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    • 4. 发明申请
    • Thermal management system for high-temperature fuel cell
    • 高温燃料电池热管理系统
    • US20110129746A1
    • 2011-06-02
    • US12628217
    • 2009-12-01
    • Dung-Di YuYung-Neng ChengRuey-Yi Lee
    • Dung-Di YuYung-Neng ChengRuey-Yi Lee
    • H01M8/18H01M8/04
    • H01M8/0612C01B3/34C01B2203/0227C01B2203/066H01M8/04014H01M8/04708H01M8/04738H01M2008/1293
    • A thermal management system for high-temperature fuel cell mainly comprises a first mixer to introduce external fuel to a reformer, a reformer to adjust the gaseous fuel to a proper composition ratio and output the fuel to the anode input of the fuel cell, a second mixer to introduce external ambient air to the cathode input of the fuel cell, a cathode thermal cycle pipeline to deliver the high-temperature air from the cathode output of the fuel cell to pass through the second mixer and the reformer and also heat the second mixer and the reformer to recover the heat, an anode thermal cycle pipeline to introduce the water steam from the anode output of fuel cell, remaining fuel and thermal energy to the first mixer to mix with incoming fuel, and provide sufficient water-to-carbon ratio and the inlet temperature required for the reformer.
    • 用于高温燃料电池的热管理系统主要包括将外部燃料引入重整器的第一混合器,重整器,用于将气体燃料调整到适当的组成比,并将燃料输出到燃料电池的阳极输入端,第二混合器 混合器以将外部环境空气引入到燃料电池的阴极输入端,阴极热循环管道,用于将来自燃料电池的阴极输出的高温空气输送通过第二混合器和重整器,并且还将第二混合器 和重整器来回收热量,一个阳极热循环管道,将来自燃料电池的阳极输出的水蒸汽引入到剩余的燃料和热能到第一混合器以与进入的燃料混合,并提供足够的水碳比 和重整器所需的入口温度。
    • 5. 发明授权
    • Fuel cell assembly structure
    • 燃料电池组件结构
    • US08932738B2
    • 2015-01-13
    • US12253224
    • 2008-10-16
    • Dung-Di YuYung-Neng ChengRuey-Yi LeeChien-Hsiung Lee
    • Dung-Di YuYung-Neng ChengRuey-Yi LeeChien-Hsiung Lee
    • H01M2/08H01M2/18
    • H01M8/249H01M8/0273H01M8/2475H01M8/2484H01M8/2485
    • A fuel cell assembly structure mainly comprises a housing in which there is an accommodating space; a plurality of unit cell stacks that are stacked in the same direction in the accommodating space of the housing and made by stacking in sequence a cathode layer, a power generation electrode, an anode layer and a connection disk; a connection disk connecting is series each unit cell stack, a sealing disk and a cover in sequence to cover the opening of the accommodating space of the housing. On the outer side of the cover there is a connection base, at least one surface of which has a plurality of conduits and the other end connects to a plurality of cell stack bypass manifolds that further connect to a plurality of side bypass manifolds.
    • 燃料电池组件结构主要包括其中存在容纳空间的壳体; 多个单元电池堆,其沿同一方向堆叠在壳体的容纳空间中,并且依次层叠阴极层,发电电极,阳极层和连接盘; 连接盘连接是依次连接每个单电池堆,密封盘和盖,以覆盖壳体的容纳空间的开口。 在盖的外侧上有一个连接底座,其至少一个表面具有多个导管,另一端连接到多个电池组旁路歧管,该多个电池组旁路歧管进一步连接到多个侧旁路歧管。
    • 6. 发明授权
    • Thermal management system for high-temperature fuel cell
    • 高温燃料电池热管理系统
    • US08216735B2
    • 2012-07-10
    • US12628218
    • 2009-12-01
    • Dung-Di YuYung-Neng ChengRuey-Yi Lee
    • Dung-Di YuYung-Neng ChengRuey-Yi Lee
    • H01M8/02H01M8/04H01M8/18
    • H01M8/0618H01M8/04014H01M8/04343H01M8/0435H01M8/04388H01M8/04395H01M2008/1293
    • A thermal management system for high-temperature fuel cell mainly comprises a first mixer to introduce external fuel to a reformer, a reformer to adjust the gaseous fuel to a proper composition ratio and output the fuel to the anode input of the fuel cell, a second mixer to introduce external ambient air to the cathode input of the fuel cell, a cathode thermal cycle pipeline to deliver the high-temperature air from the cathode output of the fuel cell to pass through the second mixer and the reformer and also heat the second mixer and the reformer to recover the heat, an anode thermal cycle pipeline to introduce the water steam from the anode output of fuel cell, remaining fuel and thermal energy to the first mixer to mix with incoming fuel, and provide sufficient water-to-carbon ratio and the inlet temperature required for the reformer.
