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Effect of port gas injection on in-cylinder stratification in a CNG fuelled SI engine

机译:进气对CNG燃料SI发动机缸内分层的影响

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The concept of barrel stratification of air-fuel mixture is evaluated for a port gas injection (PGI) single cylinder spark ignition (SI) internal combustion (IC) engine using a transient three-dimensional computational fluid dynamic (CFD) model. The gaseous fuel used in the study is compressed natural gas (CNG). It is observed that compared to the premixed gas carburettor case, a substantial amount of in-cylinder stratification can be achieved with port gas injection system. A detailed parametric study is reported to understand the effect of the various injection parameters such as injection location, injection orientation, start of injection (SOI) and its duration, and injection rate. Furthermore, the best injection timing is evaluated for various load and speed cases. It is observed that the best stratification pattern can be achieved at 50% engine load. The injection location is observed to have a profound effect on the in-cylinder stratification pattern, and injection towards the side of the spark plug is observed to give a rich fuel-air mixture near the spark plug. It is also shown that there exists an optimal injection pressure.
机译:使用瞬态三维计算流体动力学(CFD)模型,对进气口(PGI)单缸火花点火(SI)内燃(IC)发动机评估了混合气桶分层的概念。研究中使用的气态燃料是压缩天然气(CNG)。可以看出,与预混合气化油器的情况相比,使用进气系统可以实现大量的缸内分层。据报道,进行了详细的参数研究,以了解各种注射参数的影响,例如注射位置,注射方向,注射开始(SOI)及其持续时间和注射速率。此外,针对各种负载和速度情况评估最佳喷射正时。可以看出,在50%的发动机负载下可以获得最佳的分层模式。观察到喷射位置对缸内分层模式有深远的影响,并且观察到朝向火花塞侧面的喷射在火花塞附近产生了丰富的燃料-空气混合物。还表明存在最佳喷射压力。

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