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Effects of the injection strategy on the mixture formation and combustion characteristics in a DISI (direct injection spark ignition) optical engine

机译:喷射策略对DISI(直接喷射火花点火)光学引擎中混合物形成和燃烧特性的影响

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The present study investigates the effect of the injection strategy on the mixture quality and the consequential combustion characteristics. The injection strategies considered in the present study were divided into two parts: single injection (with a wide range of injection timings during the intake stroke) and double injection (with a short second injection during the compression stroke). The in-cylinder pressure and high-speed flame images were acquired to evaluate the combustion characteristics, and KIVA simulation was conducted to observe the in-cylinder flow and the fuel spray spreading procedure. For the single injection, retarding the injection timing caused an increase in the combustion speed and in-cylinder pressure. In this case, the major factor that increased the in-cylinder pressure was the turbulence intensity; the later injection produced a stronger turbulence at the spark timing, which caused a higher in-cylinder pressure. Meanwhile, the flame propagation direction was mainly affected by the equivalence ratio distribution. The flame speed toward the fuel-lean region was significantly slower than toward the fuel-rich region. The double injection strategy utilized the additional turbulence induced by the spray motion to increase the engine power. (C) 2015 Elsevier Ltd. All rights reserved.
机译:本研究研究了喷射策略对混合物质量和相应燃烧特性的影响。本研究中考虑的喷射策略分为两个部分:单次喷射(在进气冲程期间具有宽范围的喷射正时)和双次喷射(在压缩冲程中具有短暂的第二次喷射)。获取缸内压力和高速火焰图像以评估燃烧特性,并进行KIVA模拟以观察缸内流量和燃油喷雾扩散过程。对于单次喷射,延迟喷射正时会导致燃烧速度和缸内压力增加。在这种情况下,增加缸内压力的主要因素是湍流强度。后来的喷射在火花正时产生了更强的湍流,这导致了更高的缸内压力。同时,当量比分布主要影响火焰的传播方向。朝向贫油区的火焰速度明显慢于朝向富油区的火焰速度。双喷射策略利用了喷雾运动引起的额外湍流来增加发动机功率。 (C)2015 Elsevier Ltd.保留所有权利。

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