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首页> 外文期刊>International Journal of Automotive Technology >Experimental and Computational Investigation of Diesel and Gasoline Injection in a Direct Injection Compression Ignition Engine
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Experimental and Computational Investigation of Diesel and Gasoline Injection in a Direct Injection Compression Ignition Engine

机译:直喷压缩点火发动机中柴油和汽油喷射的实验和计算研究

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In this paper, the numerical simulation of the diesel and gasoline fuels injection in a constant volume chamber and in a cylinder under the operating conditions of a compression ignition (CI) engine is conducted. The simulation results are compared with the experimental data which derived from fast imaging techniques. In order to check out the possibility of using gasoline instead of diesel to increase the volumetric efficiency of the CI engine, the spray characteristics of the gasoline and diesel with injection pressures of 40 and 80 MPa, as well as temperatures of 243, 273 and 313 K, under cold start condition is investigated. The results show that under the same conditions, the vapor penetration length for the two fuels is approximately equal and due to the lower volatility of the diesel fuel, its liquid penetration length in 40 and 80 MPa injection pressures was found to be 7 and 9 mm higher than gasoline, respectively. In addition, the reduction in fuel temperature from 313 K to 243 K leads an increase in the penetration of gasoline and diesel liquids by 12 and 10 mm, respectively. Finally, the decrease in the evaporation rate causes a non-homogeneous mixture and results an increase in the unburned hydrocarbons and emissions.
机译:在本文中,在压缩点火(CI)发动机的操作条件下,在恒定体积室和圆柱体中注入柴油和汽油燃料的数值模拟。将仿真结果与源自快速成像技术的实验数据进行比较。为了检查使用汽油代替柴油的可能性,以提高CI发动机的体积效率,汽油和柴油的喷射特性,注射压力为40和80MPa,以及243,273和313的温度K,在冷启动条件下调查。结果表明,在相同的条件下,两种燃料的蒸汽渗透长度大致相等,并且由于柴油燃料的较低挥发性,其液体穿透长度为40和80MPa注射压力为7和9毫米高于汽油。另外,从313k到243k的燃料温度降低导致汽油和柴油液的渗透率分别增加12和10 mm。最后,蒸发速率的降低导致非均匀的混合物,并导致未燃烧的碳氢化合物和排放量增加。

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