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Thermodynamic analysis and comparison of downdraft gasifiers integrated with gas turbine, spark and compression ignition engines for distributed power generation

机译:与分布式燃气轮机,燃气轮机,火花机和压燃式发动机集成的下行气流气化炉的热力学分析和比较

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The objective of the present article is to assess and compare the performance of electricity generation systems integrated with downdraft biomass gasifiers for distributed power generation. A model for estimating the electric power generation of internal combustion engines and gas turbines powered by syngas was developed. First, the model determines the syngas composition and the lower heating value; and second, these data are used to evaluate power generation in Otto, Diesel, and Brayton cycles. Four synthesis gas compositions were tested for gasification with: air; pure oxygen; 60% oxygen with 40% steam; and 60% air with 40% steam. The results show a maximum power ratio of 0.567 kWh/Nm~3 for the gas turbine system, 0.647 kWh/Nm~3 for the compression ignition engine, and 0.775 kWh/Nm~3 for the spark-ignition engine while running on synthesis gas which was produced using pure oxygen as gasification agent. When these three systems run on synthesis gas produced using atmospheric air as gasification agent, the maximum power ratios were 0.274 kWh/Nm~3 for the gas turbine system, 0.302 kWh/Nm~3 for CIE, and 0.282 kWh/Nm~3 for SIE. The relationship between power output and synthesis gas flow variations is presented as is the dependence of efficiency on compression ratios. Since the maximum attainable power ratio of CIE is higher than that of SIE for gasification with air, more research should be performed on utilization of synthesis gas in CIE.
机译:本文的目的是评估和比较与用于分布式发电的向下气流生物质气化炉集成的发电系统的性能。建立了用于估算由合成气驱动的内燃机和燃气轮机发电量的模型。首先,该模型确定合成气的组成和较低的发热量;其次,这些数据用于评估奥托,柴油和布雷顿循环的发电量。测试了四种合成气组合物的气化作用:纯氧60%的氧气和40%的蒸汽; 60%的空气和40%的蒸汽。结果表明,在使用合成气运行时,燃气轮机系统的最大功率比为0.567 kWh / Nm〜3,压燃式发动机的最大功率比为0.647 kWh / Nm〜3,而火花点火式发动机的最大功率比为0.775 kWh / Nm〜3使用纯氧气作为气化剂生产的。当这三个系统在使用大气作为气化剂生产的合成气上运行时,燃气轮机系统的最大功率比为0.274 kWh / Nm〜3,CIE的最大功率比为0.302 kWh / Nm〜3,CIE的最大功率比为0.282 kWh / Nm〜3 SIE。功率输出与合成气流量变化之间的关系以及效率对压缩比的依赖关系均已呈现。由于CIE的最大可实现功率比高于SIE的空气气化功率比,因此需要对CIE中合成气的利用进行更多的研究。

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