| | Rus. | En. |
N. F. Patsegon and
I. E. Tarapov.
Weak discontinuities in a conducting magnetizable medium
[Abstract]
[PDF.eng]
[PDF]
| |
3 |
123 |
N. G. Taktarov and
Chyong Za Bin'.
Stabilization of discontinuity surfaces in magnetizable media by means of a nonuniform magnetic field
[Abstract]
[PDF.eng]
[PDF]
| |
10 |
128 |
M. M. Maiorov and
A. O. Tsebers.
Hydrodynamics of magnetizable suspensions in a traveling magnetic field of a single-sided inductor
[Abstract]
[PDF.eng]
[PDF]
| |
13 |
130 |
M. M. Maiorov.
Experimental study of the permeability of a ferrofluid in an alternating magnetic field
[Abstract]
[PDF.eng]
[PDF]
| |
21 |
135 |
A. A. Kolyshkin.
Steady-state MHD convection in a vertical annular duct in a radial magnetic field
[Abstract]
[PDF.eng]
[PDF]
| |
27 |
140 |
E. E. Son.
Reyleigh-Taylor instability of a conducting viscous fluid in a magnetic field
[Abstract]
[PDF]
[PDF]
| |
35 |
146 |
A. P. Anufriev.
Effect of a magnetic field on the formation of Taylor columns in a rapidly rotating fluid
[Abstract]
[PDF.eng]
[PDF]
| |
39 |
149 |
Yu. V. Nemirovskii and
Ya. L. Kheinloo.
Nonsteady turbulent MHD flows in plane channels and circular tubes
[Abstract]
[PDF.eng]
[PDF]
| |
46 |
154 |
Kh. E. Kalis and
Yu. B. Kolesnikov.
Influence of a homogeneous transverse magnetic field on shear flow of a viscous electrically conducting fluid
[Abstract]
[PDF.eng]
[PDF]
| |
51 |
158 |
K. D. Danov.
Equilibrium and stability of the free surface of a heavy liquid between two charged and slightly bent vertical surfaces
[Abstract]
[PDF.eng]
[PDF]
| |
55 |
161 |
V. V. Gogosov,
E. I. Nikiforovich and
V. V. Tolmachev.
Elektrization of a low-conductivity liquid flowing trough a metal pipe
[Abstract]
[PDF.eng]
[PDF]
| |
59 |
164 |
A. I. Zhakin,
V. Nadeborn and
I. E. Tarapov.
Electroconvective stability of a low-conductivity liquid
[Abstract]
[PDF.eng]
[PDF]
| |
63 |
167 |
V. M. Foliforov.
MHD pumps for the transfer of mercury in electrolytic tanks during production of chlorine and caustic soda
[Abstract]
[PDF.eng]
[PDF]
| |
69 |
171 |
A. M. Anisimov,
V. F. Vasil'ev,
L. V. Lavrent'ev and
V. L. Ovchinnikov.
Interaction of a moving ribbon conductor with the field of a ferromagnetic inductor. II
[Abstract]
[PDF.eng]
[PDF]
| |
75 |
175 |
S. P. Vasil'evskii,
E. F. Belyaev and
P. N. Tsylev.
Analysis of MHD induction machines operating in the dc braking mode
[Abstract]
[PDF.eng]
[PDF]
| |
79 |
178 |
A. B. Kapusta and
V. P. Shamota.
Laminar flow of a conducting fluid in the duct of a linear cylindrical induction pump
[Abstract]
[PDF.eng]
[PDF]
| |
86 |
183 |
O. S. Shchukin.
A new method for improving the performance characteristics of linear induction MHD machines
[Abstract]
[PDF.eng]
[PDF]
| |
89 |
186 |
A. N. Andrianov,
L. V. Vitkovskii and
I. V. Lavrent'ev.
Multipole MHD throttle with annular duct
[Abstract]
[PDF.eng]
[PDF]
| |
94 |
190 |
G. P. Bazarov,
E. N. Kufa and
S. A. Medin.
Influence of the loading factor on the performance characteristics of series MHD generators
[Abstract]
[PDF.eng]
[PDF]
| |
99 |
193 |
Yu. A. Birzvalk,
Ya. Ya. Zandart,
I. N. Mikryukova,
Yu. P. Ushakov,
A. Ya. Shishko and
A. V. Eglitis.
Experimental investigation of a two-channel dc electromagnetic pump
[Abstract]
[PDF.eng]
[PDF]
| |
105 |
197 |
A. I. Khozhainov,
V. I. Andreev and
N. B. Ryskina.
Transient flow of a liquid metal at the electrode of a linear conduction motor
[Abstract]
[PDF.eng]
[PDF]
| |
112 |
202 |
G. Kh. Kirshtein and
V. G. Klimov.
A new method for measuring liquid metal flow rates
[Abstract]
[PDF.eng]
[PDF]
| |
117 |
206 |
A. F. Kolesnichenko.
Capillary MHD flows with free boundaries
[Abstract]
[PDF.eng]
[PDF]
| |
122 |
209 |
N. N. Popov.
Structural analysis of power losses in liquid-metal slip contacts
[Abstract]
[PDF.eng]
[PDF]
| |
129 |
214 |