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Experimental Analysis for Performance Evaluation and Unsteadiness Quantification for One Turbocharger Vane-Less Radial Turbine Operating on a Gasoline Engine

机译:一台汽油发动机无叶片涡轮增压径向涡轮机性能评估和非稳态量化的实验分析

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摘要

Most of the available test rigs of turbochargers use a specified device to reproduce the waveform of the engine exhaust gas which is not physically pertinent regarding that several parameters can influence the pulse form of the flow at the engine exhaust manifold. In order to overcome this drawback, a new test rig of one turbocharger vane-less radial turbine operating on a four-stroke engine to characterize this turbomachine under its real flow conditions was built. Based on test data collected from the test rig, developed at the National School of Engineers of Sfax, a characterization of the turbine performance under different operating conditions has been carried out. To validate the experimental methodology, an uncertainty analysis has been performed. The results prove that the performance and flow characteristics of the studied turbine present a high sensitivity to the gas waveform and the pulse frequency of the flow coming from the engine exhaust manifold. Besides, a Strouhal number analysis using a fast Fourier series transform has been made to characterize the unsteadiness level of the flow within the present turbine. The results show an important impact of the pulse frequency on the turbine unsteady characteristics.
机译:大多数可用的涡轮增压器测试台都使用指定的设备来再现发动机排气的波形,该波形与几个参数可能影响发动机排气歧管处的流量脉冲形式在物理上不相关。为了克服这个缺点,建立了一个新的试验设备,该设备是一个在四冲程发动机上运行的无涡轮增压器无叶片径向涡轮机,以表征该涡轮机在其实际流量条件下的特性。根据从斯法克斯国家工程学院开发的试验台上收集到的试验数据,对不同工况下的涡轮机性能进行了表征。为了验证实验方法,进行了不确定性分析。结果证明,所研究的涡轮机的性能和流动特性对气体波形和来自发动机排气歧管的流动的脉冲频率具有很高的灵敏度。此外,已经进行了使用快速傅里叶级数变换的Strouhal数分析,以表征当前涡轮机内流动的不稳定程度。结果表明,脉冲频率对涡轮机不稳定特性具有重要影响。

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