首页> 外文会议>ASME turbo expo >DESIGN AND PERFORMANCE ANALYSIS OF A SOLID OXIDE FUEL CELL / GAS TURBINE (SOFC/GT) HYBRID SYSTEM USED IN COMBINED COOLING HEATING AND POWER SYSTEM
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DESIGN AND PERFORMANCE ANALYSIS OF A SOLID OXIDE FUEL CELL / GAS TURBINE (SOFC/GT) HYBRID SYSTEM USED IN COMBINED COOLING HEATING AND POWER SYSTEM

机译:用于组合冷却加热和电力系统的固体氧化物燃料电池/燃气轮机(SOFC / GT)混合系统的设计与性能分析

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With high efficiency and very low emissions, fuel cells have been one of the choices of research in current energy development. The Solid Oxide Fuel Cell (SOFC) is a high temperature type fuel cell. It has the characteristic of very high operating temperature l,027°C (l,300K). The SOFC has the main advantage of very high performance efficiency (over 50%), but also has very high exhaust temperature. Current udies point out that the combination of SOFC and Gas Turbine (GT) can produce efficiency more than 60%. The exhaust temperature of this hybrid power system can be as high as 227 - 327°C (500 - 600K). With this waste heat utilized, we can further improve the overall efficiency of the system. A simulation program of SOFC/GT system and the introduction of the concept of Combined Cooling, Heating, and Power System (CCHP) have been used in this study. The waste heat of SOFC/GT hybrid power generation system was used as the heat source to drive an Absorption Refrigeration System (ARS) for cooling. This waste heat enables the SOFC/GT to generate electricity in the system while providing additional cooling and heating capacity. Therefore, we have a combined CCHP system developed using three major modules which are SOFC, GT, and ARS modules. The SOFC module was verified by our test data. The GT and SOFC/GT modules were compared to a commercial code and literature data. Both the single- and double- effect ARS modules were verified with available literature results. Finally, the CCHP analysis simulation system, which combines SOFC, GT, and ARS, has been completed. With this CCHP configuration system, the fuel usability of the system by our definition could be above 100%, especially for the double effect ARS. This analysis system has demonstrated to be a useful tool for future CCHP designs with SOFC/GT systems.
机译:凭借高效率和极低排放,燃料电池是当前能源发展研究的选择之一。固体氧化物燃料电池(SOFC)是高温型燃料电池。它具有非常高的工作温度L,027°C(L,300K)的特性。 SOFC具有非常高的性能效率(超过50%)的主要优点,但还具有非常高的排气温度。目前的UDIES指出,SOFC和燃气轮机(GT)的组合可以产生超过60%的效率。该混合动力系统的排气温度可以高达227-227°C(500-600K)。通过使用这种废热,我们可以进一步提高系统的整体效率。本研究已经使用了SOFC / GT系统的模拟程序和引入组合冷却,加热和电力系统(CCHP)的概念。使用SOFC / GT混合发电系统的废热用作热源,以驱动吸收制冷系统(ARS)进行冷却。这种废热使得SOFC / GT能够在系统中产生电力,同时提供额外的冷却和加热能力。因此,我们具有使用三个主要模块开发的组合CCHP系统,这些主要模块是SOFC,GT和ARS模块。我们的测试数据验证了SOFC模块。将GT和SOFC / GT模块与商业代码和文献数据进行比较。单一和双效果ARS模块都以可用的文献结果验证。最后,结合SOFC,GT和ARS的CCHP分析模拟系统已经完成。利用此CCHP配置系统,通过我们定义的系统的燃料可用性可以高于100%,特别是对于双重效果ARS。该分析系统已经证明是未来CCHP设计与SOFC / GT系统的有用工具。

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