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Dynamics of small oscillations in a low-inertia rotor of a low-discharge centrifugal pump with hydrostatic bearings

Authors: Zakharova E.V., Protopopov A.A.
Published in issue: #5(10)/2017
DOI: 10.18698/2541-8009-2017-5-95


Category: Power, Metallurgic and Chemical Engineering | Chapter: Hydraulic Machines and Hydropneumatic units

Keywords: low-inertia rotor, hydrostatic bearings, mathematical model, steady-state rotor angular velocity, pump specifications
Published: 26.04.2017

We studied oscillation dynamics for a low-inertia rotor of a low-discharge centrifugal pump with hydrostatic bearings and semi-open impellers so as to find the steady-state rotor angular velocity. We derived an equation for rotor angular velocity as a function of time from the equations of torques affecting the pump shaft. The steady-state angular velocity for preset parameter values was determined graphically. We also derived the steady-state angular velocity as a function of pump specifications.


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