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Numerical investigation on synthetic jet flow control inside an S-inlet duct 被引量:6

Numerical investigation on synthetic jet flow control inside an S-inlet duct
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摘要 The high degree of centerline curvature and cross-stream pressure gradient in S-inlet ducts gives rise to boundary layer separation and secondary flows, which result in poor pressure recovery and non-uniform flow in the outlet interface with the engine. The flowfield in ducts is three-dimensional due to the existence of secondary flow, so ordinary two-dimensional actuations have poor effect on reforming the flow. Synthetic jet actuations extended in different spanwise positions were employed to manipulate the flow, and compared with the two-dimensional actuation, The interaction mechanics between flow separation and secondary flow was studied at first. It was found that the secondary flow enhanced Ol~ weakened flow separation depending on the spanwise position of synthetic jet actuators. Moreover, the J flow separation enhanced the secondary flow, thus causing lower pressure recovery and flow distortion in the duct outlet. The actuators located at different spanwise positions will weaken the secondary flows by improving the flow separation to get energetic and uniform main flow.
出处 《Science China(Technological Sciences)》 SCIE EI CAS 2012年第9期2578-2584,共7页 中国科学(技术科学英文版)
基金 supported by the National Natural Science Foundation of China (Grant No. 50976007)
关键词 S-inlet duct synthetic jet flow control pressure RECOVERY swirl flow 合成射流 数值研究 流控制 进气道 二次流动 流动分离 压力恢复 边界层分离
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