    • 用于高温燃料电池的热管理系统主要包括将外部燃料引入重整器的第一混合器,重整器,用于将气体燃料调整到适当的组成比,并将燃料输出到燃料电池的阳极输入端,第二混合器 混合器以将外部环境空气引入到燃料电池的阴极输入端,阴极热循环管道,用于将来自燃料电池的阴极输出端的高温空气输送通过第二混合器和重整器,并且还将第二混合器 和重整器来回收热量,一个阳极热循环管道,将来自燃料电池的阳极输出的水蒸汽引入到剩余的燃料和热能到第一混合器以与进入的燃料混合,并提供足够的水碳比 和重整器所需的入口温度。
    • 8. 发明申请
    • HEAT RECOVERY STORAGE DEVICE
    • 热回收储存装置
    • US20150101777A1
    • 2015-04-16
    • US14051465
    • 2013-10-11
    • Dung-Di YuYung-Neng ChengChia-Chih Yang
    • Dung-Di YuYung-Neng ChengChia-Chih Yang
    • F28D20/00
    • F28D20/0034F28D21/0001F28D2020/0078Y02E60/142
    • The present invention is to provide a heat recovery storage device, which includes a major container, a heat transfer machine mounted in the major container, and a thermostatic valve mounted on the heat transfer machine. And the heat transfer machine is used for conducting heat transfer directly to the water in the major container, thus the efficiency of recovery increases, and loss of heat decreases. Also, the water is not easily boiled during the heat recovery, and the maximum of water temperature can increases. In extended use of more than one device of the present invention, each of the major containers can be installed with or without a heat transfer machine as required. The bypass outgassing control is not needed during the heat recovery, and is performed when the water temperature in the containers reaches to the highest.
    • 本发明提供一种热回收存储装置,其包括主容器,安装在主容器中的传热装置和安装在传热机上的恒温阀。 并且传热机用于直接传导到主容器中的水,因此回收效率增加,并且热量的损失降低。 此外,在热回收期间水不容易沸腾,并且水温的最大值可以增加。 在延长使用本发明的多于一个装置的情况下,每个主要容器可以根据需要安装有或没有热转印机。 在热回收期间不需要旁路除气控制,并且当容器中的水温达到最高时执行。
    • 9. 发明授权
    • Heat recovery storage device
    • 热回收储存装置
    • US09372035B2
    • 2016-06-21
    • US14051465
    • 2013-10-11
    • Dung-Di YuYung-Neng ChengChia-Chih Yang
    • Dung-Di YuYung-Neng ChengChia-Chih Yang
    • F28D20/00
    • F28D20/0034F28D21/0001F28D2020/0078Y02E60/142
    • The present invention is to provide a heat recovery storage device, which includes a major container, a heat transfer machine mounted in the major container, and a thermostatic valve mounted on the heat transfer machine. And the heat transfer machine is used for conducting heat transfer directly to the water in the major container, thus the efficiency of recovery increases, and loss of heat decreases. Also, the water is not easily boiled during the heat recovery, and the maximum of water temperature can increases. In extended use of more than one device of the present invention, each of the major containers can be installed with or without a heat transfer machine as required. The bypass outgassing control is not needed during the heat recovery, and is performed when the water temperature in the containers reaches to the highest.
    • 本发明提供一种热回收存储装置,其包括主容器,安装在主容器中的传热装置和安装在传热机上的恒温阀。 并且传热机用于直接传导到主容器中的水,因此回收效率增加,并且热量的损失降低。 此外,在热回收期间水不容易沸腾,并且水温的最大值可以增加。 在延长使用本发明的多于一个装置的情况下,每个主要容器可以根据需要安装有或没有热转印机。 在热回收期间不需要旁路除气控制,并且当容器中的水温达到最高时执行。
    • 10. 发明授权
    • In-line height measurement system for planar fuel cell
    • 平面燃料电池的在线高度测量系统
    • US08486576B2
    • 2013-07-16
    • US12326874
    • 2008-12-02
    • Yung-Neng ChengRuey-Yi LeeHung-Hsiang Lin
    • Yung-Neng ChengRuey-Yi LeeHung-Hsiang Lin
    • H01M8/04G01B7/28
    • H01M8/04313H01M8/12H01M8/243H01M8/2432H01M2008/1293
    • An in-line planar fuel cell height measurement system is mainly composed of a main stand, at least a top platform above a high temperature furnace, a displacement detection unit on the top platform with a central axis connecting to an extension rod that goes downward into the high temperature furnace and contacts the top surface of the cell stack inside the high temperature furnace, a displacement display unit connecting to the displacement detection unit through signal transmission cables, and a data processing unit connecting to the displacement display unit through signal transmission cables, so the displacement detection unit can sense the height change for the cell stack in the high temperature furnace during temperature rise and operation and send out a signal, which can be directly displayed by the displacement display unit and received by a data processing unit for further analysis and storage.
    • 直列式燃料电池高度测量系统主要由主支架,至少在高温炉上方的顶部平台,顶部平台上的位移检测单元组成,中心轴线连接到延伸杆,向下延伸 高温炉与高温炉内的电池堆的顶面接触,通过信号传输电缆连接到位移检测单元的位移显示单元,以及通过信号传输电缆连接到位移显示单元的数据处理单元, 因此位移检测单元可以在温升和运行期间感测高温炉中的电池堆的高度变化,并发出可由位移显示单元直接显示并由数据处理单元接收进一步分析的信号 和存储。