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 I: Detailed Experimental Temperature Measurement of an MT-SOFC Using an Avant-Garde High Temperature Wind Tunnel and Various Measurement Techniques
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The Use of a High Temperature Wind Tunnel for MT-SOFC Testing—Part I: Detailed Experimental Temperature Measurement of an MT-SOFC Using an Avant-Garde High Temperature Wind Tunnel and Various Measurement Techniques

机译:高温风洞在MT-SOFC测试中的使用-第一部分:使用前卫高温风洞和各种测量技术对MT-SOFC进行详细的实验温度测量

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The purpose of the first part of this study was to compare four different temperature measuring methods. The application of these tools for possible temperature monitoring or calibration of monitors of microtubular solid oxide fuel cells (MT-SOFCs) is explored. It was found that a thermographic camera is very useful to visualize the temperature gradient on the outside of a cell, while an electrochemical impedance spectroscopy method was useful for estimating the core temperature of a test cell. A standard thermocouple was also used in combination with the previous two methods. Furthermore, an inexpensive laser guided thermometer was also tested for MT-SOFC temperature measurement. This initial study has opened up a range of questions not only about the effect of the experimental apparatus on the measurement results but also about the radial temperature distribution through a MT-SOFC in a working mode. Both these topics will be further investigated in part II of this study through a computational fluid dynamics study. This should provide additional interesting information about any differences between testing single cells and those within a bundle of cells. The discussed results are expected to be mainly temperature related, which should have direct consequences on power output and optimized gas inlet temperatures.
机译:本研究第一部分的目的是比较四种不同的温度测量方法。探索了这些工具在微管固体氧化物燃料电池(MT-SOFC)的可能温度监测或监测仪校准中的应用。发现热像仪对于可视化电池外部的温度梯度非常有用,而电化学阻抗谱法可用于估计测试电池的核心温度。标准的热电偶也与前两种方法结合使用。此外,还对MT-SOFC温度测量进行了廉价的激光引导式温度计的测试。这项初步研究不仅提出了关于实验装置对测量结果的影响,而且还涉及在工作模式下通过MT-SOFC进行的径向温度分布的一系列问题。这两个主题将在本研究的第二部分中通过计算流体动力学研究得到进一步研究。这应该提供有关测试单个单元格和一组单元格之间的任何差异的其他有趣信息。预期讨论的结果将主要与温度有关,这将直接影响功率输出和优化的进气温度。

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    Author(s):V. LawlorDepartment of Eco-Energy, Upper Austria University of Applied Science, A-4600 Wels, Austria, Department of Manufacturing and Mechanical Engineering, Dublin City University, Dublin 9, IrelandG. Zauner and C. HochenauerDepartment of Eco-Energy, Upper Austria University of Applied Science, A-4600 Wels, AustriaA. MarianiDipartimento di Ingegneria Meccanica, Università di Roma Tor Vergata, 00133 Rome, ItalyS. GriesserDepartment of Eco-Energy, Upper Austria University of Applied Science, A-4600 Wels, AustriaJ. G. CartonDepartment of Manufacturing and Mechanical Engineering, Dublin City University, Dublin 9, IrelandK. Klein and S. KuehneZelleron GmbH, Collenbusch Strasse. 22, 01324 Dresden, GermanyA. G. OlabiDepartment of Manufacturing and Mechanical Engineering, Dublin City University, Dublin 9, IrelandS. CordinerDipartimento di Ingegneria Meccanica, Università di Roma Tor Vergata, 00133 Rome, ItalyD. MeissnerDepartment of Eco-Energy, Upper Austria University of Applied Science, A-4600 Wels, Austria, Tallinn Technical University, Ehitajate tee 5, Tallinn 19086, EstoniaG. BuchingerDepartment of Eco-Energy, Upper Austria University of Applied Science, A-4600 Wels, Austria, eZelleron GmbH, Collenbusch Strasse. 22, 01324 Dresden, Germany,;

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  • 正文语种 eng
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  • 关键词

    MT-SOFC ,High Temperature Wind Tunnel;

    机译:MT-SOFC;高温风洞;
  • 入库时间 2022-08-17 13:23:44

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