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Compressible Turbulent Flow Analysis on Variable Nozzle Vane and Spacer in Turbocharger Turbine

机译:涡轮增压器涡轮可变喷嘴叶片和垫片的可压缩湍流分析

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摘要

In order to develop a high-performance turbocharger turbine, compressible turbulent flow analysis is applied to the complicated flow around the nozzle vanes and the spacers. The flow analysis indicates that a combination of a curved nozzle vane and a round spacer causes a low-velocity region at the inner side of the nozzle vane even when the turbine efficiency is highest. As a result of the loss analysis, a teardrop-shaped spacer, which suppresses the low-velocity region and flow separation, is developed, and shown to improve the turbine efficiency. The easiness of the nozzle vane control is also important As well as the high efficiency. The fluid force on the Nozzle vane depends on the flow pattern; therefore, the Torque about the pivot of the nozzle vane is also Numerical calculated.
机译:为了开发高性能的涡轮增压器涡轮,可压缩湍流分析被应用于围绕喷嘴叶片和隔板的复杂流动。流动分析表明,即使涡轮机效率最高,弯曲的喷嘴叶片和圆形隔圈的组合也会在喷嘴叶片的内侧引起低速区域。作为损失分析的结果,开发了抑制低速区域和流动分离的泪珠状的隔离件,并显示出该隔离件可提高涡轮效率。喷嘴叶片控制的简便性以及高效率也很重要。喷嘴叶片上的流体力取决于流量模式;因此,围绕喷嘴叶片枢轴的扭矩也是数值计算的。

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