Applied Mathematics and Mechanics (English Edition) ›› 2024, Vol. 45 ›› Issue (11): 1913-1928.doi: https://doi.org/10.1007/s10483-024-3184-7
收稿日期:
2024-06-25
出版日期:
2024-11-03
发布日期:
2024-10-30
Huaqing JIN1, Haicheng ZHANG1,2,*(), Ye LU3, Daolin XU1
Received:
2024-06-25
Online:
2024-11-03
Published:
2024-10-30
Contact:
Haicheng ZHANG
E-mail:zhanghc@hnu.edu.cn
Supported by:
中图分类号:
. [J]. Applied Mathematics and Mechanics (English Edition), 2024, 45(11): 1913-1928.
Huaqing JIN, Haicheng ZHANG, Ye LU, Daolin XU. Floating periodic pontoons for broad bandgaps of water waves[J]. Applied Mathematics and Mechanics (English Edition), 2024, 45(11): 1913-1928.
1 |
WANG,K.,ZHOU,J. X.,TAN,D. G.,LI,Z. Y.,LIN,Q. D., andXU,D. L.A brief review of metamaterials for opening low-frequency band gaps.Applied Mathematics and Mechanics (English Edition),43(7),1125-1144(2022)
doi: 10.1007/s10483-022-2870-9 |
2 |
WANG,Z. Y.,MA,Z. Y.,GUO,X. M., andZHANG,D. S.A new tunable elastic metamaterial structure for manipulating band gaps/wave propagation.Applied Mathematics and Mechanics (English Edition),42(11),1543-1554(2021)
doi: 10.1007/s10483-021-2787-8 |
3 |
YANG,F.,MA,Z. Y., andGUO,X. M.Bandgap characteristics of the two-dimensional missing rib lattice structure.Applied Mathematics and Mechanics (English Edition),43(11),1631-1640(2022)
doi: 10.1007/s10483-022-2923-6 |
4 | HEATHERSHAW,A. D.Seabed-wave resonance and sand bar growth.nature,296(5855),343-345(1982) |
5 |
WU,Z. R.,CHENG,Y. L.,WANG,S. L., andLU,Y. K.Effects of varying bottom on nonlinear surface waves.Applied Mathematics and Mechanics (English Edition),27(3),409-416(2006)
doi: 10.1007/s10483-006-0318-y |
6 | KIRBY, J. T. and ANTON, J. P. Bragg reflection of waves by artificial bars. Proceedings of the 22nd Intel-national Conference of Coastal Engineering, New York, 757–768 (1990) |
7 | CHANG,H. K., andLIOU,J. C.Long wave reflection from submerged trapezoidal breakwaters.Ocean Engineering,34(1),185-191(2007) |
8 | ZORKANI,M., andHEINRICHS,J.Bragg reflection and localization of hydrodynamic waves in a channel of variable width: theory and experiment.Europhysics Letters,14(3),243-248(1991) |
9 | HSU,T. W.,LIN,J. F.,HSIAO,S. C.,OU,S. H.,BABANIN,A. V., andWU,Y. T.Wave reflection and vortex evolution in Bragg scattering in real fluids.Ocean Engineering,88,508-519(2014) |
10 | ZENG,H.,QIN,B., andZHANG,J.Optimal collocation of Bragg breakwaters with rectangular bars on sloping seabed for Bragg resonant reflection by long waves.Ocean Engineering,130,156-165(2017) |
11 | NING,D.,ZHANG,S.,CHEN,L.,LIU,H. W., andTENG,B.Nonlinear Bragg scattering of surface waves over a two-dimensional periodic structure.Journal of Fluid Mechanics,946,A25(2022) |
12 | TORRES,M.,ADRADOS,J. P., andDE ESPINOSA,F. R. M.Visualization of Bloch waves and domain walls.nature,398(6723),114-115(1999) |
13 | CHOU,T.Band structure of surface flexural-gravity waves along periodic interfaces.Journal of Fluid Mechanics,369,333-350(1998) |
14 | AN,Z., andYE,Z.Band gaps and localization of water waves over one-dimensional topographical bottoms.Applied Physics Letters,84(15),2952-2954(2004) |
15 | HUANG,M. J.,KOU,C. H., andYE,Z.Gravity waves over topographical bottoms: comparison with experiment.Physical Review E,71(1),011201(2005) |
16 | PORTER,R., andPORTER,D.Scattered and free waves over periodic beds.Journal of Fluid Mechanics,483,129-163(2003) |
17 | LIU,H. W.Band gaps for Bloch waves over an infinite array of trapezoidal bars and triangular bars in shallow water.Ocean Engineering,130,72-82(2017) |
