燃料电池系统

  • 网络Fuel cell system;FCS;SOFC
燃料电池系统燃料电池系统
  1. 采用废气能量回收,燃料电池系统效率提升最大可达5%,且提升效果在大负荷时更明显,而最大净输出功率的提升可达15%。

    The application of turbocharger can effectively improve the FCS ' performance and the max improvement of efficiency and peak power are 5 % and 15 % respectively , and the efficiency improvement is greater at heavier load .

  2. 再次,论文提出了一种适用于燃料电池系统中能量存储单元的双向DC-DC变换器。

    Thirdly , a bidirectional DC-DC converter is proposed used for energy storage unit in a fuel cell system .

  3. 闭式循环燃料电池系统将成为AUV的AIP新能源系统,增强AUV的续航能力。

    Circulating PEMFC system will be a new AIP energy system , enhancing the navigating ability for AUV .

  4. 指出OER是衡量燃料电池系统发电性能的重要指标。

    OER is an important indicator to measure the power generation performance of the fuel cell system . 2 .

  5. 作者以满足燃料电池系统的研究和控制要求为目标,以实现快速控制原型(RCP)能力为核心设计了ECU,大大缩短了后期相关控制的开发周期。

    An ECU with rapid control prototype ( RCP ) ability is developed for fuel-cell system control , which greatly reduce the leadtime in the development of related following controls .

  6. 但是YSZ要求的运行温度高达900-C,不但增加了制造费用,并且加速了燃料电池系统的老化。

    However , high operating temperatures of over 900 ℃ are required for this electrolyte , this condition increases the fabrication cost and accelerates degradation of the fuel-cell system .

  7. 运行参数的动态控制对100kW燃料电池系统效率及稳定性的影响

    Influence of dynamic controlling the operation parameters on 100 kW fuel cell power sysytem efficiency and performance stability

  8. 质子交换膜燃料电池系统平板膜增湿器性能质子交换膜燃料电池膜电极的形变量研究

    Study on the performance of membrane-based plate-and-frame humidifier for PEMFC system

  9. 熔融碳酸盐燃料电池系统中重整器性能分析

    Performance analysis of reformer in molten carbonate fuel cell systems

  10. 燃料电池系统分布式控制系统设计

    Design of Distributed Control System for Fuel Cell System

  11. 电动自行车用小型氢燃料电池系统

    Portable hydrogen fuel cell power system for electric bicycles

  12. 客车用燃料电池系统开发研究

    The Development of Fuel Cell System for City Bus

  13. 超级电容和燃料电池系统在太阳能贮存中的应用

    Application of Super Capacitor and Fuel Cell System in the Stock of Solar Energy

  14. 设计、组装了被动直接甲醇燃料电池系统,并与笔记本电脑联试成功。

    A passive DMFC system was designed and fabricated to power notebook computer successfully .

  15. 固体高分子燃料电池系统

    Polymer Electrolyte Fuel Cells ( PEFCs ) System

  16. 车用质子交换膜燃料电池系统的气场模拟及优化

    Modeling and Optimization of Gas Field in PEM Fuel Cell System for Vehicle Application

  17. 西门子公司的燃料电池系统示范工程

    Siemens Ltd. Demonstration Projects of Fuel Cell System Allan C Casanova , Stenhen E Vego

  18. 直接内部重整固体氧化物燃料电池系统的建模与控制研究

    Study on Modeling and Control of a Direct Internal Reforming Solid Oxide Fuel Cell System

  19. 微型氢空质子交换膜燃料电池系统

    Development of a mini H_2-air PEMFC system

  20. 便携式质子交换膜燃料电池系统集成研究

    Integrating study on portable PEMFC power system

  21. 对质子交换膜燃料电池系统建模和控制方法进行了综述。

    This paper review model and control of proton exchange membrane fuel cell ( PEMFC ) .

  22. 彼得的燃料电池系统十分可靠,已经可以满足不再使用电网的用户了。

    Peter 's reliable fuel cell system has already satisfied customers who are off the power grid .

  23. 燃料电池系统装置走向商业化

    Fuel Cell Systems Toward Commercialization

  24. 此结果可以作为论证燃料电池系统安全性的依据之一。

    The fault tree result shows that the risk is sufficiently low and the fuel cell system is safe .

  25. 实验结果表明,设计的通信协议和监控程序能够满足燃料电池系统的控制要求。

    Test results show that the communications protocol and monitoring program designed can meet the control requirements of fuel cell system .

  26. 文中归纳总结了内燃机混合化、动力传动系统混合化、燃料电池系统混合化的特点和概念。

    The features and concepts of hybridization in internal combustion engines , powertrain and fuel cell system are summed up first .

  27. 文章重点介绍了目前国外质子交换膜燃料电池系统开发及应用进展情况。

    The state of development and application progress of proton exchange membrane fuel cell system at present abroad is surveyed in particular .

  28. 燃料电池系统的建模与控制研究对于提高燃料电池系统的效率、动态响应能力及使用寿命等有着重要的意义。

    The research on modeling and control of fuel cell system is important to improve its efficiency , dynamic response performance and life .

  29. 北加利福尼亚州洪堡州立大学的彼得·雷曼决定建造一个可再生的氢燃料电池系统供某研究水族馆使用。

    Peter Lehman at Humboldt State University in Northern California decided to build a renewable hydrogen fuel cell system for a research aquarium .

  30. 通过淀粉来储存能量要比甲醇安全,因此目前它是小型燃料电池系统的不二选择。

    The starch could be a safer way of storing energy than using methanol , a current leading option for such small fuel-cell systems .