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Heat transfer modeling in exhaust systems of high-performance two-stroke engines

机译:高性能二冲程发动机排气系统中的传热建模

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摘要

Heat transfer from the hot gases to the wall in exhaust systems of high-performance two-stroke engines is underestimated using steady state with fully developed flow empirical correlations. This fact is detected when comparing measured and modeled pressure pulses in different positions in the exhaust system. This can be explained taking into account that classical expressions have been validated for fully developed flows, a situation that is far from the flow behavior in reciprocating internal combustion engines. Several researches have solved this phenomenon in four-stroke engines, suggesting that the unsteady flow is strongly linked to the heat transfer. This research evaluates the correlations proposed by other authors in four stroke engines and introduces a new heat transfer model for exhaust systems in two-stroke, high performance, gasoline engines. The model, which accounts for both the entrance length effect and flow velocity fluctuations, is validated against experimental measurements. Comparisons of the proposed model with other models are performed, showing not negligible differences in the scavenge process related parameters.
机译:高性能的二冲程发动机排气系统中从热气到壁的热传递是通过稳态和充分发展的流量经验相关性低估的。当比较排气系统中不同位置的测量压力脉冲和模型压力脉冲时,可以检测到这一事实。可以考虑到经典表达式已针对充分发展的流量进行了验证来进行解释,这种情况与往复式内燃机的流量行为相去甚远。多项研究已经解决了四冲程发动机中的这种现象,这表明不稳定流动与传热密切相关。这项研究评估了其他作者在四冲程发动机中提出的相关性,并为二冲程,高性能汽油发动机的排气系统引入了新的传热模型。该模型同时考虑了入口长度效应和流速波动,并通过实验测量进行了验证。进行了建议的模型与其他模型的比较,显示清除过程相关参数的差异不可忽略。

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