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COMPARATIVE INVESTIGATION ON WASTE HEAT DRIVEN AIR SUPPLY SYSTEMS FOR PEM FUEL CELLS

机译:PEM燃料电池废热驱动空气供应系统的比较研究

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The air supply system plays a key role for Proton Exchange Membrane (PEM) fuel cells. The performance of PEM fuel cells can be significantly improved by increasing the air supply pressure and air stoichiometric ratio. However, the increased electrical power consumption of the conventional motor driven air compressor operated at higher pressure would reduce the overall efficiency of the PEM fuel cell system. This paper proposes three novel air supply systems in which the compressor is driven by the waste heat recovered by the Organic Rankine Cycle (ORC) from the stack cooling water and the exhaust gas. The influences of air supply pressure and air stoichiometric ratio on the PEM fuel cell performance and exhaust gas are investigated through the fuel cell stack model. The performance analysis of the air supply system is carried out using a thermodynamic simulation model. And the proposed three air systems are compared to an air system driven by the exhaust gas and the assisted motor. Results show that both the air pressure and air stoichiometric ratio are improved significantly. The gross output electric power and the net efficiency of the PEM fuel cells are also improved greatly because of higher operating pressure and the elimination of the compressor power consumption. Among the 3 proposed air systems, the air system which has a self-circulation to maintain the stack temperature has the best performance and is most stable in operation.
机译:空气供应系统对质子交换膜(PEM)燃料电池起着关键作用。通过增加空气供应压力和空气化学计量比,可以显着提高PEM燃料电池的性能。然而,在较高压力下操作的传统电动机驱动空气压缩机的增加的电力消耗将降低PEM燃料电池系统的整体效率。本文提出了三种新型空气供应系统,其中压缩机由来自堆叠冷却水和废气的有机朗肯循环(ORC)回收的废热驱动。通过燃料电池堆模型研究了空气供应压力和空气化学计量比对PEM燃料电池性能和废气的影响。使用热力学仿真模型进行空气供应系统的性能分析。所提出的三个空气系统与由废气和辅助电动机驱动的空气系统进行比较。结果表明,空气压力和空气化学计量比率显着提高。由于更高的操作压力和消除压缩机功耗,因此,PEM燃料电池的总输出电力和净效率也得到了大大提高。在3个提议的空气系统中,具有自循环以维持堆叠温度的空气系统具有最佳性能,并且在操作中最稳定。

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