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ATOMIZATION CHARACTERISTICS OF JATROPHA-DERIVED ALTERNATIVE AVIATION FUELS FROM AIRCRAFT ENGINE INJECTOR

机译:来自飞机发动机喷射器的Joatropha衍生的替代航空燃料的雾化特征

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Search for potential alternative jet fuels is intensified in recent years to meet stringent environmental regulations imposed to tackle degraded air quality caused by fossil fuel combustion. The present study describes atomization characteristics of blends of jatropha-derived biofuel with conventional aviation kerosene (Jet A-1) discharging into ambient atmospheric air from a dual-orifice atomizer used in aircraft engines. The biofuel blends are characterized in detail and meet current ASTM D7566 specifications. The experiments are conducted by discharging fuel spray into quiescent atmospheric air in a fuel spray booth to measure spray characteristics such as fuel discharge behavior, spray cone angle, drop size distribution and spray patternation at six different flow conditions. The characteristics of spray cone angle are obtained by capturing images of spray and the measurements of spray drop size distribution are obtained using laser diffraction particle analyzer (LDPA). A mechanical patternator system comprising 144 measurement cells is used to deduce spray patternation at different location from the injector exit. A systematic comparison on the atomization characteristics between the sprays of biofuel blends and the 100% Jet A-1 is presented. The measured spray characteristics of jatropha-derived alternative jet fuels follow the trends obtained for Jet A-1 sprays satisfactorily both in qualitative and quantitative terms.
机译:寻找潜在的替代喷气燃料是近几年愈演愈烈,以满足对解决造成化石燃料的燃烧恶化的空气质量严格的环保法规。本研究中描述了与传统的航空煤油(喷气A-1)排放到环境大气空气从在飞机发动机中使用的双孔口喷雾器麻风树衍生的生物燃料的共混物的雾化特性。生物燃料的共混物的特征在于,细节和满足当前ASTM D7566规格。实验是通过排出燃料喷入静态大气空气在燃料喷涂室以测量喷雾特性如燃料排出行为,喷雾锥角,液滴尺寸分布和在六个不同的流动条件喷雾patternation进行。喷射锥角的特性通过捕获喷雾的图像和喷雾液滴尺寸分布的测量使用激光衍射粒度分析仪(LDPA)中获得获得。包括144个测量细胞的机械patternator系统在从喷射器出口的不同位置被用来推导喷雾patternation。生物燃料共混物的喷雾剂和100%的Jet A-1之间的雾化特性的系统的比较被呈现。麻风树衍生替代喷气燃料的所测量的喷雾特性遵循在定性和定量方面的Jet A-1得到喷雾剂都令人满意的趋势。

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