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首页> 外文期刊>Journal of combustion >Combustion Characteristics for Turbulent Prevaporized Premixed Flame Using Commercial Light Diesel and Kerosene Fuels
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Combustion Characteristics for Turbulent Prevaporized Premixed Flame Using Commercial Light Diesel and Kerosene Fuels

机译:使用商用轻柴油和煤油燃料的湍流预蒸发预混火焰的燃烧特性

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Experimental study has been carried out for investigating fuel type, fuel blends, equivalence ratio, Reynolds number, inlet mixture temperature, and holes diameter of perforated plate affecting combustion process for turbulent prevaporized premixed air flames for different operating conditions. CO2, CO, H2, N2, C3H8, C2H6, C2H4, flame temperature, and gas flow velocity are measured along flame axis for different operating conditions. Gas chromatographic (GC) and CO/CO2infrared gas analyzer are used for measuring different species. Temperature is measured using thermocouple technique. Gas flow velocity is measured using pitot tube technique. The effect of kerosene percentage on concentration, flame temperature, and gas flow velocity is not linearly dependent. Correlations for adiabatic flame temperature for diesel and kerosene-air flames are obtained as function of mixture strength, fuel type, and inlet mixture temperature. Effect of equivalence ratio on combustion process for light diesel-air flame is greater than for kerosene-air flame. Flame temperature increases with increased Reynolds number for different operating conditions. Effect of Reynolds number on combustion process for light diesel flame is greater than for kerosene flame and also for rich flame is greater than for lean flame. The present work contributes to design and development of lean prevaporized premixed (LPP) gas turbine combustors.
机译:已经进行了实验研究,以研究在不同工况下,湍流预蒸发的预混空气火焰的燃料类型,燃料混合物,当量比,雷诺数,进气混合物温度以及穿孔板的孔径对燃烧过程的影响。在不同的工作条件下,沿着火焰轴测量CO2,CO,H2,N2,C3H8,C2H6,C2H4,火焰温度和气体流速。气相色谱(GC)和CO / CO2红外气体分析仪用于测量不同的物种。使用热电偶技术测量温度。使用皮托管技术测量气体流速。煤油百分比对浓度,火焰温度和气体流速的影响与线性无关。获得了柴油和煤油-空气火焰的绝热火焰温度的相关性,该相关性是混合物强度,燃料类型和入口混合物温度的函数。当量比对轻柴油-空气火焰的燃烧过程的影响大于煤油-空气火焰的燃烧过程。在不同的工作条件下,火焰温度随雷诺数的增加而增加。雷诺数对轻柴油火焰的燃烧过程的影响大于煤油火焰,对于浓火焰,其影响也大于稀燃。目前的工作有助于稀薄的预蒸发预混合(LPP)燃气轮机燃烧室的设计和开发。

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