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Featured researches published by M.L. Carneiro.


ASME 2010 29th International Conference on Ocean, Offshore and Arctic Engineering | 2010

USP Active Absorption Wave Basin: From Conception to Commissioning

Pedro Cardozo de Mello; M.L. Carneiro; Eduardo A. Tannuri; Kazuo Nishimoto

This paper presents the new active absorption wave basin constructed at the University of Sao Paulo (USP), in the Numerical Offshore Tank (TPN) Laboratory. The square (14m × 14m) tank is able to generate and absorb waves from 0.5Hz to 2.0Hz, by means of 148 active flap-type wavemakers. 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 the measurement of wave elevation in the flap. These sensors do not require constant calibration, differently from the capacitive or resistive sensors normally used in similar tanks. A complex automation architecture was implemented, with 3 Programmable Logic Computers (PLC), 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 wavemakers 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 motion to the generated wave is used for the calculation of the motion of each flap. Absorption tests were conducted with a prototype wave generator in a 2D wave flume with regular waves. Two different algorithms were tested. The first one is the frequency domain method based on Maeda et al. (2004), in which the commanded variable is the motor velocity. Furthermore, the time domain algorithm proposed by Schaffer (1996) was also tested. It is based on a digital filter and uses the position of the motor as the commanded variable. Both algorithms have hydrodynamic feedback based on the measurement of surface elevation at each flap. The first algorithm needs an extensive test procedure to calibrate its control parameters while the second one, after optimizing the digital filter, is ready to use. Both algorithms presented similar results with reflection coefficient smaller than 10.7% for regular waves in the frequency range of 0.5 to 2.0 Hz. The paper also presents the first results obtained in the tank.Copyright


ASME 2011 30th International Conference on Ocean, Offshore and Arctic Engineering | 2011

USP Active Absorption Basin: Absorption of Irregular Waves

M.L. Carneiro; Pedro Cardozo de Mello; Eduardo A. Tannuri

The implementation of active absorption of irregular waves in USP Active Absorption Basin is described. The algorithm control is based on the method proposed by Schaffer. A digital filter is applied as time realization of a frequency domain absorption transfer function using the measurement of surface elevation at each wavemaker as the hydrodynamic feedback. Motor dynamics and delay due to signals time travel were compensated to increase the absorption efficiency. Experiments with regular and irregular waves were carried out, where the results show a good agreement between predicted theoretical reflection coefficient and experimental values. Reflection coefficient smaller than 10% were obtained for waves in the frequency range of 0.4 to 1.1 Hz.Copyright


Mechatronics | 2013

A control and automation system for wave basins

P.C. de Mello; M.L. Carneiro; Eduardo A. Tannuri; F. Kassab; R.P. Marques; Julio C. Adamowski; Kazuo Nishimoto


Marine Systems Ocean Technology | 2010

USP wave basin: active wave absorption and generation algorithms

M.L. Carneiro; P.C. De Mello; F. Labate; André A. M. Araujo; Alexandre N. Simos; Eduardo A. Tannuri


Volume 4: Ocean Engineering; Ocean Renewable Energy; Ocean Space Utilization, Parts A and B | 2009

Experimental Validation of an Absorbing Wavemaker Controller

M.L. Carneiro; Pedro C. de Mello; Eduardo A. Tannuri; Alexandre N. Simos


4th International Workshop on Applied Offshore Hydrodynamics | 2009

USP Wave Basin: Active wave absorption and generation algorithms

M.L. Carneiro; P.C. De Mello; F. Labate; A. A. M. Araujo; Alexandre N. Simos; Eduardo A. Tannuri


Sadek Crisostomo Absi Alfaro, José Maurício S T Motta, Victor Juliano De Negri. (Org.). ABCM Symposium Series Mechatronics, Volume 5. 1ed.Rio de Janeiro | 2012

Kalman Filter Applied to Ultrassonic-Based Level Sensoring

André A. M. Araujo; R.L. Lima; P.C. De Mello; M.L. Carneiro; Eduardo A. Tannuri


XIV International Symposium on Dynamic Problems of Mechanics (DINAME 2011) | 2011

New USP Wave Basin - Mechatronic and Hydrodynamic Design Aspects

M.L. Carneiro; Pedro C. de Mello; Julio Adamawski; K. Nishimoto; Eduardo Tanuri


4th International Workshop on Applied Offshore Hydrodynamics | 2009

USP Active Absorption Wave Basin: from the conception to the commissioning

Pedro C. de Mello; M.L. Carneiro; Eduardo Tanuri; K. Nishimoto


3rd Int Workshop on Applied Offshore Hydrodynamics | 2007

Development of a Wave Tank with Active Absorption

P.C. De Mello; M.L. Carneiro; L. Casetta; Alexandre N. Simos; Julio C. Adamowski; Kazuo Nishimoto

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F. Kassab

University of São Paulo

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P.C. de Mello

University of São Paulo

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