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The authors then performed computational fluid dynamics (CFD) simulations using the commercial CFD software FLUENT and GAMBIT to analyze the static rotor aerodynamics of those models.
A detailed analysis and software engineering applied to the static rotor resistance-capacitor drive system under steady state and dynamic conditions are presented.
In the present study, a curtain has been designed to increase the low performance of the Savonius wind rotor, a type of vertical-axis wind rotor, and the effect of this curtain on the static rotor performance has been analyzed both experimentally and numerically.
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A WRIM with static rotor-capacitor drive system with constant air gap flux, the electromagnetic torque is directly proportional to rotor rectified current.
A procedure is established for rapidly estimating the sizes and dispositions of large-amplitude vibrations resulting from the combined action of rotating and static forces in rotor assemblies incorporating oil-film bearings and dampers.
They found that all helical rotors have a positive coefficient of static torque at all rotor angles, but the rotors with a shaft had a lower power coefficient than those without.
Pressures around the concave and convex surfaces of each blade, as well as the static torque for the rotor models, were measured.
In a particular case of static air-gap eccentricity, rotor geometric axis is not parallel to stator geometric axis; the degree of eccentricity gradually changes along stator axis, which is inclined static eccentricity [3].
Bushing's temperature decreases with the increasing of formation temperature, but increases with the increasing static pressure and the rotor speed.
Experiments of the curtain design have been conducted in three different dimensions when the Savonius wind rotor is static, and the highest values have been obtained with the curtain 1.
The influence of the rotor's static misalignment, represented by the gravity parameter, W, on its response was found to be dependent on the magnitude of the geometric coupling parameter, α.
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