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涡轮增压机对5kW PEMFC电堆的影响
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作者 仲志丹 杨晴霞 +1 位作者 王冰雪 党国辉 《太阳能学报》 EI CAS CSCD 北大核心 2013年第7期1295-1299,共5页
以采用混合增压空气供给系统的质子交换膜燃料电池为研究对象,建立PEMFC电堆经验模型和混合增压空气供给系统模型,利用Matlab软件对电堆模型以及空气供给系统模型进行仿真。分析结果表明:5kW PEMFC宜采用低压空气供给系统,且电堆的最大... 以采用混合增压空气供给系统的质子交换膜燃料电池为研究对象,建立PEMFC电堆经验模型和混合增压空气供给系统模型,利用Matlab软件对电堆模型以及空气供给系统模型进行仿真。分析结果表明:5kW PEMFC宜采用低压空气供给系统,且电堆的最大等效输出功率点分布在废气能利用率较高的地方。 展开更多
关键词 5kW PEMFC 混合增压系统 废气能利用率 最大等效输出功率
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碱性燃料电池-温差热电制冷混合系统的性能分析
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作者 焦恺彬 黄跃武 《东华大学学报(自然科学版)》 CAS 北大核心 2020年第4期628-635,共8页
建立了由碱性燃料电池(alkaline fuel cell,AFC)、热电发电器、热电制冷器和一组板翅式热交换器组成的混合系统模型。考虑系统的电化学和热力学不可逆性损失,导出了混合系统的等效输出功率和效率的表达式,确定了燃料电池电流密度的优化... 建立了由碱性燃料电池(alkaline fuel cell,AFC)、热电发电器、热电制冷器和一组板翅式热交换器组成的混合系统模型。考虑系统的电化学和热力学不可逆性损失,导出了混合系统的等效输出功率和效率的表达式,确定了燃料电池电流密度的优化区间,讨论了工作压力、工作温度、热电元件数量、热电元件传热系数、板翅式热交换器传热系数对混合系统的等效输出功率和效率的影响。结果表明,混合系统的最大输出功率密度及对应的效率,相比单独的碱性燃料电池分别提高了7.56%和6.40%,相比无板翅式热交换器时分别提高了7.55%和8.04%。所得结果可为碱性燃料电池温差热电制冷混合系统的优化设计提供理论依据。 展开更多
关键词 热电制冷器 碱性燃料电池 热电发电器 板翅式热交换器 等效输出功率
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Vacuum degree effects on betavoltaics irradiated by ^(63)Ni with differently apparent activity densities 被引量:5
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作者 LIU YunPeng XU ZhiHeng +1 位作者 WANG Hao TANG XiaoBin 《Science China(Technological Sciences)》 SCIE EI CAS CSCD 2017年第2期282-288,共7页
For many current betavoltaics, beta sources and PN junction energy conversion units are separated. The air gap between the two parts could stop part of decay beta particles, which results in inefficient performance of... For many current betavoltaics, beta sources and PN junction energy conversion units are separated. The air gap between the two parts could stop part of decay beta particles, which results in inefficient performance of the betavoltaic. By employing 63Ni with an apparent emission activity density of 7.26×10~7 and 1.81×10~8 Bq cm^(-2), betavoltaic performance levels were calculated at a vacuum degree range of 1×10~5 to 1×10^(-1) Pa and measured at 1.0×10~5 and 1.0×10~4 Pa, respectively. Results show that betavoltaic performance levels improve significantly as the vacuum degree increases. The maximum output power (P_(max)) exhibits the largest change, followed by short-circuit current (I_(sc)), open-circuit voltage (V_(oc)), and fill factor. The vacuum degree effects on Isc, Voc,and Pmax of the betavoltaic with low apparent activity density 63Ni are more significant than those of the betavoltaic with high apparent activity density ^(63)Ni. Moreover, the improved efficiencies of the measured performances are larger than the calculated efficiencies because of the low ratio of Isc and reverse saturation current (I_0). The values of I0, ideality factor, and shunt resistance were estimated to modify the equivalent circuit model. The calculation results based on this model are closer to the measurement results. The results of this research can provide a theoretical foundation and experimental reference for the study of vacuum degree effects on betavoltaics of the same kind. 展开更多
关键词 vacuum degree betavoltaic apparent activity density energy conversion unit MCNP5
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