首页> 外文会议>American Society of Mechanical Engineers(ASME) Turbo Expo vol.5 pt.A; 20040614-17; Vienna(AT) >THE PULSATING FLOW FIELD IN A MIXED FLOW TURBOCHARGER TURBINE: AN EXPERIMENTAL AND COMPUTATIONAL STUDY
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THE PULSATING FLOW FIELD IN A MIXED FLOW TURBOCHARGER TURBINE: AN EXPERIMENTAL AND COMPUTATIONAL STUDY

机译:混流涡轮增压涡轮的脉动流场:实验与计算研究

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The turbine stage of an automotive pulse system turbocharger is subjected to an unsteady pulsating flow field due to the rapid opening and closing of the reciprocating engine exhaust valves. This leads to a complex and highly disturbed flow field within the delivery volute and turbine passages, which results in an unusual 'hysteresis' type performance characteristic. The aim of this paper is to investigate the flow field within the turbine stage under these representative conditions, using a computational method validated against experimental data. This paper is separated into two sections. The first deals with the validation of the numerical code and modeling approach. A mesh dependency study is undertaken with cell discretization ranging 200,000, 850,000 and 1,750,000 cells, where the accuracy is assessed through comparison with experimental performance and flow field measurements. The second part presents an investigation of the flow field under pulse conditions. Time accurate spectra of turbine performance and flow properties at various locations in the turbine stage are presented, as well as contour plots of velocity within a turbine passage at two critical positions during the pulse period.
机译:由于往复式发动机排气门的快速打开和关闭,汽车脉冲系统涡轮增压器的涡轮级经受不稳定的脉动流场。这导致在蜗壳和涡轮通道内形成复杂且高度混乱的流场,从而导致异常的“滞后”型性能特征。本文的目的是使用针对实验数据进行验证的一种计算方法来研究在这些代表性条件下涡轮级内的流场。本文分为两部分。首先涉及数字代码和建模方法的验证。进行网格依赖性研究,对单元离散化范围为200,000、850,000和1,750,000的单元进行离散,其中通过与实验性能和流场测量结果进行比较来评估准确性。第二部分介绍了脉冲条件下的流场。给出了涡轮级中各个位置的涡轮性能和流动特性的时间精确频谱,以及脉冲周期内两个关键位置处涡轮通道内速度的等高线图。

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