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The average vibrational motion of a nonisothermal fluid in a uniformly rotating cavity is described theoretically. Equations are obtained using the averaging technique in the high-frequency vibration approximation. It is found that the rotation significantly affects both the intensity of the average flows and the structure of the pulsatory velocity field generating resonance amplification of the fluid...
Thermal vibrational convection in a cavity subjected to combined translational-rotational high-frequency vibrations is investigated theoretically and experimentally. Attention is concentrated on convection in a plane layer and a coaxial gap. It is shown that the vibrational action of the combined vibration differs qualitatively from purely translational or rotational vibration, being more efficient...
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