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The Error in Gas Temperature Measurements with Thermocouples: Application on an SOFC System Heat Exchanger

机译:用热电偶测量气体温度中的误差:在SOFC系统热交换器上的应用

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摘要

Aim of this work is to model and study the behavior of thermocouples as they are used in the measurement of gas temperatures in solid oxide fuel cell systems. Due to the high temperature regime in such systems, the effect of radiation and conduction from surrounding solids may bias the measurements with important consequences on control, performance, and cell durability. In order to study these effects a mathematical model of a working thermocouple was developed and it was integrated in that of a heat exchanger, which was part of a larger SOFC system. The enhanced heat exchanger's model was then validated with measurements from a test on a real system. The possibility to overcome the bias and to have a more correct approximation of the real gas temperatures is discussed.
机译:这项工作的目的是模拟和研究热电偶在固体氧化物燃料电池系统中用于气体温度测量的行为。由于此类系统中的高温状态,周围固体的辐射和传导效应可能会使测量结果产生偏差,从而对控制,性能和电池耐久性产生重要影响。为了研究这些影响,开发了工作热电偶的数学模型,并将其集成到热交换器中,该热交换器是较大的SOFC系统的一部分。然后,通过在真实系统上进行的测试测量来验证增强型热交换器的模型。讨论了克服偏差并更准确地逼近实际气体温度的可能性。

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