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Quantitative measurement of liquid and vapor phase concentration distributions in a D.I. gasoline spray by the laser absorption scattering (LAS) technique

机译:D.I中液体和气相浓度分布的定量测量。通过激光吸收散射(LAS)技术喷涂汽油喷雾

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To get quantitative measurements of liquid and vapor phase concentration distributions in a gasoline spray, a laser-based absorption and scattering (LAS) technique was developed. The LAS technique adopts ultraviolet and visible lasers as light sources and a test fuel, which absorbs the ultraviolet light but does not absorb the visible light, instead of gasoline. The LAS principle is based on the incident light extinction in the ultraviolet band due to both vapor absorption and droplets scattering, whereas in the visible band, the incident light extinction is due only to the droplet scattering. The absorption spectra and molar absorption coefficients of the candidate test fuels including p-xylene, benzene and toluene, all of which have physical properties similar to gasoline, were investigated, and p-xylene was finally selected as a test fuel. Measurement accuracy of the LAS technique was discussed. Finally, experiments were conducted on a spray injected into a constant volume vessel by a swirl injector for a direct injection (DI) gasoline engine. The concentration distributions of both liquid and vapor phases in the spray were quantitatively clarified and their variations with time was elucidated. The effects of ambient temperature on the concentration distribution were also investigated.
机译:为了获得汽油喷雾中的液体和气相浓度分布的定量测量,开发了基于激光的吸收和散射(LAS)技术。 LAS技术采用紫外线和可见激光器作为光源和试验燃料,其吸收紫外线,但不吸收可见光,而不是汽油。由于蒸汽吸收和液滴散射,LAS原理基于紫外线带中的入射光灭火,而在可见带中,入射光灭绝仅作为液滴散射。研究了包括对二甲苯,苯和甲苯的候选试验燃料的吸收光谱和摩尔吸收系数,所有这些都是与汽油类似的物理性质,最终选择对二甲苯作为测试燃料。讨论了LAS技术的测量精度。最后,通过用于直接注射(DI)汽油发动机的旋流注射器在喷射到恒定体积容器中的喷雾中进行实验。定量澄清喷雾中液体和蒸气相的浓度分布,并阐明了它们随时间的变化。还研究了环境温度对浓度分布的影响。

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