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首页> 外文期刊>Journal of Engineering for Gas Turbines and Power >Transient Modeling of the NETL Hybrid Fuel Cell/Gas Turbine Facility and Experimental Validation
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Transient Modeling of the NETL Hybrid Fuel Cell/Gas Turbine Facility and Experimental Validation

机译:NETL混合燃料电池/燃气轮机设施的瞬态建模和实验验证

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This paper describes the experimental validation of two different transient models of the hybrid fuel cell/gas turbine facility of the U.S. DOE-NETL at Morgantown. The first part of this work is devoted to the description of the facility, designed to experimentally investigate these plants with real components, except the fuel cell. The behavior of the SOFC is obtained with apt volumes (for the stack and the off-gas burner) and using a combustor to generate similar thermal effects. The second part of this paper shows the facility real-time transient model developed at the U.S. DOE-NETL and the detailed transient modeling activity using the TRANSEO program developed at TPG. The results obtained with both models are successfully compared with the experimental data of two different load step decreases. The more detailed model agrees more closely with the experimental data, which, of course, is more time consuming than the real-time model (the detailed model operates with a calculation over calculated time ratio around 6). Finally, the TPG model has been used to discuss the importance of performance map precision for both compressor and turbine. This is an important analysis to better understand the steady-state difference between the two models.
机译:本文介绍了美国DOE-NETL在Morgantown的混合燃料电池/燃气轮机设施的两种不同瞬态模型的实验验证。这项工作的第一部分专门介绍了该设施,该设施旨在通过实验研究这些具有真实组件的工厂,但燃料电池除外。 SOFC的行为是通过适当的体积(用于烟囱和废气燃烧器)并使用燃烧器产生相似的热效应来获得的。本文的第二部分显示了美国DOE-NETL开发的设施实时瞬态模型以及使用TPG开发的TRANSEO程序进行的详细瞬态建模活动。将两个模型获得的结果成功地与两个不同载荷阶跃减小的实验数据进行了比较。更详细的模型与实验数据更加吻合,实验数据当然比实时模型更耗时(详细模型的计算时间比约为6,因此可以进行计算)。最后,TPG模型已用于讨论性能图精度对于压缩机和涡轮机的重要性。这是一个重要的分析,可以更好地了解两个模型之间的稳态差异。

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