SHOALING

作品数:30被引量:39H指数:3
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Reduction in wave shoaling over a linear transition bottom using a porous medium
《Theoretical & Applied Mechanics Letters》2025年第1期17-24,共8页Ikha Magdalena Ivan Jonathan Kristianto Hany Q.Rif’atin Amila Sandaruwan Ratnayaked Cherdvong Saengsupavaniche I.Solekhudin M.Helmi 
support from Program Riset Kolaborasi Indonesia(RKI)2024(Grant No.1841/IT1.B07.1/TA.00/2024).
Wave shoaling,which involves an increase in wave amplitude due to changes in water depth,can damage shore-lines.To mitigate this damage,we propose using porous structures such as mangrove forests.In this study,we use ...
关键词:Wave shoaling Porous breakwater Linear shallow water equations Wave transmission coefficient Finite volume method 
Shoaling Internal Solitary Waves and the Formation of Boluses
《Open Journal of Fluid Dynamics》2024年第2期65-82,共18页Hooman Enayati Brian T. Helenbrook 
An internal solitary wave of elevation in a two-layer density stratified system of an incompressible, viscous and homogeneous fluid was studied. The run-up of a wave of elevation encountering different slopes was inve...
关键词:Internal Solitary Waves COMSOL Multiphysics Wave Breaking 
Analysis of wave shoaling and shore-breakers on a low tide terrace beach based on in-situ measurements at Xisha Bay on South China coast
《Acta Oceanologica Sinica》2023年第7期175-184,共10页Yuan Li Chi Zhang Hongshuai Qi Jiacheng Song Weiqi Dai Shanhang Chi Jian Shi Dake Chen 
The Key Program of National Natural Science Foundation of China under contract No.41930538;the Open Research Fund of State Key Laboratory of Estuarine and Coastal Research,East China Normal University under contract No.SKLEC-KF202203;the National Natural Science Foundation of China under contract No.52201317;the National Key Research and Development Program under contract No.2022YFC3106102;the China Postdoctoral Science Foundation under contract No.2022M711023;the Jiangsu Funding Program for Excellent Postdoctoral Talent under contract No.2022ZB148.
Low tide terrace beach is a main beach type along South China coasts with strong tidal actions.How strong tides affect wave transformations on low tide terrace beach still remains unclear.In this study,in-situ measure...
关键词:sandy beach low tide terrace waves shore-breakers South China coasts 
The role of nitric oxide and neuronal nitric oxide synthase in zebrafish(Danio rerio)shoaling
《Aquaculture and Fisheries》2021年第6期565-573,共9页Rachit Penglee Lei Gao Yajuan Huang Liping Liu Sukkrit Nimitkul Baolong Bao 
This work was supported funding by The China-ASEAN Maritime Cooperation Fund through the project“China-ASEAN Center for Joint Research and Promotion of Marine Aquaculture Technology”(grant number:DF);the Key Laboratory of Exploration and Utilization of Aquatic Genetic Resources of Shanghai Ocean University(grant number:31872546 and 31472262)。
Nitric oxide(NO)-the product of arginine metabolism catalyzed by nitric oxide synthases(NOS)-is a well-known neurotransmitter which plays an important role in metabolism and amino acid transportation in the nervous sy...
关键词:Nitric oxide Neuronal nitric oxide synthase SHOALING Dopamine transporter NEUROTRANSMITTER 
Influence of lighting environment on social preferences in sticklebacks from two different photic habitats.II.Shoaling and mate preferences of lab-bred fishes被引量:1
《Current Zoology》2021年第3期309-319,共11页Meike Hiermes Michael B.Marder Stephanie Reher Ingolf P.Rick Simon Vitt Theo C.M.Bakker 
This research was funded by the Deutsche Forschungsgemeinschaft(DFG)(BA 2885/1-5).
Different environmental conditions may lead to diverse morphological,behavioral,and physiological adaptations of different populations of the same species.Lighting conditions,for example,vary vastly especially between...
