4.6 Article

Cyclic Variability and Dynamical Instabilities in Autoignition Engines With High Residuals

期刊

出版社

IEEE-INST ELECTRICAL ELECTRONICS ENGINEERS INC
DOI: 10.1109/TCST.2012.2221715

关键词

Bifurcation; Gaussian noise; internal combustion engines; nonlinear dynamical systems; stability

资金

  1. Department of Energy (National Energy Technology Laboratory) [EE0003533]
  2. ACCESS Project Consortium (Robert Bosch LLC, AVL Inc., Emitec Inc.) under the Direction of H. Yilmaz, Robert Bosch, LLC
  3. Bernt Jarmark's Foundation for Scientific Research
  4. United States Government

向作者/读者索取更多资源

The dynamical phenomenon of cyclic variability in combustion governed by autoignition in homogeneous charge compression ignition engines with large amounts of residual gases is investigated. A novel model is derived with two states that capture the coupling between engine cycles due to the thermal energy in the recycled residual gases and the recycled chemical energy in the unburned fuel. With the parameters tuned to data from a single cylinder engine at one level of residuals, the model predictions agree well with the experimental observations of decreasing residuals, which are associated with later phasing and increasing cyclic variability approaching misfire. A stability analysis of the model with respect to the amount of recycled residual gases shows how instabilities develop and that the dynamic behavior of the combustion phasing from cycle to cycle is stable for a range of residual gas fractions. The model and analysis offers an explanation for the experimentally observed cycle-to-cycle variability, and provides a foundation for further analysis as well as development of controls mitigating the variability.

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