Second law approach in the reduction of gas emission from gas turbine plant

M.N. Eke , P.A. Ozor , V.S. Aigbodion , C. Mbohwa
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引用次数: 1

Abstract

This paper presents second law analytical approach in reducing gaseous emission at gas turbine plant in Geregu, Nigeria. The study analyzed the system's components separately to locate the component with highest exergy destruction ratio for possible improvement. Results show that the combustion chamber has highest exergy destruction ratio. Improvements made include increment in: (i) turbine inlet temperature at constant pressure ratio, (ii) combustion chamber pressure ratio at constant turbine inlet temperature, (iii) both  turbine inlet temperature and pressure ratio, and changing ambient temperature at power plant location. The multiple criteria for change indicate that the first approach decreased the environmental effect factor by 6.96 % and the sustainability index factor increased by 7.41% as the temperature increased from 1060 – 1080 oC at constant pressure ratio of 11. The second approach reduced the environmental effect factor by 2.74% and increased the sustainability index factor by 2.82% when the pressure ratio rose from 11 to 15. However, simultaneous increments in turbine inlet temperature and pressure ratio by 20oC and 4bar decreased the environmental effect factor further by 8.41%. Thus, raising the sustainability index factor by 9.19%. The results show that changing the ambient temperature from 20°C to 35°C resulted in equal changes in environmental effect factor and sustainability index factor by 0.02%. This work has revealed that gaseous emission from the plant can be reduced by second law analysis. Overall, simultaneous increases in pressure ratio and turbine inlet temperature gave the best result.

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减少燃气轮机装置气体排放的第二定律方法
本文介绍了第二定律分析方法在减少气体排放的燃气轮机厂,尼日利亚。该研究对系统各部件进行了单独分析,找出了火用破坏比最高的部件,以便进行改进。结果表明,该燃烧室具有最高的火用破坏比。所做的改进包括增加:(i)恒压比下的涡轮进口温度,(ii)恒压比下的燃烧室压力比,(iii)涡轮进口温度和压力比,以及改变电厂所在地的环境温度。在恒压比为11的条件下,当温度从1060 ~ 1080℃升高时,第一种方法的环境效应因子降低了6.96%,可持续性指数因子增加了7.41%。当压力比从11增加到15时,第二种方法的环境影响因子降低了2.74%,可持续性指数因子提高了2.82%。然而,同时增加涡轮进口温度和压力比20℃和4bar时,环境影响因子进一步降低8.41%。从而使可持续性指数因子提高9.19%。结果表明:当环境温度从20℃变化到35℃时,环境影响因子和可持续性指数因子的变化幅度相等,为0.02%;这项工作表明,通过第二定律分析可以减少工厂的气体排放。总的来说,同时增加压力比和涡轮入口温度的效果最好。
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