首页> 外文期刊>Journal of Fuel Cell Science and Technology >The Use of a High Temperature Wind Tunnel for MT-SOFC Testing—Part II: Use of Computational Fluid Dynamics Software in Order to Study Previous Measurements
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The Use of a High Temperature Wind Tunnel for MT-SOFC Testing—Part II: Use of Computational Fluid Dynamics Software in Order to Study Previous Measurements

机译:使用高温风洞进行MT-SOFC测试-第二部分:使用计算流体动力学软件来研究以前的测量

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Micro-tubular solid oxide fuel cells (MT-SOFCs) are a much smaller version of larger tubular SOFCs. They are operational within seconds and allow a higher power density per volume than the larger version. Hence they are a potential technology for automotive, auxiliary and small scale power supply devices. In this study a commercially available computational fluid dynamic (CFD) software program was used to predict a MT-SOFCs performance when located inside a high temperature wind tunnel experimental apparatus. In Part I, experimentally measured temperature profiles were recorded via thermo-graphic analyses and I/V curves. These measurements were used in this study to establish the predictability and validity of the CFD code and furthermore understand the MT-SOFC attributes measured in Part I. A maximum 4% I/V curve deviation and 6 K temperature deviation between the experimentally measured and model predicted results was observed. Thus, the model predicted the MT-SOFCs performance in the experimental environment very accurately. A very critical observation was the current density and temperature profile across the MT-SOFC that was strongly dependent on the distance from the hydrogen/fuel inlet. Not only was the model validated but also a grid and quantitative solution analysis is explicitly shown and discussed. This resulted in the optimum grid density and the indication that a normally undesirable high grid aspect ratio is acceptable for similar MT-SOFC modeling. These initial simulations and grid/solution analysis are the prerequisite before performing a further study including multiple MT-SOFCs within a stack using different fuels is also envisaged.
机译:微管固体氧化物燃料电池(MT-SOFC)是大型管状SOFC的小得多的版本。它们可以在几秒钟内运行,并且比较大的版本允许更高的单位体积功率密度。因此,它们是用于汽车,辅助和小型电源设备的潜在技术。在这项研究中,使用商用的计算流体力学(CFD)软件程序来预测MT-SOFC在高温风洞实验装置内部时的性能。在第一部分中,通过热成像分析和I / V曲线记录了实验测量的温度曲线。在本研究中使用这些测量值来确定CFD代码的可预测性和有效性,并进一步了解在第I部分中测量的MT-SOFC属性。在实验测量值和模型之间,最大I / V曲线偏差和6 K温度偏差观察到预测结果。因此,该模型非常准确地预测了MT-SOFC在实验环境中的性能。一个非常关键的观察结果是整个MT-SOFC上的电流密度和温度曲线,这与离氢气/燃料入口的距离密切相关。不仅对模型进行了验证,而且还明确显示并讨论了网格和定量解决方案分析。这导致最佳的网格密度,并表明对于类似的MT-SOFC建模,通常不希望有的高网格纵横比是可以接受的。这些初步的模拟和网格/解决方案分析是进行进一步研究之前的先决条件,该研究还包括在烟囱中使用不同燃料的多种MT-SOFC。

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