燃气轮机管式燃烧器低排放燃烧主喷油器优化

Arkan Khikhal Husain, Mahmood Attallah Mashkoor, Fuad Abdul Ameer Khalaf
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摘要

本文介绍了常压条件下燃气轮机管式燃烧室高效低排放无色燃烧的实验研究结果。在预热空气条件下,氧化反应具有火焰分散、温度分散、低排放、无色的特点。记录系统性能,CO和UHC的排放,实现低排放无色燃烧,火焰捕获,测量温度,进气空气质量流量和气体燃料LPG流量,改变燃料主喷油器孔直径。得出最大空气质量流量下,主喷油器内燃油流量阻塞,促进了无色淡蓝色火焰燃烧的形成,当燃料流量为3.2 g/s时,主喷油器6孔直径为1mm, CO排放量较低,UHC排放量随着发电量的增加(0.5→3.42)kW和S.F.C.的减少(21.5→3.49)kg/kwh而降低(70→10)ppmv)。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Gas Turbine Tubular Combustor Main Injector Optimization for Low Emission Combustion
This work presents the experimental investigation results of high performance and low emission colorless combustion in a gas turbine tubular combustor at atmospheric conditions. Low emission and colorless oxidation reaction is characterized by dispersed flame and temperature under the conditions of preheated air. System performance, emissions of CO and UHC are recorded up to achieve low emission colorless combustion, the flame capturing, Measurements of temperature, inlet air mass flow rate and gas fuel LPG flow rate for variable of fuel main injector holes diameter. concluded that maximal air mass flow rate, with choked fuel flow in the main injector for each cases promotes the formation of colorless pal blue flame combustion, for 3.2 g/s of fuel flow rate with 6 holes and 1mm main injector holes diameter and lower CO emissions and decreasing in UHC emissions (70 → 10) ppmv with increasing in power generation (0.5 → 3.42) kW and decreasing in S.F.C. (21.5 → 3.49) kg/kwh.
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