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PERTURBATION SOLUTION TO 3-D NONLINEAR SUPERCAVITATING FLOW PROBLEMS

PERTURBATION SOLUTION TO 3-D NONLINEAR SUPERCAVITATING FLOW PROBLEMS
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摘要 A 3-D nonlinear problem of supercavitating flow past an axisymmetric body at a small angle of attack is investigated by means of the perturbation method and Fourier-cosine-expansion method. The first three order perturbation equations are derived in detail and solved numerically using the boundary integral equation method and iterative techniques. Computational results of the hydrodynamic characteristics and cavity shapes of each order are presented for nonaxisymmetric supercavitating flow past cones with various apex-angles at differ- ent cavitation numbers. The numerical results are found in good agreement with experimental data. A 3-D nonlinear problem of supercavitating flow past an axisymmetric body at a small angle of attack is investigated by means of the perturbation method and Fourier-cosine-expansion method. The first three order perturbation equations are derived in detail and solved numerically using the boundary integral equation method and iterative techniques. Computational results of the hydrodynamic characteristics and cavity shapes of each order are presented for nonaxisymmetric supercavitating flow past cones with various apex-angles at differ- ent cavitation numbers. The numerical results are found in good agreement with experimental data.
出处 《Acta Mechanica Sinica》 SCIE EI CAS CSCD 1993年第1期13-21,共9页 力学学报(英文版)
基金 The project supported by the National Natural Science Foundation of China
关键词 supercavitating flow perturbation method nonlinear solution boundary integral equation method Fourier expansion elliptic integrals supercavitating flow perturbation method nonlinear solution boundary integral equation method Fourier expansion elliptic integrals
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