首页> 外文期刊>Proceedings of the Institution of Mechanical Engineers, Part D. Journal of Automobile Engineering >Development of an advanced turbocharger simulation method for cycle simulation of turbocharged internal combustion engines
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Development of an advanced turbocharger simulation method for cycle simulation of turbocharged internal combustion engines

机译:先进的涡轮增压器仿真方法的开发,用于涡轮增压内燃机的循环仿真

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摘要

An advanced turbocharger simulation method for engine cycle simulation was developed on the basis of the compressor two-zone flow model and the turbine mean-line flow model. The method can be used for turbocharger and engine integrated design without turbocharger test maps. The sensitivities of the simulation model parameters on turbocharger simulation were analysed to determine the key modelling parameters. The simulation method was validated against turbocharger test data. Results show that the methods can predict the turbocharger performance with a good accuracy, less than 5 per cent error in general for both the compressor and the turbine. In comparison with the map-based extrapolation methods commonly used in engine cycle simulation tools such as GT-POWER, the turbocharger simulation method showed significant improvement in predictive accuracy to simulate the turbocharger performance, especially in low-flow and low-operating-speed conditions.
机译:在压缩机两区流模型和涡轮平均线流模型的基础上,开发了一种先进的用于发动机循环仿真的涡轮增压器仿真方法。该方法可用于没有涡轮增压器测试图的涡轮增压器和发动机集成设计。分析了仿真模型参数对涡轮增压器仿真的敏感性,以确定关键的建模参数。针对涡轮增压器测试数据验证了该仿真方法。结果表明,这些方法可以很好地预测涡轮增压器的性能,对于压缩机和涡轮而言,误差一般都小于5%。与通常在诸如GT-POWER之类的发动机循环仿真工具中使用的基于地图的外推方法相比,涡轮增压器仿真方法在模拟涡轮增压器性能的预测精度方面表现出了显着的提高,尤其是在低流量和低运转条件下。

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