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A NEW PARTIAL ADMISSION METHOD FOR TURBOCHARGER TURBINE CONTROL AT OFF-DESIGN

机译:螺旋充气机涡轮机控制的新部分录取方法

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A new method for turbocharger control in automotive applications is presented. It is called MEDUSA (Multiple Exhaust DUct with Source Adjustment, European patent application number: 21326 - EP ) and is a partial admission system consisting of several separate flow channels that connect the exhaust duct of the engine and individual nozzle segments of the turbine. By opening or closing the individual flow channels using external valves, the turbine flow can be adjusted, hence allowing the whole turbocharger to be controlled. Due to the use of external valves, the system is considerably more robust than other variable geometry systems based on variable inlet guide vanes and thus becomes suitable for application to spark-ignition motors at high temperature. The paper presents a theoretical assessment of this innovative control system, based on one dimensional considerations and CFD simulations. The CFD-calculations of the MEDUSA-system are compared to those of a turbocharger turbine controlled with a variable inlet nozzle. The results indicate that the performance and operating range of the new system is comparable, or even better, than the currently used variable nozzle systems, especially at low load conditions. This indicates that further experimental work is justified as it could become considerably more effective than the typical waste gate systems used in spark ignition engines and provides a new solution for the turbocharger control in these applications. So far, only radial turbines have been considered for application of this method but it could also be used for mixed-flow or axial turbines.
机译:提出了一种新的汽车应用中的涡轮增压器控制方法。它被称为Medusa(具有源调整的多排气管,欧洲专利申请号:21326 - EP),并且是由几个单独的流动通道组成的部分入场系统,该流动通道连接发动机的排气管道和涡轮机的单独喷嘴片段。通过使用外部阀门打开或关闭各个流动通道,可以调节涡轮机流,因此允许控制整个涡轮增压器。由于使用外部阀门,该系统比基于可变入口导向叶片的其他可变几何系统更稳定,因此适用于在高温下应用于火花点火电动机。本文提出了基于一维考虑和CFD模拟的创新控制系统的理论评估。将MEDUSA系统的CFD计算与用可变入口喷嘴控制的涡轮增压器涡轮机的CFD计算。结果表明,新系统的性能和操作范围比目前使用的可变喷嘴系统相当,甚至更好,尤其是在低负载条件下。这表明进一步的实验工作是合理的,因为它可以比火花点火发动机中使用的典型废物系统变得更有效,并且为这些应用中的涡轮增压器控制提供了新的解决方案。到目前为止,只考虑了径向涡轮机用于应用该方法,但也可以用于混合流或轴向涡轮机。

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