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Diagnostics and Prognostics-Oriented Modeling of an NGSR Fuel Processor for Application in SOFC Systems

机译:用于SOFC系统的NGSR燃料处理器的面向诊断和预测的建模

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摘要

Diagnostics and prognostics of natural gas steam reforming (NGSR) reactors are of utmost importance for solid oxide fuel cell (SOFC) systems, where a fuel processor fault can cause damage to the SOFC stack. Most common faults are due to carbon deposition. We investigate this phenomenon through a model based on microscopic mass, energy and momentum balances of a tubular NGSR reactor. The model includes a detailed local reaction kinetics specific for Ni-based catalysts, and is integrated numerically using a finite element method (FEM) implemented through COMSOL Multiphysics 5.2. Results obtained from the simulation of a laboratory scale reactor are validated on the basis of literature data. Furthermore, the model is applied to an NGSR fuel processor designed for an 1.1 kW SOFC system. The model allows to identify the area where carbon deposition is expected to occur, which is a key feature in view of developing specific diagnostic and prognostic tools. The simulation results demonstrate that safety criteria based on the feedstock steam to carbon (S/C) ratio can be misleading in a number of operating conditions.
机译:天然气蒸汽重整(NGSR)反应堆的诊断和预测对于固体氧化物燃料电池(SOFC)系统至关重要,在该系统中,燃料处理器故障可能会损坏SOFC堆。最常见的故障是由于碳沉积。我们通过基于管状NGSR反应器的微观质量,能量和动量平衡的模型研究此现象。该模型包括特定于Ni基催化剂的详细局部反应动力学,并且使用通过COMSOL Multiphysics 5.2实现的有限元方法(FEM)在数值上进行了集成。从实验室规模的反应器模拟获得的结果在文献数据的基础上得到验证。此外,该模型还应用于为1.1 kW SOFC系统设计的NGSR燃料处理器。该模型可以识别预期发生碳沉积的区域,这是开发特定诊断和预测工具的关键特征。仿真结果表明,基于原料蒸汽碳比(S / C)的安全标准在许多操作条件下可能会产生误导。

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