首页> 外文期刊>Proceedings of the Institution of Mechanical Engineers, Part D. Journal of Automobile Engineering >Experimental testing of an active control turbocharger turbine inlet equipped with a sliding sleeve nozzle
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Experimental testing of an active control turbocharger turbine inlet equipped with a sliding sleeve nozzle

机译:配有滑套喷嘴的主动控制涡轮增压器涡轮进口的实验测试

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The current paper presents the performance results of a variable-flow turbocharger turbine, called the active control turbocharger. Driven by the need to comply with increasingly strict emissions regulations as well as to strive continually for a better overall performance, the active control turbocharger is intended to provide an improvement over the current state-of-the-art turbochargers, namely the variable-geometry turbocharger. In this system, the nozzle is able to alter the throat inlet area of the turbine according to the variation in the energy (the pressure, temperature and mass flow) of each engine exhaust gas pulse with the intention of capitalising upon the untapped high-energy content of these pulses. The paper concentrates on the potential gain in the turbine expansion ratio and the eventual power output, as well as the corresponding effects on the efficiency as a result of operating the turbocharger in its active control mode compared with its operation as a standard variable-geometry turbocharger. This has meant actuation of the nozzle according to the pulse frequency, for different amplitudes and phase settings. The pulsating flow turbine power recovered increased by more than 15% compared with that from an equivalent variable-geometry turbocharger turbine, with the best phase offset between the minimum nozzle position and the start of the pulse (among the four tested) being 60°.
机译:本文介绍了可变流量涡轮增压器涡轮机(称为主动控制涡轮增压器)的性能结果。在需要遵守日益严格的排放法规以及不断努力以实现更好的整体性能的推动下,主动控制涡轮增压器旨在提供对当前最先进的涡轮增压器(即可变几何形状)的改进涡轮增压器。在该系统中,喷嘴能够根据每个发动机废气脉冲的能量(压力,温度和质量流)的变化来改变涡轮机的喉部入口面积,以充分利用未开发的高能这些脉冲的内容。本文着重于涡轮膨胀比的潜在增益和最终的功率输出,以及将涡轮增压器以主动控制模式运行(与作为标准可变几何涡轮增压器运行相比)对效率的相应影响。 。这意味着对于不同的振幅和相位设置,根据脉冲频率来致动喷嘴。与同等可变几何涡轮增压器涡轮机相比,回收的脉动流涡轮机功率增加了15%以上,最小喷嘴位置和脉冲开始之间(在四个测试中)的最佳相位偏移为60°。

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