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Analysis of the In-Cylinder Flow, Mixture Formation and Combustion Processes in a Spray-Guided GDI Engine

机译:喷涂引导GDI发动机中缸内流动,混合物形成和燃烧过程的分析

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The purpose of this paper is to investigate the air/fuel mixture formation and combustion characteristics in a spray-guided GDI engine using a commercial code, STAR-CD. This engine adopted the outwardly opening injector located in the center of cylinder head, which forms a hollow cone spray. The spray injection was modeled arranging multiple points using random function along the ring-shaped nozzle exit. To predict the breakup of spray, Reitz-Diwakar's breakup model was used, and the model constants were calibrated against published experimental data in a constant volume chamber. The validated spray models were applied to the analysis of spray behavior and mixture formation process inside the engine combustion chamber under operating condition of ultra-lean mixture (λ is approximately equal to 4). To predict the combustion process, the modified eddy breakup combustion model was applied. The present approach reasonably predicted the spray behavior, the mixture distribution near the spark plug, and flame propagation inside the combustion chamber. The calculated combustion pressure had a good agreement with the engine test results. Furthermore, the variations of the geometries of intake port and combustion chamber, the split injection parameters, and compression ratio were evaluated. The result shows that the enhanced tumble flow can deteriorate the mixture distribution of the hollow cone spray, and therefore decreases the burning rate. Also, the influence of injection timing and compression ratio on the quality of the stratified mixture at the spark was well predicted.
机译:本文的目的是使用商业代码,SAR-CD研究喷射引导的GDI发动机中的空气/燃料混合物形成和燃烧特性。该发动机采用位于气缸盖中心的向外开口喷射器,其形成空心锥形喷雾。使用沿环形喷嘴出口的随机功能进行建模喷射喷射。为了预测喷雾的破碎,使用Reitz-Diwakar的分解模型,并且模型常数被校准在恒定容积室中的已发布的实验数据。验证的喷雾模型被应用于在超贫混合物的操作条件下的发动机燃烧室内的喷射行为和混合形成过程的分析(λ大约等于4)。为了预测燃烧过程,应用了改进的涡流燃烧模型。本方法合理地预测了喷射行为,火花塞附近的混合分布,并在燃烧室内的火焰传播。计算的燃烧压力与发动机测试结果吻合良好。此外,评估进气口和燃烧室的几何形状的变化,分流注射参数和压缩比。结果表明,增强的滚筒流动可以恶化中空锥喷雾的混合分布,因此降低了燃烧速率。而且,注射正时和压缩比对火花处的分层混合物质量的影响得到了良好的预测。

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