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Validation of PANS and active flow control for a generic truck cabin

机译:通用卡车舱的平底锅验证和主动流量控制

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摘要

AbstractThis paper presents a drag reduction study using active flow control (AFC) on a generic bluff body. The model consists of a simplified truck cabin, characterized by sharp edge separation on top and bottom edges and pressure induced separation on the two other rounded vertical front corners. The pressure induced separation reproduces the flow detachment occurring at the front A-pillar of a real truck (Schuetz, 2015). The prediction of the flow field by partially averaged Navier-Stokes (PANS) simulations, conducted on a relatively coarse mesh, is validated against wind tunnel data (pressure measurements and particle image velocimetry (PIV)) and resolved large eddy simulations (LES) data. The Reynolds number for both simulations and experiments isRe=5×105(which corresponds to 1/6 of a full scale truckRe) based on the inlet velocityUinfand the width of the model
机译:<![CDATA [ 抽象 本文介绍了在通用虚张机身上的主动流量控制(AFC)的阻力减少研究。该模型由简化的卡车舱组成,其特征在于顶部和底部边缘和底部边缘的锋利边缘分离,以及两个其他圆形垂直前角的压力诱导分离。压力诱导的分离再现在真正卡车前支柱处发生的流动脱离(Schuetz,2015)。通过部分平均的Navier-Stokes(平移)在相对粗糙的网格上进行预测,在相对粗糙的网格上进行验证,用于防风隧道数据(压力测量和粒子图像VELOCIMETRY(PIV))并解决了大涡模拟(LES)数据。模拟和实验的雷诺数是 R E = 5 < / mml:mn> × 10 5 (对应于满量程卡车的1/6 r E )基于入口速度 u I N F 和型号的宽度

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