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Experimental and theoretical study of thermoelectric generator waste heat recovery model for an ultra-low temperature PEM fuel cell powered vehicle

机译:超低温PEM燃料电池汽车热电发电机余热回收模型的实验和理论研究

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摘要

An energy recovery method for ultra-low waste heat temperature Proton Exchange Membrane (PEM) fuel cell is presented utilizing a combined thermoelectric generator (TEG), heat pipe and heat sink system. The aim is to analyze the fundamental characteristics through experimental works and obtain a steady-state model of the system under the scenario of a mini hydrogen fuel cell vehicle. A test bench was developed consisting of a 2 kW open-cathode PEM fuel cell and a single TEG. A thermal resistance network model was also developed and validated. The main variables were the TEG cooling modes and orientation of the TEG towards the heat flow. At 37 degrees C waste heat temperature, the highest voltage and power output of 25.7 mV and 218 mW respectively were obtained via forced convection cooling and normal flow orientation. The results obtained are unique as it positively showed that the combined use of TEG, heat pipe and heat sink on a vehicle would offset the ultra-low waste heat temperature from a PEM fuel cell. Successful characterization of this system and validation of the model would also allow the system to be further developed for higher performance and contribute to sustainability of PEM fuel cell systems. (C) 2019 Elsevier Ltd. All rights reserved.
机译:提出了一种结合热电发电机(TEG),热管和散热器系统的超低余热温度质子交换膜(PEM)燃料电池的能量回收方法。目的是通过实验工作来分析基本特性,并在小型氢燃料电池车的情况下获得系统的稳态模型。开发了一个试验台,该试验台由一个2 kW的开放式阴极PEM燃料电池和一个TEG组成。还开发并验证了热阻网络模型。主要变量是TEG冷却模式和TEG朝向热流的方向。在37摄氏度的废热温度下,通过强制对流冷却和正常流动方向分别获得了25.7 mV和218 mW的最高电压和功率输出。获得的结果是独特的,因为它肯定地表明,在车辆上结合使用TEG,热管和散热器将抵消PEM燃料电池的超低废热温度。该系统的成功表征和模型验证也将使该系统得以进一步开发以获得更高的性能,并有助于PEM燃料电池系统的可持续性。 (C)2019 Elsevier Ltd.保留所有权利。

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