Project supported by the National Natural Science Foundation of China(Grant No.11672135);a Foundation for the Author of National Excellent Doctoral Dissertation of China(Grant No.201461)
Based on the Fourier–Chebyshev spectral method, the control of turbulent channel flow by space-dependent electromagnetic force and the mechanism of drag reduction are investigated with direct numerical simulation(DNS...
Project supported by the National Natural Science Foundation of China (Grant No. 51177101)
The electron swarm parameters including the density-normalized effective ionization coefficients(α-η)/N and the electron drift velocities V e are calculated for a gas mixture of CF3I with N2 and CO2 by solving the...
Project supported by the National Natural Science Foundation of China (Grant Nos. 11105097, 10975075 and 11175089);the National Basic Research Program of China (Grant No. 2012CB921900);the National Research Foundation and Ministry of Education, Singapore (Grant No. WBS: R-710-000-008-271)
The special relativity is the foundation for many branches of modern physics, of which the theoretical results are far beyond our daily experience and hard to realized in kinematic experiments. However, its outcomes c...
Project supported by the Key Project of the Educational Department of Hunan Province of China (Grant No. 04A058);the General Project of the Educational Department of Hunan Province of China (Grant No. 07C754)
By using the three-dimensional complex Ginzburg--Landau equation with cubic--quintic nonlinearity, this paper numerically investigates the interactions between optical bullets with different velocities in a dissipativ...
The ratios of transfer ionization (TI) to single-electron capture (SC) cross sections have been measured for the collisions of partially stripped C^q+ ions (q = 1-4) with He. The collision velocity ranges from ...