首页> 外文会议>International Conference on Engines Vehicles >Knock and Cycle by Cycle Analysis of a High Performance V12 Spark Ignition Engine. Part 1: Experimental Data and Correlations Assessment
【24h】

Knock and Cycle by Cycle Analysis of a High Performance V12 Spark Ignition Engine. Part 1: Experimental Data and Correlations Assessment

机译:循环分析高性能V12火花点火发动机的循环分析。第1部分:实验数据和相关性评估

获取原文
获取外文期刊封面目录资料

摘要

In this paper, a high performance V12 spark-ignition engine is experimentally investigated at test-bench in order to fully characterize its behavior in terms of both average parameters, cycle-by-cycle variations and knock tendency, for different operating conditions. In particular, for each considered operating point, a spark advance sweep is actuated, starting from a knock-free calibration, up to intense knock operation. Sequences of 300 consecutive pressure cycles are measured for each cylinder, together with the main overall engine performance, including fuel flow, torque, and fuel consumption. Acquired data are statistically analyzed to derive the distributions of main indicated parameters, in order to find proper correlations with ensemble-averaged quantities. In particular, the Coefficient of Variation (CoV) of IMEP and of the in-cylinder peak pressure (pmax) are correlated to the average combustion phasing and duration (MFB50 and Δθb), with a good coefficient of determination. In addition, a high-pass-filtering technique is used to derive the cycle-by-cycle scattering of the Maximum Amplitude of Pressure Oscillation (MAPO) index. A similar statistical analysis is carried out to derive the log-normal distributions of the MAPO index and a methodology to asses a proper knock threshold is applied to identify the presence of knocking combustion. The above data represent the prerequisites for the implementation and validation of an advanced 1D model, described in Part 2, taking into account cycle-by-cycle variations, and finally aiming to identify the knock-limited spark advance on a completely theoretical basis.
机译:在本文中,在测试台上通过实验研究了高性能V12火花点火发动机,以便在平均参数,周期循环变化和爆震趋势方面完全表征其行为,用于不同的操作条件。特别地,对于每个考虑的操作点,从无敲击校准开始致动火花提前扫描,直至激烈的敲击操作。针对每个汽缸测量300个连续压力循环的序列,以及主要的整体发动机性能,包括燃料流动,扭矩和燃料消耗。在统计上分析了所获取的数据以导出主要指示参数的分布,以便找到与集合平均量的适当相关性。特别地,IMEP和缸内峰值压力(PMAX)的变异系数(COV)与平均燃烧分阶段和持续时间(MFB50和ΔθB)相关,具有良好的测定系数。另外,高通滤波技术用于导出最大压力振荡幅度(MAPO)指数的逐循环散射。进行了类似的统计分析以导出Mapo指数的日志正态分布,并且施加适当的爆震阈值的方法以识别爆震燃烧的存在。上述数据代表了一个先进的一维模型的实施和验证,在第2部分中描述的先决条件,考虑到逐周期的变化,并最终目的是查明一个完全理论基础上的敲除有限的点火提前。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号