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首页> 外文期刊>Journal of power sources >Engine-integrated solid oxide fuel cells for efficient electrical power generation on aircraft
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Engine-integrated solid oxide fuel cells for efficient electrical power generation on aircraft

机译:发动机集成的固体氧化物燃料电池,可在飞机上高效发电

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This work investigates the use of engine-integrated catalytic partial oxidation (CPOx) reactors and solid oxide fuel cells (SOFCs) to reduce fuel burn in vehicles with large electrical loads like sensor-laden un-manned air vehicles. Thermodynamic models of SOFCs, CPOx reactors, and three gas turbine (GT) engine types (turbojet, combined exhaust turbofan, separate exhaust turbofan) are developed and checked against relevant data and source material. Fuel efficiency is increased by 4% and 8% in the 50 kW and 90 kW separate exhaust turbofan systems respectively at only modest cost in specific power (8% and 13% reductions respectively). Similar results are achieved in other engine types. An additional benefit of hybridization is the ability to provide more electric power (factors of 3 or more in some cases) than generator-based systems before encountering turbine inlet temperature limits. A sensitivity analysis shows that the most important parameters affecting the system's performance are operating voltage, percent fuel oxidation, and SOFC assembly air flows. Taken together, this study shows that it is possible to create a GT-SOFC hybrid where the GT mitigates balance of plant losses and the SOFC raises overall system efficiency. The result is a synergistic system with better overall performance than stand-alone components. (C) 2015 Elsevier B.V. All rights reserved.
机译:这项工作研究了如何使用发动机集成的催化部分氧化(CPOx)反应堆和固体氧化物燃料电池(SOFC)来减少载有传感器负载的无人飞行器等具有较大电气负载的车辆的燃料消耗。开发了SOFC,CPOx反应堆和三种燃气涡轮(GT)发动机(涡轮喷气发动机,组合式排气涡轮风扇,分离式排气涡轮风扇)的热力学模型,并根据相关数据和原始资料进行了检查。在50 kW和90 kW的独立排气涡轮风扇系统中,燃油效率分别提高了4%和8%,而单位功率的成本却只有适度的降低(分别降低了8%和13%)。在其他类型的发动机上也获得了类似的结果。杂交的另一个好处是,在遇到涡轮机入口温度极限之前,与基于发电机的系统相比,能够提供更多的电力(在某些情况下为3或更多)。灵敏度分析表明,影响系统性能的最重要参数是工作电压,燃料氧化百分比和SOFC组件空气流量。两者合计,这项研究表明可以创建GT-SOFC混合动力,其中GT可以减轻工厂损失的平衡,而SOFC可以提高整体系统效率。结果是一个协同系统,其整体性能比独立组件更好。 (C)2015 Elsevier B.V.保留所有权利。

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