首页> 外文会议>Proceedings of the 7th international conference on fuel cell science, engineering, and technology 2009 >DYNAMIC MODELING OF A SOLID OXIDE FUEL CELL COMBINED HEAT AND POWER SYSTEM WITH THERMAL STORAGE FOR COMMERCIAL BUILDING APPLICATIONS
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DYNAMIC MODELING OF A SOLID OXIDE FUEL CELL COMBINED HEAT AND POWER SYSTEM WITH THERMAL STORAGE FOR COMMERCIAL BUILDING APPLICATIONS

机译:商业建筑应用中具有热存储的固体氧化物燃料电池热电联产系统的动态建模

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A dynamic model of an integrated solid oxide fuel cell (SOFC) combined heat and power (CHP) system has been developed. The model was developed by modifying a previously developed generic 5 kW simple-cycle SOFC system. Fuel cell model modifications include changes in methods and constants for estimating over-potentials to better simulate a modern anode-supported planar SOFC. In addition to scaling up and modifying the fuel cell model, a thermal energy storage (TES) tank, exhaust gas duct burner and hot water exhaust gas recuperator model were integrated into the system model. The fully integrated system model can effectively simulate an SOFC-CHP system and evaluate the system performance and efficiency in meeting building electricity and heating demand profiles. For the present effort, dynamic building electricity and heating data from a hotel operated in Orange County, southern California during the months of July and August 2008 were analyzed.rnSpecifically, tradeoffs between SOFC performance and thermal energy storage have been investigated. The simulation results show that the SOFC-CHP system has the ability to follow the dynamic electrical load with appropriate system design and controls. Due to thermal power mismatch during electricity load-following operation, supplementary exhaust gas duct burner heat and/or a TES is required to independently dispatch the fuel cell power and meet the hotel heating demand. However, if the fuel cell is sufficiently sized, the system can achieve greater than 70% efficiency with only a small TES tank and without the need to fire the duct burner. The dynamic model and integrated SOFC-TES concept are shown to be useful for developing integrated CHP systems and to evaluate performance.
机译:建立了集成固体氧化物燃料电池(SOFC)热电联产(CHP)系统的动力学模型。该模型是通过修改先前开发的通用5 kW单循环SOFC系统而开发的。燃料电池模型的修改包括方法和常数的更改,以估计超电势,从而更好地模拟现代阳极支撑的平面SOFC。除了按比例放大和修改燃料电池模型外,还将热能存储(TES)箱,排气管道燃烧器和热水排气回热器模型集成到系统模型中。完全集成的系统模型可以有效地模拟SOFC-CHP系统,并评估系统性能和效率以满足建筑物的电力和供热需求。为了进行目前的工作,分析了2008年7月至2008年8月在加利福尼亚州南部奥兰治县经营的一家旅馆的动态建筑用电和供热数据。仿真结果表明,通过适当的系统设计和控制,SOFC-CHP系统具有跟踪动态电气负载的能力。由于在电力负荷跟踪操作期间热功率不匹配,因此需要补充排气管道燃烧器热量和/或TES以独立分配燃料电池功率并满足酒店供热需求。但是,如果燃料电池具有足够的尺寸,则仅使用一个小的TES储油箱,而无需点火管道燃烧器,该系统即可实现70%以上的效率。动态模型和集成的SOFC-TES概念对开发集成的CHP系统和评估性能很有用。

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