首页> 外文会议>8th Biennial Conference on Engineering Systems Design and Analysis 2006 vol.1 >MULTI-POINT ENERGY AND EXERGY ANALYSIS OF A 1.5 MWE HYBRID SOFC-GT POWER PLANT
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MULTI-POINT ENERGY AND EXERGY ANALYSIS OF A 1.5 MWE HYBRID SOFC-GT POWER PLANT

机译:1.5 MWE混合型SOFC-GT电站的多点能量和能动分析

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This paper presents a multi-point energy and exergy analysis of a hybrid SOFC-GT power plant. The plant layout consists of the following principal components: an internal reforming SOFC, a steam-methane pre-reformer, a catalytic burner, a radial gas turbine, a centrifugal air compressor, a centrifugal fuel compressor, plate-fin heat exchangers, counter-flow shell and tube heat exchangers, and mixers. The partial load performance of the centrifugal compressors and radial turbine is determined using maps, properly scaled in order to match required mass flow rate and pressure ratio values. The plant is simulated on the basis of a zero-dimensional model discussed in previous papers. Two different partialization strategies are introduced in order to assess the partial load behavior of the plant. Results show that the plant achieves the best partial load performance for the case when both air and fuel mass flow rates are simultaneously reduced.
机译:本文介绍了混合式SOFC-GT电厂的多点能量和火用分析。工厂布局由以下主要部分组成:内部重整SOFC,蒸汽甲烷预重整器,催化燃烧器,径向燃气轮机,离心空气压缩机,离心燃料压缩机,板翅式热交换器,流壳管式热交换器和混合器。离心压缩机和径流式涡轮机的部分负荷性能是使用映射图确定的,并对其进行了适当缩放,以匹配所需的质量流率和压力比值。在先前论文中讨论的零维模型的基础上对工厂进行了仿真。为了评估工厂的部分负荷行为,引入了两种不同的分区策略。结果表明,在同时降低空气和燃料质量流率的情况下,该设备可实现最佳的部分负荷性能。

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