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Investigation of parameters affecting exergy and emission performance of basic and intercooled gas turbine cycles

机译:研究基本和中冷燃气轮机循环的火用和排放性能的参数

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In this article an attempt has been made to analyze the affect of various cycle operating parameters, compressor-pressure-ratio, TRIT (turbine-rotor-inlet-temperature) combustor-primary-zone-temperature, equivalence-ratio, and residence-time on thermodynamic as well as emission performance of the BGT (basic-gas-turbine) and IcGT (intercooled-gas-turbine) cycles on a comparative basis. Thermodynamic assessment of the proposed cycles, shows that rational efficiency of the IcGT (intercooled-gas-turbine cycle) to be 8.39% higher than the BGT (basic-gas-turbine cycle). Overall exergy destruction within the cycles has been found to the 4.42% lower for IcGT cycle as compared to BGT cycle. It has also been observed that the IcGT cycle delivers higher gas turbine specific work and thermal efficiency in comparison to the BGT cycle for the same compressor-pressure-ratio and TRIT. Emission assessment shows that at fixed value of equivalence-ratio and residence-time, NOx emission is higher at higher values of compressor-pressure-ratio (r(p,c)) for both cycles. The mass of NOx and UHC (unburnt-hydrocarbon) emission increases with increase in equivalence-ratio, whereas CO (carbon-monoxide) emission decreases with increase in equivalence-ratio. Emission performance maps show lower quantum of NOx and CO emission for the IcGT cycle. UHC emission is higher in case of IcGT cycle due to lower combustor inlet air temperature. Overall, both thermodynamic and emission performance of IcGT cycle is superior. (C) 2015 Elsevier Ltd. All rights reserved.
机译:本文尝试分析各种循环运行参数,压缩机压力比,TRIT(涡轮机转子入口温度)燃烧器主要区域温度,当量比和停留时间的影响。比较BGT(基本燃气轮机)和IcGT(中冷燃气轮机)循环的热力学和排放性能。对拟议循环的热力学评估表明,IcGT(中冷燃气轮机循环)的合理效率比BGT(基本燃气轮机循环)高8.39%。已经发现,与BGT循环相比,IcGT循环在整个循环内的总火用破坏降低了4.42%。还已经观察到,与相同压缩机压力比和TRIT的BGT循环相比,IcGT循环提供了更高的燃气轮机比功和热效率。排放评估表明,在两个循环中,当等值比和停留时间为固定值时,NOx排放在压缩机-压力比(r(p,c))较高时更高。 NOx和UHC(未燃烧碳氢化合物)的排放量随着当量比的增加而增加,而CO(一氧化碳)排放量则随着当量比的增加而减少。排放性能图显示,IcGT循环的NOx和CO排放量较低。在IcGT循环的情况下,由于较低的燃烧器进气温度,UHC排放量较高。总体而言,IcGT循环的热力学和排放性能均优异。 (C)2015 Elsevier Ltd.保留所有权利。

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