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Inverse analysis of an internal reforming solid oxide fuel cell system using simplex search method

机译:使用单纯形法对内部重整固体氧化物燃料电池系统进行反分析

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An inverse problem is solved for estimating fuel cell operating parameters such as current density, pressure and fuel flow rate (FFR) separately and then simultaneously two parameters in an internal reforming solid oxide fuel cell (IRSOFC). Initially, a mathematical model for the forward problem is developed to simulate the IRSOFC steady state operation and its performance in terms of power output and then an inverse problem is solved for recovering the above parameters using a simplex search minimization algorithm. The objective function (IRSOFC power) and the estimation accuracy are studied for the effects of initial guess values of the operating parameters and the number of iterations required for retrieval of these parameters. The objective function is represented by the sum of square of the error between a given IRSOFC power and the power evaluated based on some arbitrary guessed values of the unknowns which is then regularized in an iterative manner for solution of the inverse fuel cell problem. The study reveals that a multiple combinations of parameters (current density, operating pressure and FFR) exist which provides guidelines for selecting feasible combinations of these parameters required for meeting a given power requirement. The results show relatively good agreement between the inverse and exact solutions.
机译:解决了反问题,以分别估算燃料电池的运行参数,例如电流密度,压力和燃料流量(FFR),然后同时估算内部重整固体氧化物燃料电池(IRSOFC)中的两个参数。最初,针对正向问题建立了数学模型,以模拟IRSOFC稳态操作及其在功率输出方面的性能,然后使用单纯形搜索最小化算法解决了用于恢复上述参数的反问题。研究了目标函数(IRSOFC功率)和估计精度,以了解操作参数的初始猜测值的影响以及检索这些参数所需的迭代次数。目标函数由给定IRSOFC功率与基于未知数的任意猜测值评估的功率之间的误差平方和表示,然后将其以迭代方式进行正则化,以解决燃料电池逆问题。研究表明,存在多种参数组合(电流密度,工作压力和FFR),为选择满足给定功率要求的这些参数的可行组合提供了指南。结果表明,逆解与精确解之间具有较好的一致性。

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