| | Rus. | En. |
I. E. Taranov.
The hydrodynamics of polarizing and magnetizing media
[Abstract]
[PDF.eng]
[PDF]
| |
3 |
1 |
V. G. Bashtovoi,
B. M. Berkovskii and
A. K. Sinitsyn.
Thermoconvective explosion in a ferromagnetic liquid
[Abstract]
[PDF.eng]
[PDF]
| |
12 |
9 |
A. B. Vatazhin,
E. G. Zvenigorodskii,
Yu. F. Kashkin,
S. A. Regirer and
E. K. Kholshchevnikova.
Electromagnetic characteristics of MHD channels with nonconducting walls at finite Reynolds magnetic numbers
[Abstract]
[PDF.eng]
[PDF]
| |
19 |
15 |
A. I. Bertinov,
L. K. Kovalev,
S. M. Koneev and
Yu. M. Nikitin.
Flow of a real gas in annular channels with curvilinear walls, with high parameters of the magnetohydrodynamic interaction
[Abstract]
[PDF.eng]
[PDF]
| |
31 |
25 |
A. I. Bertinov,
L. K. Kovalev and
V. K. Tyutin.
Transverse edge effects in a rectangular magnetohydrodynamic channel with a sectionalized lateral wall
[Abstract]
[PDF.eng]
[PDF]
| |
39 |
33 |
V. I. Vishnyakov and
K. B. Pavlov.
Wavy flow conditions of a thin film of a conducting liquid in a transverse magnetic field
[Abstract]
[PDF.eng]
[PDF]
| |
47 |
40 |
V. V. Arsenin and
E. D. Sergievskii.
Stabilization of magnetohydrodynamic flows by a distributed feedback system
[Abstract]
[PDF.eng]
[PDF]
| |
53 |
45 |
K. B. Pavlov and
S. L. Simkovich.
Stability of Hartmann flow with respect to two-dimensional perturbations of finite amplitude
[Abstract]
[PDF.eng]
[PDF]
| |
58 |
50 |
D. V. Sharikadze.
Two-dimensional nonstationary flow of a slightly conducting liquid close to the critical point in a magnetic field
[Abstract]
[PDF.eng]
[PDF]
| |
65 |
56 |
Yu. B. Kolesnikov and
A. B. Tsinober.
Magnetohydrodynamic flow in the region of a jump in the conductivity at the wall
[Abstract]
[PDF.eng]
[PDF]
| |
70 |
61 |
I. A. Shvarts.
Rolling of a cylinder in a magnetic field along a surface covered with a layer of an electrically conducting liquid
[Abstract]
[PDF.eng]
[PDF]
| |
75 |
66 |
A. A. Fomin.
Efficiency of induction pumps and bearings
[Abstract]
[PDF.eng]
[PDF]
| |
81 |
72 |
S. V. Vasil'ev.
Magnetic field and currents in plane linear induction pumps with lateral busbars
[Abstract]
[PDF.eng]
[PDF]
| |
88 |
78 |
G. M. Gekht,
A. I. El'kin and
E. I. Yantovskii.
Influence of a gas blast on certain characteristics of a magnetohydrodynamic generator
[Abstract]
[PDF.eng]
[PDF]
| |
97 |
86 |
A. I. Syusyukin.
Single-phase inductor whose field wave has variable phase velocity
[Abstract]
[PDF.eng]
[PDF]
| |
104 |
92 |
Yu. K. Krumin'.
Approximate calculation of electrodynamic forces acting on a sphere in a traveling magnetic field
[Abstract]
[PDF.eng]
[PDF]
| |
111 |
98 |
M. Yu. Abritska,
A. E. Mikel'son,
L. S. Panasyuk and
V. E. Yavich.
Electrodynamic forces in electromagnetic mixing
[Abstract]
[PDF.eng]
[PDF]
| |
115 |
102 |
B. L. Birger.
Circulating currents in the winding of an induction MHD machine with parallel branches in phase
[Abstract]
[PDF.eng]
[PDF]
| |
121 |
108 |
N. M. Nadezhnikov,
A. Ya. Vilnitis and
A. A. Stuken.
Single-section, single-phase conduction pump
[Abstract]
[PDF.eng]
[PDF]
| |
129 |
115 |
V. Kh. Vitol.
Axial field distribution in magnetic system of an MHD conduction pump
[Abstract]
[PDF.eng]
[PDF]
| |
137 |
122 |
V. G. Sirotenko and
V. M. Foliforov.
Multipurpose use of MHD devices in the production of mercury
[Abstract]
[PDF.eng]
[PDF]
| |
140 |
125 |