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LEAN AND STRAIGHT NOZZLE VANES IN A VARIABLE GEOMETRY TURBINE : A STEADY AND PULSATING FLOW INVESTIGATION

机译:可变几何涡轮中的细长喷嘴和直喷嘴:稳定和脉动的流量研究

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Variable Geometry Turbines (VGT) are widely used to improve engine-turbocharger matching and currently common in diesel engines. VGT has proven to provide air boost for wide engine speed range as well as reduce turbo-lag. This paper presents the design and experimental evaluation of a variable geometry mixed flow turbocharger turbine.The tests have been carried out with a permanent magnet eddy current dynamometer within a velocity ratio range of 0.47 to 1.09. The peak efficiency of the variable geometry turbine corresponds to vane angle settings between 60° and 65°, for both the lean and straight vanes in the region of 80%,The variable geometry turbine was tested under pulsating flow with straight and lean nozzle vanes for different vane angle settings, 40Hz and 60Hz flow. In general, the range of mass flow parameter is higher in the straight nozzle vanes with an average of 66.4% and 69.7% for 40Hz and 60Hz flow respectively. The straight nozzle vanes also shows increasing pressure ratio range compared to the lean nozzle vanes, which is more apparent in the maximum pressure ratio experienced by the turbine in an unsteady cycle. In overall, the cycle averaged efficiency in the straight vane configuration is marginally higher than the lean vane. Furthermore, the difference to the equivalent quasi-steady is better in the straight vane configuration compared to the lean vane.
机译:可变几何涡轮机(VGT)被广泛用于改善发动机-涡轮增压器的匹配性,目前在柴油发动机中很常见。事实证明,VGT可以在较宽的发动机转速范围内提供空气助力,并减少涡轮滞后。本文介绍了可变几何混合流涡轮增压器涡轮机的设计和实验评估。 测试是用永磁涡流测功机在0.47至1.09的速比范围内进行的。对于倾斜叶片和直叶片都在80%左右的区域,可变几何涡轮的峰值效率对应于60°至65°之间的叶片角度设置, 可变几何形状的涡轮机在脉动流下使用直喷嘴叶片和倾斜喷嘴叶片进行了测试,以适应不同的叶片角度设置,40Hz和60Hz的流量。通常,在直喷嘴叶片中,质量流量参数的范围较高,对于40Hz和60Hz流量,质量流量参数的平均值分别为66.4%和69.7%。与稀薄喷嘴叶片相比,直喷嘴叶片还显示出增加的压力比范围,这在涡轮机在不稳定的循环中所经历的最大压力比中更加明显。总体而言,直叶片配置中的循环平均效率略高于稀叶片。此外,与稀薄叶片相比,直叶片构造与等效准稳态的差异更好。

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