热燃气试验台涡轮滞后测量

Gabriel Dimech, M. Farrugia
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引用次数: 0

摘要

发动机小型化已被汽车工业广泛用于降低发动机排放。与发动机小型化相结合,涡轮增压通常用于提供与以前的大容量发动机相当的功率输出。然而,由于不可避免的涡轮滞后,涡轮增压通常受到批评。本文详细介绍了在马耳他大学热燃气试验台进行涡轮滞后测量的实验方法。涡轮滞后测量源于实验研究,旨在利用压缩空气注入压气机外壳,撞击压气机叶片,从而带动涡轮增压器(即类似于脉冲涡轮)。本文的重点是该热燃气试验台如何提供了一种非常有益的方法来测量涡轮滞后,而没有伴随的内燃机的复杂性和相互作用。此外,还发现涡轮滞后测量可以在这个试验台上完成,而不需要点燃燃烧室,即使用更多的空气流量来代替高温,这足以提供具有代表性的涡轮增压器操作。
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Turbo-Lag Measurement on a Hot Gas Test Stand
Engine downsizing has been widely used by the automotive industry to lower engine emissions. In conjunction with engine downsizing, turbocharging is typically used to provide equivalent power output to the previous large capacity engines. However, turbocharging is typically criticized due to the inevitable turbo-lag. In this paper, the experimental approach adopted to measure turbo-lag as performed on the University of Malta Hot Gas Test Stand is detailed. The turbo-lag measurement was stemmed from experimental research aimed at utilizing compressed air injection into the compressor housing to impinge on the compressor blades and therefore spool up the turbocharger (i.e. similar to impulse turbine). The focus in this paper is how this Hot Gas Test Stand provided an extremely beneficial method to measure turbo-lag without the complications and interactions of an accompanying internal combustion engine. Furthermore it was found that the turbo-lag measurements can be done on this test stand without firing up the combustion chamber, i.e. using more air flow in lieu of high temperature, was found to be adequate to provide representative turbocharger operation.
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