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The acoustics of racing engine intake systems

机译:赛车发动机进气系统的声学

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摘要

Naturally aspirated racing engines have tuned intake systems and can now achieve volumetric efficiencies in excess of 125% and peak engine speeds in excess of 18,000 rev/min.Engines designed for single seater racing commonly dispense with the intake manifold and its convoluted and restricting flow path preferring single lengths of pipe feeding each cylinder separately.An investigation into the intake process on a single cylinder racing engine has shown that inertial ram effects make a strong contribution to the intake process at high engine speeds whereas acoustic resonance effects are more important to the rather weak wave action that occurs at low engine speeds. An acoustic model of the resonant wave action has proved useful in distinguishing between these two effects. The attributes of the acoustic model have been compared to those of more traditional time-marching gas-dynamics calculation methods.A decoupled hybrid method has been shown to yield calculations of the wave dynamics in the intake system of a single cylinder racing engine that show fair agreement with measured results up to the 10th harmonic of the engine cycle frequency.In a case study, the intake characteristics of a single cylinder racing engine have been shown to differ only slightly from those expected from the V10 engine on which it is based, although this will only be the case when the dimensions of the intake system are chosen appropriately.
机译:自然吸气赛车引擎已对进气系统进行了调整,现在可以实现超过125%的容积效率和超过18,000转/分钟的峰值发动机速度。为单座赛车设计的引擎通常省去了进气歧管及其涡流和限制流道对单缸赛车发动机的进气过程进行的研究表明,惯性冲压效应对发动机转速较高时的进气过程有很大贡献,而声共振效应对发动机的进气更为重要。在低发动机转速下发生的微弱波浪作用。事实证明,共振波作用的声学模型有助于区分这两种效应。将声学模型的属性与更传统的时间行进气体动力学计算方法进行了比较。一种解耦混合方法已被证明可以对单缸赛车发动机进气系统中的波浪动力学进行计算在一个案例研究中,单缸赛车发动机的进气特性与它所基于的V10发动机的进气特性仅略有不同,尽管与发动机循环频率的10次谐波的测量结果一致。只有在适当选择进气系统尺寸的情况下,才会出现这种情况。

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  • 作者

    Harrison M. F.; Dunkley A.;

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  • 年度 2004
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  • 原文格式 PDF
  • 正文语种 {"code":"en","name":"English","id":9}
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