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首页> 外文期刊>Proceedings of the ASME Advanced Energy Systems Division >USE OF LOW/MID-TEMPERATURE SOLAR HEAT FOR THERMOCHEMICAL UPGRADING OF ENERGY, WITH APPLICATION TO A NOVEL CHEMICALLY-RECUPERATED GAS-TURBINE POWER GENERATION (SOLRGT) SYSTEM
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USE OF LOW/MID-TEMPERATURE SOLAR HEAT FOR THERMOCHEMICAL UPGRADING OF ENERGY, WITH APPLICATION TO A NOVEL CHEMICALLY-RECUPERATED GAS-TURBINE POWER GENERATION (SOLRGT) SYSTEM

机译:将低温/中温太阳能用于能源的热化学升级,并应用于新型化学回收的燃气轮机发电(SOLRGT)系统

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This paper presents the concept of indirect thermochemical upgrading of low/mid temperature solar heat, and demonstration of its integration into a high efficiency novel hybrid power generation system. The proposed system consists of an intercooled chemically recuperated gas turbine (SOLRGT) cycle, in which the solar thermal energy collected at about 220 deg C is first transformed into the latent heat of vapor supplied to a reformer and then via the reforming reactions to the produced syngas chemical exergy. The produced syngas is burned to provide high temperature working fluid to a gas turbine. The solar-driven steam production helps to improve both the chemical and thermal recuperation in the system. Using well established technologies including steam reforming and low/mid temperature solar heat collection, the hybrid system exhibits promising performance: the net solar-to-electricity efficiency, based on the gross solar thermal energy incident on the collector, was predicted to be 25-30percent, and it can reach up to 35percent when the solar share is reduced. In comparison to conventional CRGT system, 30percent of fossil fuel saving is feasible with the solar thermal share of 26percent, and the system overall efficiency reaches 51.2percent to 53.6percent when the solar thermal share is increased from 11 to 28.8percent. The overall efficiency is about 5.7percent-points higher than that of a comparable intercooled CRGT system without solar assist. Due to the introduction of steam into the combustion chamber, production of NO_(x) is near zero, and the reduction of fossil fuel use results in a commensurate 23percent reduction of CO_(2) emissions as compared with the comparable intercooled CRGT system without solar assist.
机译:本文提出了低温/中温太阳能间接热化学升级的概念,并演示了其如何集成到高效新型混合动力发电系统中。拟议的系统由一个中冷化学循环燃气轮机(SOLRGT)循环组成,在该循环中,在约220℃收集的太阳能首先被转化为提供给重整器的蒸汽潜热,然后通过重整反应生成热能。合成气化学能。燃烧产生的合成气以向燃气轮机提供高温工作流体。太阳能驱动的蒸汽生产有助于改善系统中的化学和热能回收率。使用蒸汽重整和低温/中温太阳能集热等成熟技术,混合动力系统表现出令人鼓舞的性能:基于入射到集热器上的总太阳能热能,预计太阳能净发电效率为25- 30%,当太阳能份额减少时,最高可达35%。与常规CRGT系统相比,在太阳能热份额为26%的情况下,可节省30%的化石燃料,而当太阳能热份额从11%增至28.8%时,系统的整体效率达到51.2%至53.6%。与没有太阳能辅助的同类中冷CRGT系统相比,整体效率高出约5.7个百分点。由于将蒸汽引入燃烧室,NO_(x)的产生几乎为零,与不含太阳能的中冷CRGT系统相比,减少化石燃料的使用可减少23%的CO_(2)排放。助攻。

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