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ANALYSIS OF THE MEMBRANE HUMIDIFIER FAULT MODES AND ITS EFFECTS ON THE PERFORMANCE OF PEMFC

机译:膜加湿器故障模式分析及其对PEMFC性能的影响

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Polymer electrolyte membrane fuel cell is one of the most promising energy sources in the future because of its high efficiency and eco friendly property. However, there are several problems to solve in order to commercialize the PEM fuel cell such as heat management, cold start and humidification. Many researchers and companies try to improve the performance of the fuel cell, so the performance of PEMFC is getting better. Another important problem to improve in PEMFC is durability. Durability can be one of the most important factors to commercialize the PEMFC.Usually products produced by companies using fuel cell consist of several parts such as humidifier, heating source, air blower and so on. Usually it is called balance of plant and in order to operate it proper, each part of BOP should operate in a right way. When one part of BOP is fault, the performance of PEMFC can be decreased and the amount of decreased power sometimes can not be large because it is very small amounts. However, the effects of the fault can destroy another part of BOP, so detecting the fault of BOP is very important work.In this study, numerical analysis about the membrane humidifier performed by assuming several fault modes and the performances were recorded. Membrane humidifier using in automobile and vibration, shock from the outer condition can make humidifier malfunction. Various fault modes of membrane humidifier were considered and its effect on performance was portrayed by power curve and I-V curve.The results of this simulation showed that the good performance of membrane humidifier is important factor to getmore power from PEMFC and some experimental studies are need to evaluate this simulation result.
机译:高分子电解质膜燃料电池由于其高效和环保特性,是未来最有前途的能源之一。然而,为了使PEM燃料电池商业化,存在一些问题需要解决,例如热管理,冷启动和加湿。许多研究人员和公司试图改善燃料电池的性能,因此PEMFC的性能越来越好。 PEMFC中另一个需要改进的重要问题是耐久性。耐用性可能是使PEMFC商业化的最重要因素之一。 通常,由公司使用燃料电池生产的产品由加湿器,加热源,鼓风机等几部分组成。通常将其称为工厂平衡,并且为了使其正常运行,BOP的每个部分都应以正确的方式运行。当BOP的一部分出现故障时,PEMFC的性能可能会降低,并且降低的功率有时可能不会很大,因为它的数量非常小。但是,故障的影响会破坏BOP的另一部分,因此检测BOP的故障是非常重要的工作。 在这项研究中,通过假设几种故障模式和性能进行了膜加湿器的数值分析。在汽车中使用的膜式加湿器和振动,外界条件的冲击会使加湿器发生故障。考虑了膜式加湿器的各种故障模式,并通过功率曲线和I-V曲线描绘了其对性能的影响。 仿真结果表明,膜式加湿器的良好性能是获得加湿器的重要因素。 PEMFC的功能更强大,需要一些实验研究来评估此仿真结果。

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