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A NUMERICAL MODEL FOR SOLID OXIDE FUEL CELLS

机译:固体氧化物燃料电池的数值模型

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摘要

Fuel cells have been very much studied in the last few years as promising future energy conversion systems. In fact, these systems have a number of advantages with respect to more traditional energy conversion systems, such as, for instance, higher potential efficiency, flexibility for distributed generation, and reduced emissions, Accurate and physically representative numerical models are essential for the future development of energy conversion systems based on fuel cell technology. In the present paper, a general and detailed numerical model is proposed, in which all the quantities of interest are calculated locally, on the basis of general governing equations for the phenomena involved. The model proposed in this work is based on the solution of the appropriate set of partial differential equations that describe the phenomena that occur in the different parts of the fuel cell: 1) anodic compartment, which includes fuel channel, electrode and catalyst layer; 2) electrolyte; and 3) cathode compartment. To solve the momentum, energy and species conservation equations in the anodic and cathodic compartments, a finite element procedure is employed, based on the Characteristic Based Split (CBS) algorithm. The CBS, thanks to its generality and modularity, is able to successfully predict fuel cell performances. The results obtained from the simulations show a good agreement with other data available in the literature.
机译:在过去的几年中,已经对燃料电池进行了很多研究,作为有前途的未来能源转换系统。实际上,与更传统的能量转换系统相比,这些系统具有许多优势,例如,更高的潜在效率,分布式发电的灵活性以及减少的排放量,准确且具有物理代表性的数值模型对于未来的发展至关重要。基于燃料电池技术的能量转换系统在本文中,提出了一个通用而详细的数值模型,其中所有感兴趣的量都是根据所涉及现象的一般控制方程在本地计算的。在这项工作中提出的模型是基于一组适当的偏微分方程的解,这些偏微分方程描述了发生在燃料电池不同部分的现象:1)阳极室,包括燃料通道,电极和催化剂层; 2)电解质; 3)阴极室。为了解决阳极和阴极隔室内的动量,能量和物种守恒方程,基于基于特征的分裂(CBS)算法,采用了有限元程序。由于其通用性和模块化,CBS能够成功预测燃料电池的性能。从模拟获得的结果表明与文献中的其他数据有很好的一致性。

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