首页> 外文会议>ASME Turbo Expo: Turbomachinery Technical Conference and Exposition >AERODYNAMIC DESIGN OPTIMIZATION OF A VARIABLE GEOMETRY NOZZLE VANE FOR AUTOMOTIVE TURBOCHARGERS
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AERODYNAMIC DESIGN OPTIMIZATION OF A VARIABLE GEOMETRY NOZZLE VANE FOR AUTOMOTIVE TURBOCHARGERS

机译:汽车涡轮增压器可变几何喷嘴叶片的空气动力学设计优化

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An aerodynamic design optimization study of the nozzle vane of a variable geometry turbine (VGT) turbocharger for a diesel engine application was conducted using the commercial software, ANSYS CFX and DesignXplorer The nozzle design was optimized at three critical engine operating points. The nozzle shape was parameterized using key design parameters including theta angle, thickness value and opening angle. For a good balance of computational time and accuracy, the optimization approach adopted meta-models and response surfaces to represent the training data and reduce the number of simulations required to reach an optimal design. Finally, more than 300 optimized designs were simulated to assess the performance and characteristics of each design. The final optimized nozzle design met all the design constraints and showed an improvement of up to 2% efficiency and reduced the maximum torque by 20% compared to the baseline nozzle.
机译:使用商业软件进行了用于柴油发动机应用的可变几何涡轮机(VGT)涡轮增压器的喷嘴叶片的空气动力学设计优化研究,ANSYS CFX和DesignXplorer在三个关键发动机操作点优化喷嘴设计。 喷嘴形状使用键设计参数参数化,包括θ角,厚度值和开口角度。 为了良好的计算时间和准确性平衡,优化方法采用元模型和响应表面来表示培训数据,并减少达到最佳设计所需的模拟次数。 最后,模拟了300多个优化的设计,以评估每个设计的性能和特性。 最后的优化喷嘴设计符合所有设计约束,并显示出高达2%的效率,并且与基线喷嘴相比,最大扭矩降低了20%。

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