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首页> 外文期刊>Journal of Engineering for Gas Turbines and Power >Comparison of Computational Fluid Dynamics and Particle Image Velocimetry Data for the Airflow in an Aeroengine Bearing Chamber
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Comparison of Computational Fluid Dynamics and Particle Image Velocimetry Data for the Airflow in an Aeroengine Bearing Chamber

机译:航空发动机轴承室内气流的计算流体动力学和粒子图像测速数据的比较

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摘要

Investigations into the single-phase velocity field of a model aeroengine bearing chamber are presented. Adequately resolving the airflow field is important to subsequent computational modeling of two-phase fluid transport and heat transfer characteristics. A specially designed test rig, representing the features of a Rolls Royce Trent series aeroengine bearing chamber, was constructed. Experimental data for the airflow field was obtained using particle image velocimetry (PIV). The results show a strong influence of shaft rotation and chamber geometry on the flow features within the bearing chamber. A computational fluid dynamics (CFD) simulation was carried out using the commercial CFD code FLUENT 6. Flow features were adequately modeled, showing the features of secondary velocities. Turbulence modeling using the differential Reynolds stress (RSM) model shows good agreement with the experimental data.
机译:提出了对模型航空发动机轴承室的单相速度场的研究。充分解决气流场对于两相流体传输和传热特性的后续计算建模很重要。建造了专门设计的试验台,代表了劳斯莱斯Trent系列航空发动机轴承室的特征。使用粒子图像测速仪(PIV)获得了气流场的实验数据。结果表明,轴旋转和腔室几何形状对轴承腔室内的流动特性有很大影响。使用商业CFD代码FLUENT 6进行了计算流体动力学(CFD)模拟。对流动特征进行了充分建模,显示了次级速度的特征。使用微分雷诺应力(RSM)模型进行的湍流建模与实验数据显示出良好的一致性。

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