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首页> 外文期刊>Applied thermal engineering: Design, processes, equipment, economics >Thermodynamic study of an improved MATIANT cycle with stream split and recompression
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Thermodynamic study of an improved MATIANT cycle with stream split and recompression

机译:流分裂和再压缩改进的望远循环的热力学研究

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In this paper, a modified cycle layout of the MATIANT cycle with zero emission is proposed. The proposed cycle includes three changes: the reheat process is eliminated; stream split and recompression is added; the compressor is replaced by a seven-stage one. These modifications are introduced to achieve a more balanced thermal match of the recuperator and to lower the compression power. The merit of the proposed layout is that it lowers the recuperator's hot end average temperature by about 150 degrees C and improves its thermal match. The technical requirement of the recuperator caused by the high hot end temperature is lowered. Another advantage lies in the simple cycle layout by eliminating the reheat process. Key cycle variables are studied in a sensitivity analysis to understand their influence on cycle performance, followed by a full variable optimization. The optimized net efficiency of the proposed cycle can reach 45.3%, which is only 0.35% lower than that of the MATIANT cycle. By updating the component efficiencies and constrains to a more modern level, the efficiency can reach 48.63%, which further proves the potential of the proposed cycle. (C) 2017 Published by Elsevier Ltd.
机译:在本文中,提出了具有零排放的常见循环的改进循环布局。所提出的周期包括三个变化:重新加热过程被淘汰;添加流拆分和再压缩;压缩机由七阶段取代。引入这些修改以实现恢复器的更平衡的热匹配并降低压缩功率。所提出的布局的优点是它将恢复器的热端平均温度降低约150℃并改善其热匹配。由高热端温度引起的恢复器的技术要求降低。另一个优点在于通过消除再加热过程来实现简单的循环布局。在敏感性分析中研究了关键循环变量,以了解它们对循环性能的影响,然后是完整的变量优化。所提出的循环的优化净效率可达到45.3%,其比营发周期低0.35%。通过更新分量效率并限制到更现代的水平,效率可以达到48.63%,进一步证明了所提出的周期的潜力。 (c)2017年由elestvier有限公司出版

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