首页> 外文期刊>SAE International Journal of Fuels and Lubricants >The Combustion and Ignition Characteristics of Varying Blend Ratios of JP-8 and a Coal to Liquid Fischer-Tropsch Jet Fuel in a Military Relevant Single Cylinder Diesel Engine
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The Combustion and Ignition Characteristics of Varying Blend Ratios of JP-8 and a Coal to Liquid Fischer-Tropsch Jet Fuel in a Military Relevant Single Cylinder Diesel Engine

机译:军事相关单缸柴油机中JP-8与煤/液体费托喷气燃料的混合比变化的燃烧和点火特性

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摘要

The U.S. Army currently uses JP-8 for global operations according to the 'one fuel forward policy' in order to reduce the logistics burden of supplying a variety of fuels for given Department of Defense ground vehicle applications. One particular challenge with using global JP-8 is the lack of or too broad a range of specified combustion affecting properties including ignition quality, high temperature viscosity, and density. In particular, the ignition quality of JP-8 has dramatically varied throughout the past decade on a global basis covering a range of 29 to 70 cetane index. This key combustion affecting parameter was explored in this study by evaluating a synthesized low ignition quality jet fuel blended in 25% volumetric proportions with JP-8 to effectively cover a cetane number range of 25 to 45 in a single cylinder diesel engine operated at various light, medium, and high load operating conditions. The low ignition quality fuel was a Fischer-Tropsch Synthesized, coal-to-liquid (CTL) paraffinic kerosene (FT-SPK) which exhibited low temperature chemistry behavior at light load operating conditions including unstable combustion at lower engine speeds. To better understand this latter combustion behavior, supplemental single cylinder experiments were conducted to explore the impact of cylinder charge density on the ignition delay of the CTL FT-SPK covering mean charge densities of 19, 25, and 30 kg/m~3 and a temperature range of 750 K to 950 K. Such experiments revealed a peninsula of excessive ignition delay at mean ignition pressures of less than 55 bar and mean ignition temperatures less than 800 K that were representative of the unstable lower load operating points. Blending the CTL FT-SPK with an 'average' JP-8 increased the low temperature activity and yielded stable combustion at lower, light load engine speeds. In particular, the 50-50 blend ratio alleviated any ignition concerns with the CTL FT-SPK at the test conditions included in this study while the 25-75 blend ratio (JP-8/CTL FT-SPK) addressed a major portion of such ignition concerns at full, medium, and certain light load operating conditions. These results are highly sensitive to the initial injection rate. The main purpose of this submission is to explore the effect of blending JP-8 with a known poor ignition quality SPK to assess any potential performance impacts on military relevant diesel engines.
机译:美国陆军目前根据“一种燃料向前政策”在全球行动中使用JP-8,以减轻国防部地面车辆应用所需的各种燃料供应的后勤负担。使用整体JP-8的一个特殊挑战是缺少或过宽的规定燃烧影响特性范围,包括点火质量,高温粘度和密度。尤其是,在过去的十年中,JP-8的点火质量在全球范围内变化很大,覆盖十六烷值在29至70之间。在这项研究中,通过评估以25%体积比例与JP-8混合的合成低点火质量喷气燃料,有效覆盖了在各种光照下运行的单缸柴油发动机中十六烷值范围为25至45的情况,探索了关键的燃烧影响参数。 ,中等和高负载运行条件。低点火质量的燃料是费-托合成的煤制油(CTL)石蜡煤油(FT-SPK),在轻载工况下表现出低温化学行为,包括在较低发动机转速下的不稳定燃烧。为了更好地理解后一种燃烧行为,进行了补充性单缸实验,以探索汽缸装料密度对CTL FT-SPK点火延迟的影响,该装料平均装料密度为19、25和30 kg / m〜3,并且温度范围为750 K至950K。这样的实验表明,在平均点火压力小于55 bar和平均点火温度小于800 K的情况下,点火延迟过长,这是不稳定的较低负载工作点的代表。将CTL FT-SPK与“平均” JP-8混合使用可提高低温性能,并在较低的轻载发动机转速下产生稳定的燃烧。特别是,在本研究中包括的测试条件下,50-50的混合比可缓解CTL FT-SPK的任何着火问题,而25-75的混合比(JP-8 / CTL FT-SPK)解决了此类问题的主要部分在满负荷,中等负荷和某些轻载运行条件下的点火问题。这些结果对初始注射速率高度敏感。该提交文件的主要目的是探讨将JP-8与已知的不良点火质量SPK混合使用的效果,以评估对军事相关柴油发动机的任何潜在性能影响。

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