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Unsteady Lifting-Surface Theory for Ship Screws: Derivation and Numerical Treatment of Integral Equation

Journal of Ship Research, 1975
In an early stage of studies concerned with lifting-surface theory for ship screws, the Netherlands Ship Model Basin initiated the development of a numerical solution of the mathematical model. To achieve this, a rigorous method was followed consisting of separation of regular and singular parts of the kernel of the integral equation, preparation of ...
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Comments on Jacobs and Tsakonas: “Propeller Loading-Induced Velocity Field by Means of Unsteady Lifting Surface Theory”

Journal of Ship Research, 1982
In the cited paper (2) a formula is given for the lth Fourier component of the velocity potential of an N-bladed propeller [equations (9) and (10) of the paper], (2). The total velocity potential is then, of course, given by the sum of all the components.
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UNSTEADY AERODYNAMIC THEORY OF LIFTING SURFACES AND THIN ELASTIC BODIES UNDERGOING ARBITRARY SMALL MOTIONS IN A SUPERSONIC FLOW FIELD

The Quarterly Journal of Mechanics and Applied Mathematics, 1987
This paper deals with a formulation of the unsteady aerodynamic theory of lifting surfaces that undergo arbitrary small motions in a supersonic flow environment. In its approach, the expression correlating (in the time domain) the pressure distribution to the downwash distribution is established and some properties of the associated kernel function are
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J0910201 Flutter Analysis of a Rectangular Shell Based on the Non-Planar Unsteady Lifting Surface Theory

The Proceedings of Mechanical Engineering Congress, Japan, 2014
Hiroya ITOH   +2 more
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Lifting confinement

Nature Reviews Materials, 2022
exaly  

A lifting surface theory based on an unsteady linearized transonic flow model

19th Structures, Structural Dynamics and Materials Conference, 1978
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J052024 Flutter Analysis of Cubic Cylindrical Shell Structures Based on the Non-Planar Unsteady Lifting Surface Theory

The Proceedings of Mechanical Engineering Congress, Japan, 2013
Hiroya ITOH   +2 more
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S1650102 Flutter Analysis of a Rectangular Sheet Based on the Unsteady Lifting Surface Theory and Wind-Tunnel Experiments : Influence of Aspect Ratio

The Proceedings of Mechanical Engineering Congress, Japan, 2014
Aki HASEGAWA   +2 more
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