首页> 外文期刊>Journal of Electrochemical Energy Conversion and Storage >Optimizing a New Configuration of a Proton Exchange Membrane Fuel Cell Cycle With Burner and Reformer Through a Particle Swarm Optimization Algorithm for Residential Applications
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Optimizing a New Configuration of a Proton Exchange Membrane Fuel Cell Cycle With Burner and Reformer Through a Particle Swarm Optimization Algorithm for Residential Applications

机译:通过粒子群优化算法优化具有燃烧器和重整器的质子交换膜燃料电池循环的新配置,用于住宅应用

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摘要

The energy, exergy, and economic aspects are analyzed of a cycle consisting of a polymer fuel cell, a burner, a reformer, and a heat exchanger. Water is used for cooling the fuel cell, and the heated water is used for domestic consumption. The exergy and energy efficiencies of the cycle are calculated, and the effects of various cycle parameters on the exergy and energy efficiencies are investigated. To maximize the exergy efficiency while minimizing the cost of electricity generation by the fuel cell, the particle swarm optimization (PSO) algorithm is utilized. The results show that increasing the cooling water flow rate has the greatest effect on increasing the energy efficiency of the cycle, while increasing the burner temperature has the greatest effect on increasing the exergy efficiency of the cycle. Moreover, it is shown via multi-objective optimization of the proposed cycle that the exergy efficiency of the cycle increases by 31% and the cost of electricity generation decreases by 18% by applying optimized parameters.
机译:分析了由聚合物燃料电池,燃烧器,重整器和热交换器组成的循环的能量,漏洞和经济方面。水用于冷却燃料电池,加热的水用于国内消费。计算了循环的漏洞和能量效率,并研究了各种循环参数对漏胀和能量效率的影响。为了最大限度地提高高度效率,同时最小化燃料电池的发电成本,利用粒子群优化(PSO)算法。结果表明,增加冷却水流量对提高循环能量效率具有最大影响,同时增加燃烧器温度对提高循环的漏洞效率具有最大的影响。此外,通过对所提出的循环的多目标优化示出,即通过应用优化参数,循环的循环效率增加31%,发电成本减少了18%。

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