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Characterization of double-entry turbine coupled with gasoline engine under in- and out-phase admission

机译:用汽油发动机耦合的双入口涡轮机的特征

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The engine boosting system is one of the advanced technologies for engine downsizing. It reduces polluting emissions for diesel and gasoline engines. Double entry turbine turbocharger technology, typically used in diesel engines pressure boosting, plays a key role in improving horsepower and reducing wave interference between cylinders. The present work attempts to contribute to the knowl-edge of the double-entry turbine behavior for gasoline engines by the means of a comparative study between in-phase and out-phase admission modes. The turbine is modeled under the entire range of the gasoline engine flow pulse frequency from 33.33 Hz up to 200 Hz. From the numerical results, it was revealed that the outer limb of the double-entry turbine has a lower ability to swallow flow from the engine exhaust manifold compared to the inner limb under the out-phase admission mode. In this condition, the turbine total-to-static efficiency is increased by 10% compared to the in-phase admission mode. The results revealed a significant reduction in the hysteresis loop area of the total-to-static effi-ciency up to 35% under the out-phase admission mode. (c) 2021 Published by Elsevier Ltd.
机译:发动机升压系统是发动机缩小化的先进技术之一。它减少了柴油和汽油发动机的污染排放。双入口涡轮机涡轮增压器技术通常用于柴油发动机的压力升压,在改善马力和降低气缸之间的波干干扰方面起着关键作用。目前的工作试图通过同相和超相入口模式之间的比较研究的手段,为汽油发动机的双入口涡轮机行为的知识 - 边缘有助于。该涡轮机在汽油发动机流量脉冲频率的整个范围内建模,从33.33 Hz到200 Hz。从数值结果中,揭示了双入口涡轮机的外部肢体具有较低的能力,其能够与外腹部进入模式相比从发动机排气歧管吞咽流动。在这种情况下,与同相进入模式相比,涡轮总对静态效率增加了10%。结果表明,在外相进入模式下,滞后环区域的滞后环面积高达35%的显着降低。 (c)2021由elestvier有限公司出版

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