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Bubble Mass Center and Fluid Feedback Force Fluctuations Activated by ConstantLateral Impulse with Variable Thrust

机译:具有可变推力的ConstantLateral Impulse激活气泡质心和流体反馈力波动

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Sloshing dynamics within a partially filled rotating dewar of superfluid helium 2are investigated in response to constant lateral impulse with variable thrust. The study, including how the rotating bubble of superfluid helium 2 reacts to the constant impulse with variable time period of thrust action in microgravity, how amplitudes of bubble mass center fluctuates with growth and decay of disturbances, and how fluid feedback forces fluctuates in activating on the rotating dewar through the dynamics of sloshing waves are investigated. The numerical computation of sloshing dynamics is based on the non-inertial frame spacecraft bound coordinate with lateral impulses actuating on the rotating dewar in both inertial and non-inertial frames of thrust. Results of the simulations are illustrated.

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