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Investigation of Low-Temperature Combustion in an Optical Engine Fueled with Low Cetane Sasol JP-8 Fuel Using OH-PLIF and HCHO Chemiluminescence Imaging

机译:使用OH-PLIF和HCHO化学发光成像,用低十六烷Sasol JP-8燃料燃料的光学发动机低温燃烧的研究

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Low cetane JP-8 fuels have been identified as being difficult to use under conventional diesel operation. However, recent focus on low-temperature combustion (LTC) modes has led to an interest in distillate hydrocarbon fuels having high volatility and low autoignition tendency. An experimental study is performed to evaluate low-temperature combustion processes in a small-bore optically-accessible diesel engine operated in a partially-premixed combustion mode using low-cetane Sasol JP-8 fuel. This particular fuel has a cetane number of 25. Both single and dual injection strategies are tested. Since long ignition delay is a consequence of strong autoignition resistance, under the conditions examined, low cetane Sasol JP-8 combustion can only take place with a double injection strategy: one pilot injection event in the vicinity of exhaust TDC and one main injection event near firing TDC. In this work, the effects of autoignition properties are examined by comparing the behavior of a high cetane number JP-8 fuel with that of a low CN Sasol JP-8. The double injection strategy also served to reduce pressure rise rates during operation at light load (2 bar IMEP) conditions. Dual injection timing is optimized for peak IMEP, at which point simultaneous OH Planar Laser-Induced Fluorescence (OH-PLIF) and high-speed crank-angle-resolved HCHO chemiluminescence imaging are performed to analyze the partially-premixed combustion process. Fuel efficiency and engine-out emissions performance are also presented. In terms of IMEP, low CN Sasol JP-8 fuel is shown to be a satisfactory fuel for low-temperature combustion under light-load condition using the proper dual injection strategy. However, partially-premixed combustion operation in this work results in higher UHC emissions and lower fuel efficiency when compared with the high cetane JP-8 fuel.
机译:低十六烷值JP-8的燃料已被鉴定为难以在常规柴油操作使用。然而,最近的焦点上低温燃烧(LTC)模式已经导致在具有高挥发性和低自燃倾向馏分烃类燃料的兴趣。的实验研究,进行在小口径使用低十六烷值沙索JP-8的燃料以部分预混合燃烧模式的光学访问的柴油发动机操作,以评价低温燃烧过程。这种特殊的燃料具有的25.十六烷值无论是单和双喷射策略进行测试。由于长的点火延迟是强自燃性的结果,在该条件下检测,低十六烷值沙索JP-8燃烧时才会进行与双喷射策略:一个引燃喷射事件在排气上止点的附近,并且一个主喷射事件附近射击TDC。在这项工作中,自燃属性的效果是由高十六烷值JP-8的燃料的行为与该低CN沙索JP-8的比较检查。双喷射策略还有助于减少在轻负载(2巴IMEP)的条件下运转时的压力上升速率。双喷射正时为峰值IMEP优化,在该点同时OH平面激光诱导荧光(OH-PLIF)和高速曲柄角分辨HCHO化学发光成像进行分析部分预混燃烧过程。燃油效率和发动机排放性能也提出了。在IMEP方面,低CN沙索JP-8的燃料被示出为用于使用适当的双喷射策略轻负载条件下的低温燃烧令人满意的燃料。但是,当与高十六烷值JP-8的燃料相比,局部预混在更高UHC排放和较低的燃料效率这一工作的结果燃烧操作。

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