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Origins of cyclic dispersion patterns in spark ignition engines

机译:火花点火发动机中循环分散模式的起源

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The focus of this study was to experimentally investigate the development of nonlinear cyclic dispersion patterns in spark ignition engines. The results indicated a transition from stochastic behavior to noisy nonlinear determinism as equivalence ratio was decreased to very lean conditions. The transition to nonlinear deterministic behavior appeared to occur via a period-doubling bifurcation sequence. The structure of the bifurcation sequence and the level of communication between successive cycles were strongly affected by the level of residual fuel in the cylinder. Experimentally observed patterns were compared with patterns predicted by a recently proposed engine model. The comparison supported the hypothesis that the combustion instbility develops as a noisy period-doubling bifurcation. The observation of nonlinear determinism under lean conditions may have important implications for engine diagnostics and control since cyclic dispersion is not a purely random process.
机译:本研究的重点是通过实验研究火花点火发动机中非线性循环分散模式的发展。结果表明从随机行为到嘈杂的非线性测定中的过渡,因为当量比降低至非常贫条件。向非线性确定性行为的过渡似乎通过周期性倍增分叉序列发生。分叉序列的结构和连续循环之间的通信水平受气缸中残余燃料水平的强烈影响。将通过最近提出的发动机模型预测的模式进行了实验观察的图案。比较支持了燃烧可稳定性发展为嘈杂的时期倍增分叉的假设。由于循环分散不是纯随机过程,因此在精益条件下对发动机诊断和控制的重要意义可能具有重要意义。

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