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Experimental study on combustion and particle size distribution of a common rail diesel engine fueled with GTL/diesel blends

机译:GTL /柴油混合燃料共轨柴油机燃烧和粒度分布的实验研究

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摘要

The effect of GTL/diesel blends on combustion and particle size distribution were experimentally investigated in a turbocharged intercooled common-rail direct injection (CRDI) engine under steady-state and transient-state operating conditions. The experiments include six fuels: fossil diesel (GO), G10, G20, G30, G60 and G100 (GXX means a blend of XX vol% GTL in diesel). Particle size distribution was measured by TSI EEPS 3090 through a two-stage dilution tunnel. The engine was tested without exhaust gas recirculation (EGR) in all modes. The results indicate that the majority of particles are in the diameter region of 10-200 nm with GTL under middle speed. Compared with fossil diesel, the GTL/diesel blends shorten the ignition delay and reduce the proportion of premixed burning. With the proportion of GTL increasing in blends, the heat-release rate and pressure-rise rate of premixed burning drop. Increasing blend ratio is also found to reduce the nucleation mode particle number and favor the accumulation mode particles formation, while total particle number concentration increases. A relativity is also found between size range and blend ratio. For transient-state condition, a higher nucleation mode particle number and accumulation mode particle number are found; the effect on PSD with GTL is less sensitive than that with fossil diesel. Besides, it is of benefit to decrease the total particle number and nucleation mode particle number with the ratio of GTL become larger in the blends fuel under transient cycle.
机译:在稳态和瞬态运行条件下,在涡轮增压中冷共轨直喷(CRDI)发动机中,实验研究了GTL /柴油混合物对燃烧和粒度分布的影响。实验包括六种燃料:化石柴油(GO),G10,G20,G30,G60和G100(GXX是指柴油中XX vol%GTL的混合物)。 TSI EEPS 3090通过两步稀释通道测量粒度分布。在所有模式下都对发动机进行了无废气再循环(EGR)的测试。结果表明,在中等速度下,使用GTL时,大多数颗粒的直径在10-200 nm。与矿物柴油相比,GTL /柴油混合物缩短了点火延迟并降低了预混燃烧的比例。随着GTL在掺混物中的比例增加,预混燃烧的放热率和升压率下降。还发现增加混合比可减少成核模式颗粒数并有利于积累模式颗粒形成,而总颗粒数浓度则增加。在尺寸范围和混合比之间也发现了相对性。对于瞬态条件,发现较高的成核模式粒子数和累积模式粒子数; GTL对PSD的影响不如化石柴油敏感。此外,在过渡循环下,随着GTL的比例变大,减少总颗粒数和成核模式颗粒数是有益的。

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