《Journal of Hydrodynamics》

作品数:3313被引量:8483H指数:29
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《Journal of Hydrodynamics》
主办单位:中国船舶科学研究中心
最新期次:2024年6期更多>>
发文主题:NUMERICAL_SIMULATIONFLOWHYDRODYNAMICSCAVITATIONTURBULENT_FLOW更多>>
发文领域:理学水利工程天文地球交通运输工程更多>>
发文基金:国家自然科学基金国家重点基础研究发展计划国家高技术研究发展计划中国博士后科学基金更多>>
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A comprehensive comparison study between Deep Operator networks neural network and long short-term memory for very short-term prediction of ship motion
《Journal of Hydrodynamics》2024年第6期1167-1180,共14页Yong Zhao Jin-xiu Zhao Zi-zhong Wang Si-nan Lu Li Zou 
Project supported by the National Natural Science Foundation of China(Grant No.51679021);supported by the Southern Marine Science and Engineering Guangdong Laboratory(Guangzhou)(Grant Nos.GML20240001,GML2024009).
Very short-term prediction of ship motion is critically important in many scenarios such as carrier aircraft landings and marine engineering operations.This paper introduces the newly developed functional deep learnin...
关键词:DeepOnet very short-term prediction hyperparameters tuning functional prediction model long short-term memory(LSTM) 
Laboratory investigation of flow behavior in an open channel with emerged porous rigid and flexible vegetation
《Journal of Hydrodynamics》2024年第6期1181-1199,共19页Kashif Iqbal Usman Ghani Ghufran Ahmed Pasha Nadir Murtaza Muhammad Kaleem Ullah Naveed Anjum 
This study aims to investigate the influence of various vegetation patches with varying porosities on the hydraulic properties of a vegetated open channel under subcritical flow conditions.This research work investiga...
关键词:Froude number vegetated channel energy reduction hydraulic jump 
Editorial Message
《Journal of Hydrodynamics》2024年第6期1200-1200,共1页Editorial office of Journal of Hydrodynamics 
Dear Ladies and Gentlemen,Springer will start publishing Journal of Hydrodynamics(ISSN 1001-6058,e-ISSN 1878-0342)from 2018 onwards.
关键词:SPRINGER ISSN EDITORIAL 
《Journal of Hydrodynamics》EDITORIAL BOARD
《Journal of Hydrodynamics》2024年第6期F0003-F0003,共1页
Experimental research on cavitating hydrodynamic characteristics of NACA0015 hydrofoil and its biomimetic counterpart
《Journal of Hydrodynamics》2024年第6期1046-1056,共11页Xiao-jun Li Shi-rui Tang Zheng-dong Wang Kui Chen Yu-hua Zhou Hai Chen 
Project supported by the National Natural Science Foundation of China(Grant No.U24A20139);supported by the Key Research and Development Project of Zhejiang Province(Grant No.22024C01117);the KeyResearch and Development Project of Hangzhou(Grant No.2023SZD0041).
The biomimetic hydrofoils are frequently employed to enhance cavitation performance,although the underlying mechanisms remain to be fully elucidated.This study utilizes a cavitation visualization experimental system a...
关键词:NACA0015 biomimetic hydrofoil cavitation shedding lift/drag force visualization experiment 
Influence of liquid viscosity on the interactions between cavitation bubbles and flat liquid-liquid interfaces
《Journal of Hydrodynamics》2024年第6期1057-1072,共16页Yang Liu Zhi-ying Zheng Zhi-bo He Tian-bao Zeng Wei-hua Cai Hong Qi 
Project supported by the National Natural Science Foundation of China(Grant No.51806051);supported by the Natural Science Foundation of Heilongjiang Province of China(Grant No.LH2022E062).
This study investigates the interactions between cavitation bubbles and the interfaces of two immiscible liquids,with practical implications and potential applications in the fields such as ultrasonic emulsification a...
关键词:Liquid-liquid interface cavitation bubble viscosity effect bubble dynamics jet dynamics 
Investigation on the cylindrical bubble dynamics near a wall with an arched bulge
《Journal of Hydrodynamics》2024年第6期1073-1082,共10页Yu-fei Wang Shu-zheng Hu Zheng-yang Feng Ya-bin Liu Xiao-yu Wang Yu-ning Zhang 
financially supported by the Postdoctoral Fellowship Program of CPSF(Grant No.GZC20240466).
In this paper,the collapse dynamic properties of the cylindrical bubble near an arched cylinder bulge are researched relying on the conformal transformation and Kelvin impulse model.The properties of the liquid veloci...
关键词:Bubble collapse dynamics cylindrical bubble arched cylinder bulge Kelvin impulse conformal transformation 
Water-sand two-phase flow and wear characteristics in a rotating jet wear device at different impact angles
《Journal of Hydrodynamics》2024年第6期1083-1094,共12页Shuai-hui Sun Jing-wen Jia Meng-na Lin Peng-cheng Guo Long Wang Yi-fan Zhao Xing-qi Luo 
supported by the Science and Technology Plan Project of the Shaanxi Province Department of Water Resources(Grant No.2024slkj-05).
The characteristics of water and sand two-phase flow and their wear features in a rotating jet wear device at various impact angles are investigated by the wear weight loss test,spraying paint abrasion distribution ex...
关键词:The rotating jet wear device discrete phase model(DPM) spraying paint abrasion test water-sand two-phase flow impact angle 
Theoretical investigation of the simultaneous resonance of a cylindrical bubble under triple-frequency acoustic excitation
《Journal of Hydrodynamics》2024年第6期1095-1103,共9页Jia-xin Yu Zhi-hao Liu Jin-xin Luo Xiang-qing Zhang Zheng-gui Li Yu-ning Zhang 
supported by the Open Research Subject of Key Laboratory of Fluid and Power Machinery,Ministry of Education,Xihua University(Grant No.LTDL-2024009).
In the present paper,the simultaneous resonance of a cylindrical bubble under triple-frequency acoustic excitation is investigated theoretically.Specifically,based on the multi-scale method,the dimensionless oscillati...
关键词:Cylindrical bubble simultaneous resonance oscillation equation frequency response 
Mechanism study of micro-jet generation induced by acoustic cavitation
《Journal of Hydrodynamics》2024年第6期1104-1117,共14页Lei Wei Sheng Liu Fang Dong 
Project supported by the National Key Research and Development Program of China(Grant No.2022YFB3207100);supported by the Hubei Provincial Strategic Scientist Training Plan(Grant No.2022EJD009).
Due to the continuous enhancement of wafer processing precision requirements in the semiconductor industry,ultrasonic cleaning technology has garnered significant attention for its distinctive advantages in wafer clea...
关键词:Ultrasonic cavitation flow field MICROJET shear force DAMAGE 
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