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3-D COMPUTATIONAL LOSS ANALYSIS OF AN ASYMMETRIC VOLUTE TWIN-SCROLL TURBOCHARGER

机译:对称体积双涡轮增压器的3D计算损失分析

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In times of stringent emission standards for automotive and truck applications, exhaust gas recirculation (EGR) is used in IC engines to reduce NO_x emissions by recirculating a portion of an engine's exhaust gas. The amount of exhaust gas determined for EGR is withdrawn from the exhaust gas route and routed back into the combustion chamber. The recirculated exhaust gas acts as an inert gas and, when mixed with the pre-combustion mixture, helps to decrease the combustion temperature and thus NO_x emissions. Designed for a diesel engine within a truck application, the turbine in this particular research project is fed by two cylinder groups, however, only the exhaust gas of one group is recirculated. The reduced mass flow in the small turbine scroll (EGR-scroll) through EGR withdrawal, along with the increased pressure required for EGR transport, leads to a massive reduction in the mass flow parameter of the EGR-scroll. The common turbocharger design process has been based on steady admission rather than unsteady admission given through the pulsating nature of multi-cylinder admission. This has lead to diverging results of turbochargers performing well on steady hot gas test rigs compared to performing badly in the final tests on the engine itself. In this paper however, unequal admission resulting from pulsating admission is taken into account. Based on unsteady admission, a methodology is proposed for steady computations with unequal admissions, and a thorough 3D CFD loss analysis is to be presented to understand the turbine behaviour, reveal the regions for improvements, and provide a framework for further development.
机译:在汽车和卡车应用的严格排放标准时代,内燃机中使用了废气再循环(EGR),以通过再循环一部分发动机废气来减少NO_x排放。为EGR确定的废气量从废气路径中排出,并返回到燃烧室中。再循环的废气充当惰性气体,当与预燃烧混合物混合时,有助于降低燃烧温度,从而降低NO_x排放量。该涡轮机是为卡车应用中的柴油发动机设计的,在此特定的研究项目中,涡轮机由两个气缸组供气,但是,只有一组排气被再循环。小型涡轮涡旋(EGR涡旋)通过EGR抽出而减少的质量流量,以及EGR输送所需的压力增加,导致EGR涡旋的质量流量参数大大降低。常见的涡轮增压器设计过程基于稳定进气,而不是基于多缸进气脉动特性给出的不稳定进气。与在发动机本身的最终测试中表现不佳相比,这导致涡轮增压器在稳定的热气测试台上表现良好的结果各不相同。然而,在本文中,考虑了由脉冲式准入引起的不平等准入。基于非稳态进气,提出了一种用于不等进气的稳定计算的方法,并将进行彻底的3D CFD损失分析,以了解涡轮机的性能,揭示需要改进的区域,并提供进一步发展的框架。

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