54
F. A. Maksimov
Fig. 5.3 Number N of the Taylor vortices depending on L
Fig. 5.4 Example of establishment of solution regarding total kinetic energy of motion in time:
a circumferential direction, L = 0.835, b radius direction (black lines 1) and axis of the cylinders
(red lines 2), L = 1.393, c circumferential direction, L = 1.393, d radius direction (black lines 1)
and axis of the cylinders (red lines 2), L = 0.835, e circumferential direction, L = 1.578, f radius
direction (black lines 1) and axis of the cylinders (red lines 2), L = 1.578
F. A. Maksimov
Fig. 5.3 Number N of the Taylor vortices depending on L
Fig. 5.4 Example of establishment of solution regarding total kinetic energy of motion in time:
a circumferential direction, L = 0.835, b radius direction (black lines 1) and axis of the cylinders
(red lines 2), L = 1.393, c circumferential direction, L = 1.393, d radius direction (black lines 1)
and axis of the cylinders (red lines 2), L = 0.835, e circumferential direction, L = 1.578, f radius
direction (black lines 1) and axis of the cylinders (red lines 2), L = 1.578
