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Gas turbine steam injection and combined power cycles using fog inlet cooling and biomass fuel: A thermodynamic assessment

机译:燃气轮机蒸汽喷射以及使用雾气入口冷却和生物质燃料的联合动力循环:热力学评估

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The results of energy and exergy analyses of two biomass integrated steam injection cycles and combined power cycles are reported. Fog cooling, steam injection and adding steam turbine cycles to gas turbine cycles can enhance the performance of power generation systems. Even with its lower heat value, biomass can be substituted for fossil fuels. The performances of the cycles are assessed under the same conditions. The assessments show that the combined cycle has a higher efficiency at lower values of compressor pressure ratio but the steam injection plant is advantageous at higher pressure ratio values. The steam injection plant has a higher net power under the same conditions, while the exergy loss rate is higher for the combined cycle at all pressure ratios. But the exergy destruction rate is higher for the steam injection cycle at lower compressor pressure ratios, and for the combined cycle at higher pressure ratios. (C) 2016 Elsevier Ltd. All rights reserved.
机译:报告了两个生物质综合蒸汽注入循环和联合动力循环的能量和火用分析结果。雾冷却,蒸汽喷射以及将蒸汽轮机循环添加到燃气轮机循环中可以提高发电系统的性能。即使具有较低的热值,生物质也可以代替化石燃料。在相同条件下评估循环的性能。评估表明,联合循环在较低的压缩机压力比值下具有较高的效率,但在较高的压力比值下,蒸汽注入装置是有利的。在相同条件下,蒸汽注入装置的净功率更高,而在所有压力比下,联合循环的火用损失率更高。但是,在较低的压缩机压力比下,蒸汽注入循环的火用破坏率较高;在较高压力比下,联合循环的火用破坏率更高。 (C)2016 Elsevier Ltd.保留所有权利。

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