A control and automation system for wave basins


Autoria(s): Mello, P C de; Carneiro, M L; Tannuri, Eduardo Aoun; Kassab Junior, Fuad; Marques, Ricardo Paulino; Adamowski, Julio Cezar; Nishimoto, Kazuo
Data(s)

24/02/2014

24/02/2014

2013

Resumo

This paper presents the new active absorption wave basin, named Hydrodynamic Calibrator (HC), constructed at the University of São Paulo (USP), in the Laboratory facilities of the Numerical Offshore Tank (TPN). The square (14 m 14 m) tank is able to generate and absorb waves from 0.5 Hz to 2.0 Hz, by means of 148 active hinged flap wave makers. An independent mechanical system drives each flap by means of a 1HP servo-motor and a ball-screw based transmission system. A customized ultrasonic wave probe is installed in each flap, and is responsible for measuring wave elevation in the flap. A complex automation architecture was implemented, with three Programmable Logic Computers (PLCs), and a low-level software is responsible for all the interlocks and maintenance functions of the tank. Furthermore, all the control algorithms for the generation and absorption are implemented using higher level software (MATLAB /Simulink block diagrams). These algorithms calculate the motions of the wave makers both to generate and absorb the required wave field by taking into account the layout of the flaps and the limits of wave generation. The experimental transfer function that relates the flap amplitude to the wave elevation amplitude is used for the calculation of the motion of each flap. This paper describes the main features of the tank, followed by a detailed presentation of the whole automation system. It includes the measuring devices, signal conditioning, PLC and network architecture, real-time and synchronizing software and motor control loop. Finally, a validation of the whole automation system is presented, by means of the experimental analysis of the transfer function of the waves generated and the calculation of all the delays introduced by the automation system.

The authors acknowledge Petrobras for the financial support and for the motivation of this work.The authors also acknowledge the Brazilian research funding agencies: São Paulo State Research Foundation (FAPESP). National Council for Scientific and Technological Development (CNPq) and Research and Projects Financing (FINEP) for the research grants and for the constant support

Identificador

http://www.producao.usp.br/handle/BDPI/44038

10.1016/j.mechatronics.2012.11.004

http://www.sciencedirect.com/science/article/pii/S0957415812001742

Idioma(s)

eng

Publicador

Oxford

Relação

Mechatronics

Direitos

restrictedAccess

Attribution-NonCommercial-NoDerivs 3.0 Brazil

http://creativecommons.org/licenses/by-nc-nd/3.0/br/

Elsevier

Palavras-Chave #Wave tank #Wave generation #Automation #Wave probe #Wavemaker #Realtime system #PLC #TANQUE DE PROVAS #ONDAS (GERAÇÂO) #ESTRUTURAS OFFSHORE
Tipo

article

original article

publishedVersion