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高速核心压气机内的非定常粘性流
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作者 Cher.,MA 侯慧敏 《航空发动机》 1993年第4期43-55,共13页
关键词 压气机 定常粘性流 航空发动机
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不可压缩N S方程对气体粘性流的适用性研究 被引量:2
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作者 陈龙康 《深圳大学学报(理工版)》 EI CAS 1999年第4期15-18,共4页
气体定常粘性流在理论上和工程上都是十分重要的问题. 一般NS方程求精确解很困难. 不可压缩NS方程在若干情况下( 如在等截面管道) 已获得精确解. 但不可压缩NS方程是否适用于气体粘性流, 适用条件又是什么, 这是长... 气体定常粘性流在理论上和工程上都是十分重要的问题. 一般NS方程求精确解很困难. 不可压缩NS方程在若干情况下( 如在等截面管道) 已获得精确解. 但不可压缩NS方程是否适用于气体粘性流, 适用条件又是什么, 这是长期未解决的问题. 本文从一般NS方程和连续性方程出发, 对最有实际意义的等截面管道情况, 证明气体定常粘性流并未被压缩, 不可压缩NS方程是适用的. 对气体径向辐射粘性流, 给出了同样证明. 展开更多
关键词 N-S方程 定常粘性流 不可压缩性 气体 适用性
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Numerical computation and analysis of unsteady viscous flow around autonomous underwater vehicle with propellers based on sliding mesh 被引量:4
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作者 高富东 潘存云 韩艳艳 《Journal of Central South University》 SCIE EI CAS 2012年第4期944-952,共9页
The flexible transmission shaft and wheel propeller are combined as the kinetic source equipment, which realizes the nmlti-motion modes of the autonomous underwater vehicle (AUV) such as vectored thruster and wheele... The flexible transmission shaft and wheel propeller are combined as the kinetic source equipment, which realizes the nmlti-motion modes of the autonomous underwater vehicle (AUV) such as vectored thruster and wheeled movement. In order to study the interactional principle between the hull and the wheel propellers while the AUV navigating in water, the computational fluid dynamics (CFD) method is used to simulate numerically the unsteady viscous flow around AUV with propellers by using the Reynolds-averaged Navier-Stokes (RANS) equations, shear-stress transport (SST) k-w model and pressure with splitting of operators (PISO) algorithm based on sliding mesh. The hydrodynamic parameters of AUV with propellers such as resistance, pressure and velocity are got, which reflect well the real ambient flow field of AUV with propellers. Then, the semi-implicit method for pressure-linked equations (SIMPLE) algorithm is used to compute the steady viscous flow field of AUV hull and propellers, respectively. The computational results agree well with the experimental data, which shows that the numerical method has good accuracy in the prediction of hydrodynamic performance. The interaction between AUV hull and wheel propellers is predicted qualitatively and quantitatively by comparing the hydrodynamic parameters such as resistance, pressure and velocity with those from integral computation and partial computation of the viscous flow around AUV with propellers, which provides an effective reference to the shady on noise and vibration of AUV hull and propellers in real environment. It also provides technical support for the design of new AUVs. 展开更多
关键词 computational fluid dynamics sliding mesh wheel propeller autonomous underwater vehicle viscous flow field
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