首页> 外文会议>International Conference on Engines and Vehicles >A Computational Study on the Impact of Cycle-to-Cycle Combustion Fluctuations on Fuel Consumption and Knock in Steady-State and Drive-cycle Operation
【24h】

A Computational Study on the Impact of Cycle-to-Cycle Combustion Fluctuations on Fuel Consumption and Knock in Steady-State and Drive-cycle Operation

机译:关于循环到循环燃烧波动对燃油消耗的影响的计算研究,稳态和驱动周期运行

获取原文

摘要

In spark-ignition engines, fluctuations of the in-cylinder pressure trace and the apparent rate of heat release are usually observed from one cycle to another. These Cycle-to-Cycle Variations (CCV) are affected by the early flame development and the subsequent flame front propagation. The CCV are responsible for engine performance (e.g. fuel consumption) and the knock behavior. The occurrence of the phenomena is unpredictable and the stochastic nature offers challenges in the optimization of engine control strategies. In the present work, CCV are analyzed in terms of their impact on the engine knock behavior and the related efficiency. Target is to estimate the possible fuel consumption savings in steady-state operation and in the drive-cycle, when CCV are reduced. Since CCV are immanent on real engines, such a study can only be done by means of simulation. For the analysis different tools are applied, from 1-D gas dynamic models with detailed combustion modeling to real-time capable engine and vehicle system simulation.
机译:在火花点火发动机中,通常从一个循环到另一个循环观察到缸内压力迹线的波动和热释放的表观速率。这些循环到循环变化(CCV)受早期火焰显影和随后的火焰前沿传播的影响。 CCV负责发动机性能(例如燃料消耗)和爆震行为。现象的发生是不可预测的,随机性质在优化发动机控制策略方面提供挑战。在目前的工作中,CCV在其对发动机爆震行为的影响和相关效率方面进行了分析。当CCV降低时,目标是估计稳态操作中可能的燃料消耗和在驱动周期中的燃料消耗节省。由于CCV在真正的发动机上是内在的,因此只能通过模拟来完成这样的研究。对于分析,从1-D气体动态模型应用不同的工具,具有详细的燃烧建模与实时功能的发动机和车辆系统仿真。

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