A Validation of Symmetric 2D + T Model Based on Single-Stepped Planing Hull Towing Tank Tests
In the current article, the hydrodynamic forces of single-stepped planing hulls were evaluated by an analytical method and compared against towing tank tests. Using the 2D + T theory, the pressure distribution over the wedge section entering the water and the normal forces acting on the 2D sections...
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doaj-fbaa8a84b47e4f4fb15181800d6501082021-04-02T14:50:27ZengMDPI AGJournal of Marine Science and Engineering2077-13122018-11-016413610.3390/jmse6040136jmse6040136A Validation of Symmetric 2D + T Model Based on Single-Stepped Planing Hull Towing Tank TestsRasul Niazmand Bilandi0Simone Mancini1Luigi Vitiello2Salvatore Miranda3Maria De Carlini4Department of Engineering, Persian Gulf University, Bushehr 7516913817, IranEurisco Consulting Srls–R&D Company, 80059 Torre del Greco, ItalyDepartment of Industrial Engineering (DII), University of Naples “Federico II”, 80125 Naples, ItalyDepartment of Industrial Engineering (DII), University of Naples “Federico II”, 80125 Naples, ItalyEurisco Consulting Srls–R&D Company, 80059 Torre del Greco, ItalyIn the current article, the hydrodynamic forces of single-stepped planing hulls were evaluated by an analytical method and compared against towing tank tests. Using the 2D + T theory, the pressure distribution over the wedge section entering the water and the normal forces acting on the 2D sections have been computed. By integrating the 2D sectional normal forces over the entire wetted length of the vessel, the lift force acting on it has been obtained. Using lift forces as well as the consequence pitch moment, the equilibrium condition for the single-stepped planing hull is found and then resistance, dynamic trim, and the wetted surface are computed. The obtained hydrodynamic results have been compared against the experimental data and it has been observed that the presented mathematical model has reasonable accuracy, in particular, up to Froude number 2.0. Furthermore, this mathematical model can be a useful and fast tool for the stepped hull designers in the early design stage in order to compare the different hull configurations. It should also be noted that the mathematical model has been developed in such a way that it has the potential to model the sweep-back step and transverse the vertical motions of single-stepped planing hulls in future studies.https://www.mdpi.com/2077-1312/6/4/136single-stepped planing hullssymmetric 2D + T theoryhydrodynamic forcestowing tank tests |
collection |
DOAJ |
language |
English |
format |
Article |
sources |
DOAJ |
author |
Rasul Niazmand Bilandi Simone Mancini Luigi Vitiello Salvatore Miranda Maria De Carlini |
spellingShingle |
Rasul Niazmand Bilandi Simone Mancini Luigi Vitiello Salvatore Miranda Maria De Carlini A Validation of Symmetric 2D + T Model Based on Single-Stepped Planing Hull Towing Tank Tests Journal of Marine Science and Engineering single-stepped planing hulls symmetric 2D + T theory hydrodynamic forces towing tank tests |
author_facet |
Rasul Niazmand Bilandi Simone Mancini Luigi Vitiello Salvatore Miranda Maria De Carlini |
author_sort |
Rasul Niazmand Bilandi |
title |
A Validation of Symmetric 2D + T Model Based on Single-Stepped Planing Hull Towing Tank Tests |
title_short |
A Validation of Symmetric 2D + T Model Based on Single-Stepped Planing Hull Towing Tank Tests |
title_full |
A Validation of Symmetric 2D + T Model Based on Single-Stepped Planing Hull Towing Tank Tests |
title_fullStr |
A Validation of Symmetric 2D + T Model Based on Single-Stepped Planing Hull Towing Tank Tests |
title_full_unstemmed |
A Validation of Symmetric 2D + T Model Based on Single-Stepped Planing Hull Towing Tank Tests |
title_sort |
validation of symmetric 2d + t model based on single-stepped planing hull towing tank tests |
publisher |
MDPI AG |
series |
Journal of Marine Science and Engineering |
issn |
2077-1312 |
publishDate |
2018-11-01 |
description |
In the current article, the hydrodynamic forces of single-stepped planing hulls were evaluated by an analytical method and compared against towing tank tests. Using the 2D + T theory, the pressure distribution over the wedge section entering the water and the normal forces acting on the 2D sections have been computed. By integrating the 2D sectional normal forces over the entire wetted length of the vessel, the lift force acting on it has been obtained. Using lift forces as well as the consequence pitch moment, the equilibrium condition for the single-stepped planing hull is found and then resistance, dynamic trim, and the wetted surface are computed. The obtained hydrodynamic results have been compared against the experimental data and it has been observed that the presented mathematical model has reasonable accuracy, in particular, up to Froude number 2.0. Furthermore, this mathematical model can be a useful and fast tool for the stepped hull designers in the early design stage in order to compare the different hull configurations. It should also be noted that the mathematical model has been developed in such a way that it has the potential to model the sweep-back step and transverse the vertical motions of single-stepped planing hulls in future studies. |
topic |
single-stepped planing hulls symmetric 2D + T theory hydrodynamic forces towing tank tests |
url |
https://www.mdpi.com/2077-1312/6/4/136 |
work_keys_str_mv |
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