关键词:Gasterosteus aculeatus genetic adaptation mate preference shoaling preference UV signals water staining 
Effects of westward shoaling pycnocline on characteristics and energetics of internal solitary wave in the Luzon Strait by numerical simulations
《Acta Oceanologica Sinica》2021年第5期20-29,共10页Haibin Lli Yujun Liu Xiaokang Chen Guozhen Zha Shuqun Cai 
The Key Research Program of Frontier Sciences;Chinese Academy of Sciences(CAS)under contract No.QYZDJSSW-DQC034;the Talent Project from Southern Marine Science and Engineering Guangdong Laboratory(Guangzhou)under contract No.GML2019ZD0304;the National Natural Science Foundation of China(NSFC)under contract Nos 41521005 and 62071207;the Priority Academic Program Development of Jiangsu Higher Education Institutions(PAPD);the Natural Science Foundation of Huai Hai Institute of Technology under contract No.Z2017006;the Project from Department of Natural Resources of Guangdong Province under contract No.(2020)017;the Open Project of State Key Laboratory of Tropical Oceanography,South China Sea Institute of Oceanolog,CAS under contract No.LTO1702;Postgraduate Research&Practice Innovation Program of Jiangsu Province under contract No.SJCX190963。
An internal gravity wave model was employed to simulate the generation of internal solitary waves(ISWs)over a sill by tidal flows.A westward shoaling pycnocline parameterization scheme derived from a three-parameter m...
关键词:internal solitary waves baroclinic energy South China Sea PYCNOCLINE 
Classification and Comparison of Wave Impact Modes on Semi-Submersibles
《China Ocean Engineering》2021年第2期161-175,共15页GUO Ying-hao XIAO Long-fei WEI Han-di LI Xin LI Lei DENG Yan-fei 
This work was financially supported by the National Natural Science Foundation of China(Grant No.51879158);the 7th Generation Ultra Deep Water Drilling Unit Innovation Project by the Ministry of Industry and Information Technology of China.
Semi-submersibles for offshore oil exploration and exploitation often suffer from severe wave impacts in extreme ocean environments.Owing to the complex wave interactions among structural components of semi-submersibl...
关键词:wave impact load SEMI-SUBMERSIBLE wave breaking energy loss shoaling effect 
Effect of the Coefficient on the Performance of A Two-Layer Boussinesq- Type Model被引量:2
《China Ocean Engineering》2021年第1期36-47,共12页SUN Jia-wen LIU Zhong-bo WANG Xing-gang FANG Ke-zhao DU Xin-yuan WANG Ping 
supported by the National Natural Science Foundation of China(Grant Nos.51779022,51809053,and 51579034);the Innovation Team Project of Estuary and Coast Protection and Management(Grant No.Y220013);the Open Project Fund of State Key Laboratory of Coastal and Offshore Engineering,Dalian University of Technology(Grant No.LP19015).
The coefficients embodied in a Boussinesq-type model are very important since they are determined to optimize the linear and nonlinear properties.In most conventional Boussinesq-type models,these coefficients are assi...
关键词:two-layer Boussinesq-type model dispersion nonlinear properties shoaling amplitude 
A fully nonlinear and weakly dispersive water wave model for simulating the propagation,interaction,and transformation of solitary waves被引量:1
《Journal of Hydrodynamics》2019年第6期1099-1114,共16页Zhengyong Zhong Keh-Han Wang 
This paper presents the development of a theoretical model of fully nonlinear and weakly dispersive(FNWD)waves and numerical techniques for simulating the propagation,interaction,and transformation of solitary waves.U...
关键词:Fully nonlinear and weakly dispersive waves overtaking collision Boussinesq models solitary waves finite-element method wave shoaling 
Combined effects of topography and bottom friction on shoaling internal solitary waves in the South China Sea被引量:2
《Applied Mathematics and Mechanics(English Edition)》2019年第4期421-434,共14页Dalin TAN Jifu ZHOU Xu WANG Zhan WANG 
supported by the National Key R&D Program of China(No.2017YFC1404202);the National Natural Science Foundation of China(Nos.11572332,11602274,and 11232012);the Strategic Priority Research Program of the Chinese Academy of Sciences(No.XDB22040203)
A numerical study to a generalized Korteweg-de Vries (KdV) equation is adopted to model the propagation and disintegration of large-amplitude internal solitary waves (ISWs) in the South China Sea (SCS). Based on theor...
关键词:internal SOLITARY wave(ISW) SOUTH China Sea(SCS) Chezy friction vari-able TOPOGRAPHY 
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