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Featured researches published by Gong Haixia.


Journal of Mechanical Engineering | 2012

Modeling of the Plow Body of Submarine Plowing Trencher and Analysis of the Soil Cutting Process

Gong Haixia

As the working surface of the plow body of a submarine plowing trencher directly determines its trenching efficiency and the towing force,mathematical modeling and analysis of the plow working surface and the trenching mechanism have important theoretical significance and practical value.The mathematical equations for the main cutting surface and soil turning-throwing curved surface are established by using plane space method and horizontal contour line design method respectively.The soil flow equation is obtained according to the minimum energy direction of the soil turning-throwing path.The soil cutting and turning-throwing kinetic equation is built based on the soil dynamics mechanism of the plow working surface.Numerical simulation results show that the curvature of the turning-throwing surface influences both the normal force and tangential force,also the towing speed has much influence on the latter one.The force on the main cutting surface is primarily determined by the soil cohesion and internal friction angle.The impact of internal friction angle is found to be more than that of cohesion as both parameters are increased proportionately.The measured towing force for a 0.8 m deep trench is 321.4 kN while the simulated value is 312 kN,which implies that the measured value deviated from the simulated by 3%.Therefore results of the land experimental test of the prototype trencher agrees very closely with that of numerical simulation.It is therefore concluded that this modeling technique can effectively predict the towing force of the plow body of submarine plowing trencher,and provide theoretical and technical references for its further design and sea trial.


Archive | 2006

Climbing tube type bevelling cutting machine

Fang Xiaoming; Pan Dongmin; Gong Haixia; Meng Qing-xin; Wang Liquan


Archive | 2014

Integral horizontal pipeline connector

Gong Haixia; Wang Liquan; Jiang Xiaoli; Xu Zhegui; Zeng Desheng


Archive | 2013

Double-rocker self-adaptive centering clamp

Li Zhigang; Wang Liquan; Zhang Haitao; Gong Haixia; He Yang; Guo Shiqing; Jiang Ying; Wang Gang; Zhong Wenjun; Liu Jintao


Journal of Harbin Engineering University | 2013

Dynamic numerical simulation of submarine plow body

Gong Haixia


Archive | 2017

Underwater connector with self-centering positioning function

Liu Zhe; Gong Haixia; Liu Zhanwei; Zhou Jian; Wang Liquan; Jiang Peiran


Archive | 2017

Tension muscle tendon bottom connector and supplementary locking mechanical system thereof

Li Zhigang; Wang Liquan; Feng Limei; Lyu Dong; Wang Hong; Li Songyu; Cai Yiyang; Gong Haixia; Wang Gang


Archive | 2017

Tension tendon bottom connector and auxiliary locking mechanism thereof

Li Zhigang; Wang Liquan; Feng Limei; Lyu Dong; Wang Hong; Li Songyu; Cai Yiyang; Gong Haixia; Wang Gang


Archive | 2017

Underwater telescoping butt joint device with locking and self-sealing

Hou Shuping; Liu Zhanwei; Liu Zhe; Gong Haixia; Yu Haiyang; Xu Haosong


Archive | 2017

Underwater hydraulic multipath anti-pollution changing-over tool operated by ROV

Gong Haixia; Chen Guang; Li Tianhua; Wang Liquan; Hou Shuping; Liu Zhe; Zhao Guobo

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Wang Liquan

Harbin Engineering University

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Zhang Lan

Harbin Engineering University

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Li Zhigang

Harbin Engineering University

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Wang Gang

Chinese Academy of Sciences

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Meng Qing-xin

Harbin Engineering University

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Liu Jun

Northwestern Polytechnical University

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Liu Ming

Chinese Academy of Sciences

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Zhao Jie

Harbin Engineering University

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