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Simulation of SOFCs based power generation system using Aspen

机译:基于SOFC的SOFCS使用ASPEN模拟

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摘要

This study presents a thermodynamic Aspen simulation model for Solid Oxide Fuel Cells, SOFCs, based power generation system. In the first step, a steady-state SOFCs system model was developed. The model includes the electrochemistry and the diffusion phenomena. The electrochemical model gives good agreement with experimental data in a wide operating range. Then, a parametric study has been conducted to estimate effects of the oxygen to carbon ratio, O/C, on reformer temperature, fuel cell temperature, fuel utilization, overall fuel cell performance, and the results are discussed in this paper. In the second step, a dynamic analysis of SOFCs characteristic has been developed. The aim of dynamic modelling was to find the response of the system against the fuel utilization and the O/C ratio variations. From the simulations, it was concluded that both developed models in the steady and dynamic state were reasonably accurate and can be used for system level optimization studies of the SOFC based power generation system.
机译:该研究介绍了一种用于固体氧化物燃料电池,SOFCS,基于发电系统的热力学ASPEN模拟模型。在第一步中,开发了稳态SOFCS系统模型。该模型包括电化学和扩散现象。电化学模型与宽工作范围内的实验数据提供良好的一致性。然后,已经进行了参数研究以估计氧气与碳比,O / C在重整器温度,燃料电池温度,燃料利用,整体燃料电池性能和结果中的影响。在第二步中,已经开发了对SOFCS特征的动态分析。动态建模的目的是找到系统对燃料利用和O / C比变异的响应。从模拟中,得出结论,稳定和动态状态的开发模型都是合理的准确性,可用于基于SOFC的发电系统的系统级优化研究。

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