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Exergy Efficiency Profile of A 1 kW Open Cathode Fuel Cell with Pressure and Temperature Variations

机译:1 kW开放阴极燃料电池的高达效率曲线,具有压力和温度变化

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A proposed electric vehicle using proton exchange membrane (PEM) as clean energy have been attracting due to their high efficiency, high energy density and zero emissions. Standard exergy analysis of a mini urban vehicle powered by a 1 kW Proton Exchange Membrane (PEM) fuel cell engine system has been presented in this manuscript. A sensitivity analysis has been studied in order to evaluate the effect of variable operating temperatures and pressures on the physical exergy and efficiency of a 1 kW PEM fuel cell engine. The calculation of the physical and chemical exergies, mass flow rate and exergy efficiency are performed at temperature ratio (T/T0) and pressure ratio (P/P0) ranging from 1 to 1.15 and 1 to 4, respectively. The findings of the exergy analysis reveal that the overall efficiency of the fuel cell system was observed to be 61.3%. The result of the parametric study show that an increase in operating temperature and pressure results in an increase in exergy efficiency of the system.
机译:由于它们的高效率,高能量密度和零排放,因此使用质子交换膜(PEM)的提出的电动车辆作为清洁能量被吸引。这款手稿中提出了由1 kW质子交换膜(PEM)燃料电池发动机系统的迷你城市车辆的标准漏洞分析。研究了灵敏度分析,以评估可变工作温度和压力对1 kW PEM燃料电池发动机的物理驱散和效率的影响。物理和化学物质的计算,质量流量和高效率分别以1至1.15和1至4的温度比(T / T0)和压力比(P / P0)进行。 Deergy分析的结果表明,燃料电池系统的整体效率被观察到61.3%。参数研究的结果表明,工作温度和压力的增加导致系统的高度效率提高。

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