Results 151 to 160 of about 494 (186)
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Fuel slosh in skewed tanks

Journal of Guidance, Control, and Dynamics, 1996
Previous treatments of fuel slosh coupling with aircraft dynamics are extended to the case in which fuel tanks are skewed to the direction of flight, as in swept wing tanks. General and linearized equations of motion are developed and example calculations are made based on the Boeing 747-100 airplane.
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Simulation of Sloshing Loads on Moving Tanks

24th International Conference on Offshore Mechanics and Arctic Engineering: Volume 3, 2005
The aim of the presentation is to demonstrate the possibilities of predicting loads on partially submerged, moving structures, in particular on tanks in ships and on offshore platforms. Since tanks can in reality move arbitrarily, we are using the moving grid approach and a Finite Volume solution method designed to cater for arbitrary motions of ...
Milovan Peric“, Tobias Zorn
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Analysis of Sloshing in Tanks Using Image Processing

2017
Sloshing is referred to as the violent movement of liquid in a partially filled tank that undergoes dynamic motion. There are several examples of such types of motions. In ships, sloshing motion occur in oil tankers, liquefied natural gas carriers and large fuel oil tanks.
Rahul Kamilla, Vishwanath Nagarajan
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Numerical Simulations of Sloshing in Rectangular Tanks

Volume 4: Terry Jones Pipeline Technology; Ocean Space Utilization; CFD and VIV Symposium, 2006
Simulations of two- and three-dimensional sloshing in rectangular tanks are performed using the commercial CFD code FLOW3D. Small amplitude freely oscillating sloshing and non-linear sloshing due to forced excitation were investigated. The results are compared to both experimental results and other numerical results; and tests are made with different ...
Samuel R. Ransau, Ernst W. M. Hansen
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Motion Prediction of the Ship With Sloshing Tanks

Volume 4: Ocean Engineering; Ocean Renewable Energy; Ocean Space Utilization, Parts A and B, 2009
Sloshing flow in ship tanks is excited by ship motions, but it affects the ship motions in reverse. This paper focuses on the motion responses of the ship in waves with consideration of coupled effects with sloshing in tanks. A three-dimensional panel method in time-domain is applied to solve the ship motion problem, and the sloshing tanks are solved ...
Kang Zou, Quan-ming Miao, Ren-qing Zhu
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Study of Sloshing Flow in a Rectangular Tank

Transactions of the Korean Society of Mechanical Engineers B, 2011
The two-dimensional sloshing problem in a rigid rectangular tank with a free surface is considered. The flow is generated by a container in harmonic motion in time along the horizontal axis, i.e., a container excited by u=Asin() where u denotes the container velocity imposed externally, A is the amplitude of the oscillation velocity, and f is the ...
Ji, Y.M.   +3 more
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A Nonlinear Theory of Sloshing in Rectangular Tanks

Journal of Ship Research, 1974
A two-dimensional, rigid, rectangular, open tank without baffles is forced to oscillate harmonically with small amplitudes of sway or roll oscillation in the vicinity of the lowest natural frequency for the fluid inside the tank. The breadth of the tank is 0(1) and the depth of the fluid is either 0(1) or in-finite.
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Sloshing of liquids in axisymmetric ellipsoidal tanks

2nd Aerospace Sciences Meeting, 1965
Natural frequencies and modes of oscillation of liquids in partially filled axisymmetric ellipsoidal tanks calculated, using variational ...
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SLOSHING IN A CIRCULAR CONICAL TANK

Hybrid Methods in Engineering, 2001
I. P. Gavrilyuk   +2 more
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