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A NUMERICAL SIMULATION OF FUEL PREMIXING FOR PCCI COMBUSTION BY DIRECT INJECTION

机译:直接喷射对PCCI燃烧进行预混合的数值模拟

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Diesel engine has some advantages that thermal efficiency is high and control response is fast. On the other hand, more paniculate matter (PM) and nitrogen oxide (NOx) are contained in the exhaust gas of diesel engine. Premixed charge compression ignition (PCCI) combustion is proposed to reduce the PM and NOx. In the lean range of equivalent ratio, unburned fuel is left and in the rich range, PM and soot are generated. For the practical use of PCCI combustion, mixing fuel and air well is important under the low equivalent ratio of injection. In this study, the mixing characteristics of fuel and air in a cylinder were numerically evaluated. A numerical simulation was performed with general-purpose simulator. The fuel has been injected into the vertical direction of cylinder and injection angle has been defined as 0 degree. In order to express the collusion, impingement on the wall model, that defines behavior of a droplet impinged on the wall with the Weber number of a droplet, was applied. By the injection timing, standard deviation of local equivalent ratio at Top Dead Center (TDC) was plotted. In this study, Frequency of mixing in each cell statistically was observed to evaluate the fuel-air mixing degree. The authors have taken notice of the condition which can be reduced the amount of scatter in the distribution of local equivalent ratio.
机译:柴油机具有热效率高,控制响应快的优点。另一方面,柴油发动机的排气中包含更多的颗粒物(PM)和氮氧化物(NOx)。提出了预混合充量压缩点火(PCCI)燃烧以减少PM和NOx。在当量比例的稀薄范围内,剩余未燃烧的燃料,而在浓稠度范围内,则生成PM和烟灰。对于PCCI燃烧的实际应用,在低当量喷射比下,充分混合燃料和空气非常重要。在这项研究中,对气缸中燃料和空气的混合特性进行了数值评估。用通用模拟器进行了数值模拟。燃料已被喷射到汽缸的垂直方向,并且喷射角已被定义为0度。为了表达共谋,应用了在壁模型上的碰撞,该碰撞用液滴的韦伯数定义了撞击在壁上的液滴的行为。通过注入时间,绘制了上死点(TDC)处的局部当量比的标准偏差。在这项研究中,统计上观察到每个单元中的混合频率以评估燃料-空气混合度。作者已经注意到这种情况,可以减少局部当量比分布中的分散量。

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