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首页> 外文期刊>Applied Energy >Experimental and analytical study on capture spray liquid penetration and combustion characteristics simultaneously with Hydrogenated Catalytic Biodiesel/Diesel blended fuel
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Experimental and analytical study on capture spray liquid penetration and combustion characteristics simultaneously with Hydrogenated Catalytic Biodiesel/Diesel blended fuel

机译:氢化催化生物柴油/柴油混合燃料同时捕获喷雾液体渗透和燃烧特性的实验和分析研究

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Hydrogenated Catalytic Biodiesel (HCB), with excellent volatility and cetane number while without contain oxygen and aromatic hydrocarbons, have great potential to improve engine performance and emission characteristics. In this study, the effect of HCB/Diesel blended fuels properties (by mass fraction of biodiesel in diesel) on spray combustion characteristics was investigated at inert and reacting conditions in a constant volume combustion chamber. Laser (532 nm) Mie-scattering, OH∗ chemiluminescence and high-temperature luminosity were used to capture the spray liquid length, flame lift-off length and ignition delay simultaneously with the help of two intensifier charge coupled device cameras and a high speed Complementary Metal Oxide Semiconductor camera. Encouraging results were obtained at different ambient conditions (temperatures, densities, oxygen concentration) and injection pressures. The results showed that fuels with high cetane number generate shorter ignition delay, and faster auto-ignition results in a shorter flame lift-off length. A new theory was used to interpret the effect of cetane number on lift-off length. Under reacting conditions, the combustion heat release shorten spray liquid length apparently as compared with the results under inert conditions. The liquid length was slightly affected by the injection pressure and oxygen concentrations under both reacting and inert conditions, while the flame lift-off length is significantly influenced by ambient parameters and injection pressure.
机译:氢化催化生物柴油(HCB)具有出色的挥发性和十六烷值,同时不含氧气和芳烃,具有极大的改善发动机性能和排放特性的潜力。在这项研究中,研究了六氯苯/柴油混合燃料性能(按柴油中生物柴油的质量分数计)对喷雾燃烧特性的影响,该燃烧特性是在恒定体积的燃烧室内和惰性条件下进行的。借助两个增强型电荷耦合设备摄像头和高速互补设备,利用激光(532 nm)的Mie散射,OH *化学发光和高温发光度来同时捕获喷雾液的长度,火焰剥离长度和点火延迟。金属氧化物半导体相机。在不同的环境条件(温度,密度,氧气浓度)和注射压力下获得了令人鼓舞的结果。结果表明,十六烷值高的燃料产生的点火延迟更短,而自动点火速度更快,火焰的起燃长度也较短。一种新的理论被用来解释十六烷值对提离长度的影响。与惰性条件下的结果相比,在反应条件下燃烧释放的热量明显缩短了喷雾液的长度。在反应和惰性条件下,液体长度受注入压力和氧气浓度的影响很小,而火焰剥离长度受环境参数和注入压力的影响很大。

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