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首页> 外文期刊>Applied Energy >Improved PEM fuel cell system operation with cascaded stack and ejector-based recirculation
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Improved PEM fuel cell system operation with cascaded stack and ejector-based recirculation

机译:具有级联堆和基于喷射器的再循环功能,改善了PEM燃料电池系统的运行

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摘要

An automotive fuel cell system combining a variable-geometry ejector and a fuel cell stack with cascaded anode is presented. It allows to decrease the minimum operational power range by increasing recirculation performance of the ejector. Design boundaries for the fuel cell anode are used to investigate four different designs of fuel cell stack with cascaded anode. For these designs, ejectors with variable-geometry are developed and their performance in combination with the fuel cell stacks are investigated using CFD simulations. A combination of a variable-geometry ejector with a two stage cascaded stack design is shown to exhibit a better recirculation performance at low power outputs than systems with conventional stack design. It is demonstrated experimentally that the new fuel cell design achieves similar performance and stability on a test bench compared to conventional stack design. (C) 2017 Elsevier Ltd. All rights reserved.
机译:提出了一种结合可变几何形状喷射器和具有级联阳极的燃料电池堆的汽车燃料电池系统。通过提高喷射器的再循环性能,可以减小最小工作功率范围。燃料电池阳极的设计边界用于研究具有级联阳极的燃料电池堆的四种不同设计。对于这些设计,开发了具有可变几何形状的喷射器,并使用CFD模拟研究了其与燃料电池堆结合的性能。与具有常规烟囱设计的系统相比,可变几何形状喷射器与两级级联烟囱设计的组合显示出在低功率输出下表现出更好的再循环性能。实验证明,与传统的电池堆设计相比,新的燃料电池设计在测试台上实现了相似的性能和稳定性。 (C)2017 Elsevier Ltd.保留所有权利。

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