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Soot Internal combustion and gas turbine engines

机译:烟灰和内燃和燃气轮机发动机

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Particulate matter, soot, from jet engines is relevant to environmental and health concerns. In this study, JP-8, HRJ (hydro-treated renewable jet) and FT (Fischer-Tropsch) fuels were tested in a CFM56-2C1 engine on a DC-9 aircraft. Comparisons of PM physical structure at length scales spanning aggregate to primary particle to nanostructure, all by TEM, are reported. Petroleum based JP-8 derived soot shows the nanostructure progression from amorphous to graphitic-like as a function of increasing engine power. Soots from the renewable HRJ and FT fuels exhibit significant nanostructure at each power level. Results are interpreted in terms of different soot formation regions with associated variations in temperature and local equivalence ratio. The driver for such differences is the nascent fuel composition, more specifically the different classes of components and associated pyrolytic and oxidative kinetics.
机译:来自喷气发动机的颗粒物质烟灰与环境和健康问题有关。在该研究中,在DC-9飞机上的CFM56-2C1发动机中测试了JP-8,HRJ(水管处理的可再生射流)和FT(Fischer-Tropsch)燃料。报道了PM物理结构的比较跨越跨越对初级颗粒到纳米结构的终聚体,全温度。石油基的JP-8衍生的烟灰显示出从非晶到石墨的纳米结构进展作为发动机功率增加的函数。来自可再生HRJ和FT燃料的烟汁在每个功率水平上表现出显着的纳米结构。结果以不同的烟灰形成区域解释,其温度和局部等同率相关的相关变化。这种差异的驱动器是新生的燃料组合物,更具体地是不同类别的组分和相关的热解和氧化动力学。

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