scispace - formally typeset
Search or ask a question
Topic

Added mass

About: Added mass is a research topic. Over the lifetime, 2849 publications have been published within this topic receiving 47899 citations.


Papers
More filters
Journal ArticleDOI
TL;DR: In this paper, the authors derived the characteristic equation of a cantilevered, visco-elastic bending beam (Kelvin-Voigt model), carrying a tip mass.

26 citations

Journal ArticleDOI
TL;DR: In this article, the authors investigated the wave excited motion of a body floating on water confined between two semi-infinite ice sheets and found that the added mass and damping coefficients of the floating body with the effect of the ice sheet and the excitation force varied oscillatorily with the wave number.
Abstract: The wave excited motion of a body floating on water confined between two semi-infinite ice sheets is investigated. The ice sheet is treated as an elastic thin plate and water is treated as an ideal and incompressible fluid. The linearized velocity potential theory is adopted in the frequency domain and problems are solved by the method of matched eigenfunctions expansion. The fluid domain is divided into sub-regions and in each sub-region the velocity potential is expanded into a series of eigenfunctions satisfying the governing equation and the boundary conditions on horizontal planes including the free surface and ice sheets. Matching is conducted at the interfaces of two neighbouring regions to ensure the continuity of the pressure and velocity, and the unknown coefficients in the expressions are obtained as a result. The behaviour of the added mass and damping coefficients of the floating body with the effect of the ice sheets and the excitation force are analysed. They are found to vary oscillatorily with the wave number, which is different from that for a floating body in the open sea. The motion of the body confined between ice sheets is investigated, in particular its resonant behaviour with extremely large motion found to be possible under certain conditions. Standing waves within the polynya are also observed.

26 citations

Journal ArticleDOI
TL;DR: In this paper, a 3D curved lifting line model is developed to predict the propeller performance, and the model is validated with experimental measurements of the classic DTMB propellers 4381-4384 with varying skew.

26 citations

Journal ArticleDOI
TL;DR: In this paper, a semi-analytical method of decomposing the complex axisymmetric boundary into several ring-shaped and stepped surfaces based on the boundary discretization method (BDM) was proposed.
Abstract: The absorber is known to be vertical axisymmetric for a single-point wave energy converter (WEC). The shape of the wetted surface usually has a great influence on the absorber’s hydrodynamic characteristics which are closely linked with the wave power conversion ability. For complex wetted surface, the hydrodynamic coefficients have been predicted traditionally by hydrodynamic software based on the BEM. However, for a systematic study of various parameters and geometries, they are too multifarious to generate so many models and data grids. This paper examines a semi-analytical method of decomposing the complex axisymmetric boundary into several ring-shaped and stepped surfaces based on the boundary discretization method (BDM) which overcomes the previous difficulties. In such case, by using the linear wave theory based on eigenfunction expansion matching method, the expressions of velocity potential in each domain, the added mass, radiation damping and wave excitation forces of the oscillating absorbers are obtained. The good astringency of the hydrodynamic coefficients and wave forces are obtained for various geometries when the discrete number reaches a certain value. The captured wave power for a same given draught and displacement for various geometries are calculated and compared. Numerical results show that the geometrical shape has great effect on the wave conversion performance of the absorber. For absorbers with the same outer radius and draught or displacement, the cylindrical type shows fantastic wave energy conversion ability at some given frequencies, while in the random sea wave, the parabolic and conical ones have better stabilization and applicability in wave power conversion.

26 citations

01 Jan 2007
TL;DR: A survey of the entrained water properties of a propeller for vibration analysis can be found in this article, where the authors present and validate calculations of the axial entrained weight added mass and the torsional entrain water moment of inertia.
Abstract: The objective of the paper is to provide a summary survey of calculation methods that are available to estimate the entrained water properties of a propeller for vibration analysis. Ranging from simple parametric estimates to more robust predictions using radius-chord integration, the paper will present and validate calculations the axial entrained water added mass and the torsional entrained water moment of inertia.

25 citations


Network Information
Related Topics (5)
Reynolds number
68.4K papers, 1.6M citations
81% related
Boundary layer
64.9K papers, 1.4M citations
79% related
Turbulence
112.1K papers, 2.7M citations
78% related
Finite element method
178.6K papers, 3M citations
77% related
Numerical analysis
52.2K papers, 1.2M citations
76% related
Performance
Metrics
No. of papers in the topic in previous years
YearPapers
202351
2022133
2021111
2020116
2019129
2018124