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Development of Semi-Empirical Damping Equation for Baffled Tank with Oblate Spheroidal DomePropellant slosh is a potential source of disturbance that can significantly impact the stability of space vehicles. The slosh dynamics are typically represented by a mechanical model of a spring-mass-damper. This mechanical model is then included in the equation of motion of the entire vehicle for Guidance, Navigation and Control analysis. The typical parameters required by the mechanical model include natural frequency of the slosh, slosh mass, slosh mass center location, and the critical damping ratio. A fundamental study has been undertaken at NASA MSFC to understand the fluid damping physics from a ring baffle in the barrel section of a propellant tank. An asymptotic damping equation and CFD blended equation have been derived by NASA MSFC team to complement the popularly used Miles equation at different flow regimes. The new development has found success in providing a nonlinear damping model for the Space Launch System. The purpose of this study is to further extend the semi-empirical damping equations into the oblate spheroidal dome section of the propellant tanks. First, previous experimental data from the spherical baffled tank are collected and analyzed. Several methods of taking the dome curvature effect, including a generalized Miles equation, area projection method, and equalized fill height method, are assessed. CFD simulation is used to shed light on the interaction of vorticity around the baffle with the locally curved wall and liquid-gas interface. The final damping equation will be validated by a recent subscale test with an oblate spheroidal dome conducted at NASA MSFC.
Document ID
20170000431
Acquisition Source
Marshall Space Flight Center
Document Type
Abstract
Authors
Yang, H. Q.
(Jacobs Engineering and Science Services and Skills Augmentation Group (ESSSA) Huntsville, AL, United States)
West, Jeff
(NASA Marshall Space Flight Center Huntsville, AL, United States)
Brodnick, Jacob
(Jacobs Technology, Inc. Huntsville, AL, United States)
Eberhart, Chad
(Jacobs Technology, Inc. Huntsville, AL, United States)
Date Acquired
January 13, 2017
Publication Date
December 5, 2016
Subject Category
Fluid Mechanics And Thermodynamics
Report/Patent Number
M16-5415
Report Number: M16-5415
Meeting Information
Meeting: JANNAF Modeling and Simulation (MSS) Meeting
Location: Phoenix, AZ
Country: United States
Start Date: December 5, 2016
End Date: December 8, 2016
Sponsors: Department of the Navy, Department of the Army, NASA Headquarters, Department of the Air Force
Funding Number(s)
CONTRACT_GRANT: NNM12AA41C
Distribution Limits
Public
Copyright
Public Use Permitted.
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