18 | LIU,H. W.,LIU,Y., andLIN,P.Bloch band gap of shallow-water waves over infinite arrays of parabolic bars and rectified cosinoidal bars and Bragg resonance over finite arrays of bars.Ocean Engineering,188,106235(2019) |
19 | CUI,J.,CONG,L., andTENG,B.An eigenvalue method based on the integral equation with a Rankine source for the band structure of water surface waves over periodic scatterers.Ocean Engineering,283,114911(2023) |
20 | JIN,H.,ZHANG,H., andXU,D.Array buoys with nonlinear stiffness enhance low-frequency wave attenuation and energy capture.Physics of Fluids,34(12),127106(2022) |
21 | LIU,C., andYANG,W.Theoretical analysis and numerical study on a flexible piezoelectric wave energy converter.International Journal of Hydromechatronics,5(4),292-310(2022) |
22 |
ZHANG,X. T.,ZHANG,H. C.,ZHOU,X., andSUN,Z.Recent advances in wave energy converters based on nonlinear stiffness mechanism.Applied Mathematics and Mechanics (English Edition),43(7),1081-1108(2022)
doi: 10.1007/s10483-022-2864-6 |
23 | JIN,H.,ZHANG,H.,XU,D.,LIU,C., andXU,S.Analytical investigation on wave attenuation performance of a floating breakwater with nonlinear stiffness.Ocean Engineering,243,110160(2022) |
24 | LINTON,C. M.Water waves over arrays of horizontal cylinders: band gaps and Bragg resonance.Journal of Fluid Mechanics,670,504-526(2011) |
25 | DAI,J.,WANG,C. M.,UTSUNOMIYA,T., andDUAN,W.Review of recent research and developments on floating breakwaters.Ocean Engineering,158,132-151(2018) |
26 | FALNES,J.Ocean Waves and Oscillating Systems: Linear Interactions Including Wave-Energy Extraction,Cambridge University Press,Cambridge(2002) |
27 | ZHENG,S., andZHANG,Y.Wave diffraction and radiation by multiple rectangular floaters.Journal of Hydraulic Research,54(1),102-115(2016) |
28 | ZHENG,Y.,YOU,Y., andSHEN,Y.On the radiation and diffraction of water waves by a rectangular buoy.Ocean Engineering,31(8-9),1063-1082(2004) |
29 | OUYANG,H. T.,CHEN,K. H., andTSAI,C. M.Investigation on bragg reflection of surface water waves induced by a train of fixed floating pontoon breakwaters.International Journal of Naval Architecture and Ocean Engineering,7(6),951-963(2015) |
30 | KAR,P.,SAHOO,T., andMEYLAN,M. H.Bragg scattering of long waves by an array of floating flexible plates in the presence of multiple submerged trenches.Physics of Fluids,32(9),096603(2020) |
31 | LIU,H. W.An approximate law of class I Bragg resonance of linear shallow-water waves excited by five types of artificial bars.Ocean Engineering,267,113245(2023) |
32 | LING,Z.,LI,Y., andZHANG,Y.Investigation of Bragg resonant reflection of linear and nonlinear water waves by multiple fixed floating structures based on viscous meshfree method.Ocean Engineering,278,114270(2023) |
33 | DING,Y.,LIU,H. W., andLIN,P.Quantitative expression of the modified Bragg's law for Bragg resonances of water waves excited by five types of artificial bars.Physics of Fluids,36(4),047130(2024) |
34 | LIU,H. W.,ZENG,H. D., andHUANG,H. D.Bragg resonant reflection of surface waves from deep water to shallow water by a finite array of trapezoidal bars.Applied Ocean Research,94,101976(2020) |
35 | DONG,H. W.,ZHAO,S. D.,WANG,Y. S., andZHANG,C. Z.Topology optimization of anisotropic broadband double-negative elastic metamaterials.Journal of the Mechanics and Physics of Solids,105,54-80(2017) |
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