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Analytical study on the influence of valve pumping work on engine efficiency

机译:气门抽油工作对发动机效率影响的分析研究

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摘要

Driving cycles like WLTP and the consideration of real driving emissions increase the relevance of load-dependent process losses for the prediction of engine efficiency based on engine process simulation. The contribution of valve pumping work to the total gas exchange losses of an internal combustion engine is usually neglected during engine conception. However, its share of the total gas exchange power losses increases with engine load. Within this paper, the variation of load, engine speed and valve timings on valve pumping work is investigated on a theoretical basis using 1D-CFD-simulation for a three-cylinder turbo-charged gasoline engine. Further, the influence of the valve lift curve design on valve pumping work is evaluated. The consideration of valve pumping work can increase the accuracy of the engine efficiency prognosis based on engine process simulations. A comparison with results from the literature points out that 3D-CFD-based evaluations of the valve gas forces can provide even more accurate results than the conventional calculation approach which is presented within scope of this publication. Hence, future works on this subject might include the improvement of the standard calculation approach on an either physical or empirical basis considering valve and seat ring design details as parameters.
机译:像WLTP这样的驾驶循环以及对实际驾驶排放量的考虑,都增加了基于负载的过程损失与基于发动机过程仿真预测发动机效率的相关性。在发动机构想期间,通常忽略了阀泵工作对内燃机总的气体交换损失的贡献。但是,其在总气体交换功率损失中所占的份额随发动机负载而增加。在本文中,使用一维CFD仿真对三缸涡轮增压汽油机的理论基础上,研究了气门抽运过程中负载,发动机转速和气门正时的变化。此外,评估了气门升程曲线设计对气门抽运工作的影响。气门抽气工作的考虑可以提高基于发动机过程仿真的发动机效率预测的准确性。与文献结果的比较指出,基于3D-CFD的阀门气动力评估可以提供比本出版物范围内介绍的常规计算方法更为准确的结果。因此,关于该主题的未来工作可能包括在物理或经验基础上改进标准计算方法,并将阀门和阀座设计细节作为参数。

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