H01M8/00H01M8/04
    • H01M8/04761H01M8/04029H01M8/04089H01M8/04141H01M8/04231H01M8/04574H01M8/04604H01M8/04753H01M8/04768H01M2008/1095
    • A method and apparatus are provided for delivery and regulation of a process fluid to a multi-cell electrochemical device. A controller regulates the process fluid flow, after at least one of the process parameters indicates a drop in load current draw, based on the operating rate of the fuel cell and the rate of decrease in the load. The method of the present invention comprises (a) operating a component of the fuel cell system at a component operating rate; (b) driving a load using the fuel cell; (c) measuring an operating rate of the fuel cell; (d) normally adjusting the component operating rate in dependence upon the operating rate of the fuel cell; and, (e) in response to selected changes in the operating rate of the fuel cell, indicative of corresponding changes in the demand from the load, delaying adjustment of the component operating rate. The invention also provides a fuel cell system comprising (a) a fuel cell for driving a load; (b) at least one measuring device for monitoring an operating rate of the fuel cell; (c) a controller for controlling an operation rate of a component of the fuel cell system based on the operating rate of the fuel cell; and, (d) means for detecting selected changes in the operating rate of the fuel cell, indicative of corresponding changes in the demand from the load, and in response thereto, delaying adjustment of the operation rate of the component.
    • 提供了一种用于将工艺流体递送和调节到多单元电化学装置的方法和装置。 控制器根据燃料电池的运行速率和负载的降低速率,在至少一个工艺参数表明负载电流消耗的下降,调节过程流体流量。 本发明的方法包括(a)以组件运行速率操作燃料电池系统的部件; (b)使用燃料电池驱动负载; (c)测量燃料电池的运行速率; (d)通常根据燃料电池的运行速率调整组件运行速率; 以及(e)响应燃料电池的运行速率的选定变化,指示来自负载的需求的相应变化,延迟组件运行速率的调整。 本发明还提供一种燃料电池系统,其包括(a)用于驱动负载的燃料电池; (b)至少一个用于监测燃料电池的运行速率的测量装置; (c)控制器,其基于燃料电池的运转速度来控制燃料电池系统的部件的运转率; 和(d)用于检测指示来自负载的需求的相应变化的燃料电池的运行速率的选定变化的装置,并且响应于此,延迟部件的运行速率的调整。
    • 3. 发明申请
    • APPARATUS FOR EXCHANGING ENERGY AND MASS BETWEEN FLUID STREAMS
    • 换流能力和流体流量之间的装置
    • WO2008034243A1
    • 2008-03-27
    • PCT/CA2007/001675
    • 2007-09-19
    • HYDROGENICS CORPORATIONNUNES, VincenteBURANY, Stephen Joseph
    • NUNES, VincenteBURANY, Stephen Joseph
    • F28D19/04F24F3/14F28F27/00
    • F28D19/042F24F3/1423F24F2203/1004F24F2203/1068F24F2203/1084F28D19/048
    • A regenerative energy and/or mass exchange assembly having an exchange media, a central housing, a first end housing with fluid stream diverting chambers to provide a fluid flow passage from a first inlet of the first end housing to the exchange media, and provide a fluid flow passage from the exchange media to a first outlet of the first end housing, a second end housing having fluid stream diverting chambers to provide a fluid flow passage from a second inlet of the second end housing to the exchange media, and provide a fluid flow passage from the exchange media to a second outlet of the second end housing. The first and second end housings have a skirt portion extending generally parallel to a central axis of the end housings. The exchange media is rotated by a motor via a shaft, and the shaft is fastened to a recess in a side surface of the exchange media by a drive transfer means.
    • 一种具有交换介质的再生能量和/或质量交换组件,中央壳体,具有流体流分流室的第一端壳体,以提供从第一端壳体的第一入口到交换介质的流体流动通道, 从所述交换介质到所述第一端壳体的第一出口的流体流动通道,具有流体流转向室以提供从所述第二端壳体的第二入口到所述交换介质的流体流动通道的第二端壳体,并且提供流体 从所述交换介质到所述第二端壳体的第二出口的流动通道。 第一和第二端部壳体具有大致平行于端部壳体的中心轴线延伸的裙部。 交换介质由马达通过轴旋转,并且轴通过驱动传递装置紧固到交换介质的侧表面中的凹部。
    • 9. 发明申请
    • SYSTEM AND METHOD FOR MANAGEMENT OF GAS AND WATER IN FUEL CELL SYSTEM
    • 燃料电池系统中的气体和水的管理系统和方法
    • WO2004027908A2
    • 2004-04-01
    • PCT/CA2003/000901
    • 2003-06-18
    • HYDROGENICS CORPORATIONCARGNELLI, JosephSIMPSON, Todd, A.DEL CORE, Robert, C.BURANY, StephenYE, JianmingBAZZARELLA, Ricardo
    • CARGNELLI, JosephSIMPSON, Todd, A.DEL CORE, Robert, C.BURANY, StephenYE, JianmingBAZZARELLA, Ricardo
    • H01M8/00
    • H01M8/00H01M8/04
    • A fuel cell system has: a fuel cell having a first reactant inlet, a first reactant outlet, a second reactant inlet, a second reactant outlet, and optionally a coolant inlet and coolant outlet. A first reactant supply subsystem supplies a first reactant incoming stream to the first reactant inlet of the fuel cell. A second reactant supply subsystem supplies a second reactant incoming stream to the second reactant inlet of the fuel cell. A first reactant recirculation subsystem recirculates at least a portion of the first reactant exhaust stream from the first reactant outlet to a regenerative dryer subsystem in which one portion of the heat and moisture in first reactant exhaust stream is transferred to one of the first reactant incoming stream in the first reactant supply subsystem and the second reactant incoming stream in the second reactant supply subsystem. Another portion of the heat and moisture is transferred to the other stream. A method of controlling reactant and water in a fuel cell system is also disclosed.
    • 燃料电池系统具有:具有第一反应物入口,第一反应物出口,第二反应物入口,第二反应物出口以及任选的冷却剂入口和冷却剂出口的燃料电池。 第一反应物供应子系统将第一反应物进料流提供给燃料电池的第一反应物入口。 第二反应物供应子系统将第二反应物进料流供应到燃料电池的第二反应物入口。 第一反应物再循环子系统将第一反应物排出流的至少一部分从第一反应物出口再循环到再生干燥器子系统,其中第一反应物排放流中的一部分热和水分被转移到第一反应物进料流 在第一反应物供应子系统中和第二反应物供应子系统中的第二反应物进料流。 热和湿气的另一部分被转移到另一个流。 还公开了一种在燃料电池系统中控制反应物和水的方法。