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A Study on Combustion Characteristics of a High Compression Ratio SI Engine with High Pressure Gasoline Injection

机译:高压汽油喷射高压缩比SI发动机燃烧特性研究

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In order to improve thermal efficiency of spark ignition (SI) engines, an improved technology to avoid irregular combustion under high load conditions of high compression ratio SI engines is required. In this study, the authors focused on high pressure gasoline direct injection in a high compression ratio SI engine, which its rapid air-fuel mixture formation, turbulence, and flame speed, are enhanced by high-speed fuel spray jet. Effects of fuel injection pressure, injection and spark ignition timing on combustion characteristics were experimentally and numerically investigated. It was found that the heat release rate was drastically increased by raising the fuel injection pressure. The numerical simulation results show that the high pressure gasoline direct injection enhanced small-scale turbulent intensity and fuel evaporation, simultaneously. These two effects were considered as the main factors to increase the flame propagation speed, suggesting a new combustion concept different from conventional SI combustion controlled by in-cylinder bulk flow. This combustion method enables the delay of fuel injection and spark ignition timing up to near top dead center (TDC) which leads to avoid pre-ignition and knocking by shortening the end-gas reaction time. Therefore, it was shown that the irregular combustion in a high compression ratio SI engine could be avoided by utilizing high pressure gasoline injection, which leads to improve partial load thermal efficiency without affecting the high load performance.
机译:为了提高火花点火(Si)发动机的热效率,需要在高负荷条件下避免在高压缩比Si发动机的高负荷条件下避免不规则燃烧的改进技术。在本研究中,作者集中于高压汽油直接注射在高压缩比Si发动机中,其通过高速燃料喷射射流增强了其快速的空气燃料混合物形成,湍流和火焰速度。实验和数值研究了燃料喷射压力,喷射和火花点火正时对燃烧特性的影响。发现通过提高燃料喷射压力,释放速率大幅增加。数值模拟结果表明,高压汽油直接注射增强了小规模湍流强度和燃料蒸发。这两种效果被认为是提高火焰传播速度的主要因素,暗示了一种与圆柱体散装流量控制的传统SI燃烧不同的新燃烧概念。这种燃烧方法使得燃料喷射和火花点火时间的延迟能够延迟到靠近顶部死点(TDC),这导致避免通过缩短最终气体反应时间的预点火和敲击。因此,示出了通过利用高压汽油喷射,可以避免高压缩比Si发动机中的不规则燃烧,这导致改善部分负载热效率而不影响高负荷性能。

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