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Performance Analysis of Ground-Based Static Test for Hydrogen Fuel Cell Propulsion System

机译:氢气燃料电池推进系统地面静态试验性能分析

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Combustion engines are increasingly being regarded as unsustainable in the long-term, because of their negative impact on the environment (e.g. pollution, green-house gas production, and global warming). This has generated worldwide interest in propulsion systems based on renewable alternative energy sources for the future. Fuel cell technology is a promising alternative power source because of their high specific energy, efficiency, and reliability. Hydrogen proton exchange membrane fuel cell (PEMFC) in particular produces zero carbon emissions by having only water vapor as the exhaust. Although there has been much research by automotive industries in developing fuel cell hybrid electric vehicles (FCHEV), fuel cell research for aircraft application is relatively new. Therefore, there is a pressing need for research related to development of aircraft fuel cell electric propulsion systems. University Teknologi MARA (UiTM) is conducting static experiments on different configurations of fuel cell electric propulsion systems. The objective of this study is to understand the behavior of a PEMFC propulsion system under a ground-based static test. A 1 kW PEMFC was used as the main power source for a brushless DC motor electric propulsion system. The electrical characteristics, rotational speed, and thrust data were presented for two different electrical propellers. Analyses of the results were used to characterize the effectiveness of the fuel cell system and its balance of plant. The results were beneficial as a predictive method on defining the optimum electric propulsion system performance needed for future actual flight development.
机译:由于它们对环境的负面影响(例如,污染,绿屋气体生产和全球变暖),燃烧发动机越来越不可持续地被视为不可持续的。这在基于未来可再生替代能源的推进系统中产生了全球兴趣。由于其高能量,效率和可靠性,燃料电池技术是一个有前途的替代电源。氢质子交换膜燃料电池(PEMFC)特别是通过仅具有水蒸气作为排气产生零碳排放。虽然汽车行业在开发燃料电池混合动力电动车(FCHEV)方面具有多大研究,但飞机应用的燃料电池研究相对较新。因此,存在与飞机燃料电池电动推进系统的开发有关的研究。大学特肯玛拉(UITM)正在对燃料电池电动推进系统的不同配置进行静态实验。本研究的目的是了解PEMFC推进系统在基于地面的静态试验中的行为。 1 kW PEMFC用作无刷直流电动推进系统的主电源。为两个不同的电螺旋桨提出了电气特性,转速和推力数据。结果分析用于表征燃料电池系统的有效性及其平衡。结果是有益的,作为定义未来实际飞行开发所需的最佳电力推进系统性能的预测方法。

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