Study of a Wave Absorber in Various Distance Placed in a Sinusoidal Propagate Wave

Author:

Yuan Zhen Zhong1,Chauhan Bhupendra Singh1,Lim Hee Chang1

Affiliation:

1. Pusan National University

Abstract

Since there has been a rapid progress to understand the dynamics of an offshore floating body under an ocean environment, we undertake to generate the ocean waves in a lab-scale wind-wave flume. The study is aiming to observe and optimize the similar ocean environmental condition as input wave and to reduce the wall reflective wave. Several absorption methods are suggested to optimize the propagate wave by measuring the maximum and minimum of the standing wave envelope. There has been no optimized absorption method, as they highly depend on the wave period and the wave length. One of the methods - two fixed wave gauges measuring two wave heights and one wave phase - is applied in this study. In the present paper various approaches were used to analyze the results using the flume, by position of probes, with absorber and without absorber, different position, condition and angle of the wave absorber, This paper also focuses on the analysis of fundamental equations which describe the separating method of the incident and reflective wave, and finally we confirm that the wave absorber is highly efficient considering all the permutation and combination.From the study it is clear that there is a change in the wave amplitude at the receiving end then the generated end; wave absorber is a strong source to control the energy of the coming wave. With the changing the period of the wave, the reflectance is increasing when the period becomes larger.

Publisher

Trans Tech Publications, Ltd.

Reference4 articles.

1. Healy, J.J., (1952), Wave damping effect of beaches, Proceedings of Minnesota International Hydraulics Convention, pp.213-220.

2. Goda, Y., Suzuki, Y., (1976), Estimation of incident and reflectedwaves in random waves, Proceedings of the fifteenth Conference on Coastal Engineering, ASCE, New York, pp.828-865.

3. Masard, E.P.D., Funke. E.R., (1980), The measurement of coexisting random wave energy, Poceedings of the fifteenth Conference on Coastal Engineering, ASCE, New York.

4. Kwon S.H., Moon W.M., Lee H.S., (2003), Experimental and numerical studies on the development of a new wave absorber, Ocean Engineering, pp.185-203.

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