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Validation of a Waste Heat Recovery Model for a lkW PEM Fuel Cell using Thermoelectric Generator

机译:热电发电机验证LKW PEM燃料电池的废热恢复模型

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Fuel cell is a device that generates electricity through electrochemical reaction between hydrogen and oxygen. A major by-product of the exothermic reaction is waste heat. The recovery of this waste heat has been subject to research on order to improve the overall energy utilization. However, nearly all of the studies concentrate on high temperature fuel cells using advanced thermodynamic cycles due to the high quality of waste heat. The method, characteristics and challenges in harvesting waste heat from a low temperature fuel cell using a direct energy conversion device is explored in this publication. A heat recovery system for an open cathode lkW Proton Exchange Membrane fuel cell (PEM FC) was developed using a single unit of thermoelectric generator (TEG) attached to a heat pipe. Power output of the fuel cell was varied to obtain the performance of TEG at different stack temperatures. Natural and forced convections modes of cooling were applied to the TEG cold side. This is to simulate the conditions of a mini fuel cell vehicle at rest and in motion. The experimental results were analysed and a mathematical model based on the thermal circuit analogy was developed and compared. Forced convection mode resulted in higher temperature difference, output voltage and maximum power which are 3.3°C, 33.5 mV, and 113.96mW respectively. The heat recovery system for 1 kW Proton Exchange Membrane fuel cell (PEM FC) using single TEG was successfully established and improved the electrical production of fuel cell. Moreover, the experimental results obtained was in a good agreement with theoretical results.
机译:燃料电池是一种通过氢气和氧气之间的电化学反应产生电的装置。放热反应的主要副产物是浪费。这种废物热量的恢复已经有待提高整体能源利用的研究。然而,几乎所有的研究都集中在高温燃料电池上使用先进的热力学循环,由于高品质的废热。在本出版物中探讨了使用直接能量转换装置从低温燃料电池收获废热的方法,特征和挑战。使用连接到热管的单个热电发电机(TEG)开发了用于开放阴极LKW质子交换膜燃料电池(PEM FC)的热回收系统。燃料电池的功率输出变化以在不同的堆叠温度下获得TEG的性能。天然和强制对流的冷却方式施加到TEG冷侧。这是为了在休息和运动中模拟迷你燃料电池车的条件。分析了实验结果,并开发了基于热电路类比的数学模型。强制对流模式导致温度差,输出电压和最大功率分别为3.3°C,33.5 mV和113.96MW。成功地建立了使用单层TEG的1kW质子交换膜燃料电池(PEM FC)的热回收系统,并改善了燃料电池的电气产生。此外,获得的实验结果与理论结果一致。

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