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PERFORMANCE ASSESSMENT OF AN INTEGRATED GASIFICATION COMBINED CYCLE UNDER FLEXIBLE OPERATION

机译:柔性操作下一体化气化联合循环的性能评估

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In this paper a simulation tool (Thermoflex®) has been setup to model an entire Integrated Gasification Combined Cycle (IGCC) on the basis of the report entitled "Cost and Performance of PC and IGCC Plants for a Range of Carbon dioxide Capture" by DOE/NETL. The investigated layout has no water-gas-shift (WGS) reactor and does not allow for any CO_2 capture. Two gasification islands are included, each of which consists of Air Separation Unit (ASU), GEE radiant-only gasifier, quench and syngas scrubber as well as syngas cleanup. Two advanced GE's F-class gas turbines (2x232 MW), coupled with two heat recovery steam generators and one steam turbine (276 MW) constitute the power block. In the IGCC simulation, the base model of the GE 7F.05 gas turbine has been adapted to burn syngas. Mass and energy balances were carefully computed on design condition to validate the proposed modelling procedure against the IGCC performance data contained in the above mentioned report: the net power output of 622 MW was underestimated by about 5% whereas the net electric efficiency was slightly overpredicted. The off-design behavior of the syngas turbine was then simulated as dependent on ambient temperature and partial load, in preparation for modelling flexible operation of the whole power plant. The variation in IGCC net efficiency and power output was assessed in a load following operational strategy, thus reducing the load factor and varying the number and slope of ramps in a typical day. The IGCC net efficiency goes down from 42.5% to 32.8% when the load is reduced from 100% to 40% of the design rate.
机译:本文在仿真工具(ThermoFlex®)的基础上,在题为“PC和IGCC植物的成本和性能进行了一系列二氧化碳捕获”的报告的基础上建立了整体集成气化联合循环(IGCC) / netl。研究的布局没有水 - 气体换档(WGS)反应器,不允许任何CO_2捕获。包括两个气化岛,每个气化岛由空气分离单元(ASU)组成,凝固辐射的气化器,淬火和合成气洗涤器以及合成气清洁。两个先进的GE的F级燃气轮机(2x232mw),与两个热回收蒸汽发生器和一个蒸汽涡轮机(276mW)构成动力块。在IGCC仿真中,GE 7F.05燃气轮机的基础模型已经适用于燃烧合成气。在设计条件下仔细计算质量和能量余额,以验证提出的提出的IGCC性能数据的建模程序:622兆瓦的净功率输出低估约5%,而净电效率略微呈现。然后将合成气涡轮机的偏离设计行为如依赖于环境温度和部分载荷,以准备用于建模整个电厂的柔性操作。在操作策略之后的负载中评估了IGCC净效率和功率输出的变化,从而减少了典型日中斜坡的数量和斜坡的数量和斜率。当负载从设计率的100%降至40%时,IGCC净效率从42.5%降至32.8%。

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