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首页> 外文期刊>International Journal of Process Systems Engineering >Energy and exergy analyses of power generation via an integrated biomass post-firing combined-cycle
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Energy and exergy analyses of power generation via an integrated biomass post-firing combined-cycle

机译:通过集成的生物质后燃联合循环进行发电的能量和火用分析

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Biomass energy recently has received much attention due to its renewability and relatively low environment impact, both of which suggest it has good prospects as are placement for fossil fuels in the future. Furthermore, biomass gasification reduces problems associated with direct burning of biomass, and the producer gas from the gasification process can be utilised in various power generation systems. In this article, a biomass post-firing combined cycle is proposed and energy and exergy analyses are reported for the cycle. The cycle energy and exergy efficiencies are both determined peak at specific compressor pressure ratio, and increasing the compressor pressure ratio reduces the mass of air per mass of steam in the cycle and, correspondingly, the gas turbine size. With increasing compressor pressure ratio and decreasing gas turbine inlet temperature, the quantity of natural gas required relative to biomass is observed to decrease, while the exergy loss and exergy destruction rates are seen to increase. Furthermore, as the gas inlet temperature to the heat recovery steam generator rises, the exergy destruction rate increases and the exergy loss rate decreases. The highest exergy efficiency is exhibited by the gas turbine and the lowest by the combustor and the condenser.
机译:由于生物质能的可再生性和相对较低的环境影响,近来受到了广泛的关注,这两者都表明生物质能具有很好的前景,将来也将其用作化石燃料。此外,生物质气化减少了与生物质直接燃烧相关的问题,并且来自气化过程的生产气可以用于各种发电系统中。在本文中,提出了生物质后燃联合循环,并报告了该循环的能量和火用分析。循环能量和火用效率均在特定的压缩机压力比处确定为峰值,并且增加压缩机压力比会减少循环中每单位蒸汽量的空气质量,并相应地减少燃气轮机的尺寸。随着压缩机压力比的增加和燃气轮机入口温度的降低,观察到相对于生物质所需的天然气量减少,而火用损失和火用破坏率则增加。此外,随着到热回收蒸汽发生器的气体入口温度的升高,(火用)破坏率增加,(火用)损失率降低。燃气轮机具有最高的火用效率,而燃烧室和冷凝器具有最低的火用效率。

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