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New nonlinear theory for a piston-type wavemaker: The classical Boussinesq equations피스톤타입 조파기에 대한 새로운 비선형 이론 개발 : 고전적인 부시네스크 방정식

Other Titles
피스톤타입 조파기에 대한 새로운 비선형 이론 개발 : 고전적인 부시네스크 방정식
Authors
Jang, T. S.Sung, H. G.
Issue Date
3월-2021
Publisher
ELSEVIER SCIENCE INC
Keywords
Nonlinear water waves; Piston-type wavemaker; Moving boundary; Nonlinear theory
Citation
APPLIED MATHEMATICAL MODELLING, v.91, pp 43 - 57
Pages
15
Journal Title
APPLIED MATHEMATICAL MODELLING
Volume
91
Start Page
43
End Page
57
URI
https://www.kriso.re.kr/sciwatch/handle/2021.sw.kriso/164
DOI
10.1016/j.apm.2020.08.077
ISSN
0307-904X
1872-8480
Abstract
In this study, we present a new nonlinear theory for a moving boundary wavemaker of piston-type based on a nonlinear dispersive shallow water model, where the classical Boussinesq equations are employed as a starting point. The new theory is inherently different from the traditional wavemaker theories, such as the usual theories employed for solving the Laplace equation equipped with the free surface boundary conditions by using the perturbation approach. To verify the wavemaker theory proposed in this study, the ratio of the wave height relative to the stroke characterizing the performance of the wavemaker was observed and compared with numerical, experimental, and Havelock's theoretical results, thereby confirming that the results obtained with the proposed theory were in significant agreement. Furthermore, a comparison of the solitary wave generated by the proposed theory and the known exact solution showed that they were in good agreement. (C) 2020 The Author(s). Published by Elsevier Inc.
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Sung, Hong Gun
친환경해양개발연구본부 (심해공학연구센터)
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