首页> 外文会议>ASME Internal Combustion Engine Division technical conference >COMBINED EXPERIMENTAL AND NUMERICAL ANALYSIS OF THE INFLUENCE OF AIR-TO-FUEL RATIO ON CYCLIC VARIATION OF HIGH PERFORMANCE ENGINES
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COMBINED EXPERIMENTAL AND NUMERICAL ANALYSIS OF THE INFLUENCE OF AIR-TO-FUEL RATIO ON CYCLIC VARIATION OF HIGH PERFORMANCE ENGINES

机译:综合实验性和数值分析对高性能发动机循环变化的影响

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The Cycle by Cycle Variation (CCV) of a SI engine is analyzed by combining experimental tests and numerical investigations. The quantification of CCV is based on the evaluation of the Coefficient of Variance (COV) of IMEP. The analysis of the experimental pressure data shows an increase in CCV towards leaner mixture conditions. The evaluation of the Heat Release Rate from the in-cylinder pressure traces reveals the strong influence of the early stages of combustion on the variability of the flame evolution. In order to evaluate the influence on CCV of local air equivalence ratio cycle-to-cycle variability and mixture homogeneity in the chamber, a numerical CFD methodology for the simulation of the combustion process has been proposed. The results reproduce with reasonable accuracy the increase in CCV with leaner combustions and put the basis for a deeper insight into the complex phenomena involved in the combustion process by the use of parametric analysis.
机译:通过组合实验测试和数值研究来分析Si发动机的循环变化(CCV)的循环。 CCV的定量是基于对IMEP的差异系数(COV)的评估。对实验压力数据的分析显示CCV朝向稀释剂混合条件的增加。从缸内压力迹线的热释放速率的评价揭示了燃烧早期阶段对火焰进化变异性的强烈影响。为了评估局部到循环变异性和腔室中的混合均匀性对局部空气等效比的影响,提出了一种用于模拟燃烧过程的数值CFD方法。结果以合理的准确性再现CCV的燃料燃料的增加,并通过使用参数分析来提高燃烧过程中涉及的复杂现象的基础。

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