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Featured researches published by Yue Qianjin.


SCIENTIA SINICA Physica, Mechanica & Astronomica | 2018

Reliability analysis of the steel-tube umbilical cable cross section in ocean engineering

Yan Jun; Yang Zhixun; Zhao Panpan; Hu HaiTao; Lu Qingzhen; Yue Qianjin

Umbilical cable is one of the key control equipments during the exploitation of ocean oil and gas, which is named as the “nerve line” in subsea production system. So it is necessary to carry out the reasonable design and accurate analysis of the umbilical cable to meet the safty requirements. The cross section of steel-tube umbilical cable at the top of configuration undertakes the most dangerous loading case during operation. The current design of umbilical cable is based on the safety factor without enough consideration of the influence of random factors. Concerning the importance of umbilical and the particularity of application environment, it is unreasonable to ignore the uncertainty. Firstly, the uncertainty of components in the section is investigated, and the strength of the cross section under the operation condition is analyzed. Based on above content, the limit state equation is established. Then the reliability of the umbilical cable is calculated by improved first-order second-moment method and Monte Carlo method, respectively. The reliability analysis results show that the randomness of the structure has an important impact on the strength of the umbilical cable. It is necessary to add the reliability research in the design of umbilical cable.


Polish Maritime Research | 2017

Fatigue Life Prediction of Umbilicals Considering Non-Linear Stress

Lu Qingzhen; Yin Yuanchao; Yang Zhixun; Chen Jinlong; Yan Jun; Yue Qianjin

Abstract The fatigue problem induced by wave loads and floater movements of dynamic umbilicals in deepwater is studied. The prediction method of the fatigue life is investigated by considering no-linear local stress due to contact and friction between components of the umbilical. A case study of a dynamic umbilical for 1500 meters depth in South China Sea was presented. The results showed that the more accurate result of the fatigue life was calculated by considering non-linear local stress. The fatigue life by considering local stress with the no-slip assumption was conservative. An obviously longer fatigue life was obtained by considering local stress with the full-slip assumption.


Cold Regions Science and Technology | 2006

A random ice force model for narrow conical structures

Qu Yan; Yue Qianjin; Bi Xiangjun; Kärnä Tuomo


Cold Regions Science and Technology | 2010

Ice-induced vibrations and scaling

Ac Palmer; Yue Qianjin; Guo Fengwei


Archive | 2014

Deepwater pressure chamber combination experiment device

Wu Wenhua; Bi Xiangjun; Zhang Zhong; Yue Qianjin


Archive | 2013

Adaptive data acquisition device for ocean platform

Tang Da; Wu Wenhua; Yue Qianjin; Shi Ranfei; He Feng


Archive | 2013

Experimental device and experimental method for power substructure of bracket pipe frame of pipe-laying ship

Li Xin; Zhang Xiangfeng; Yue Qianjin; Zhou Lei; Wang Fengyun; Zhao Yan


Ocean Engineering | 2014

Study on the design of a model experiment for deep-sea S-laying

Zhang Xiangfeng; Yue Qianjin; Zhang Wenshou; Xie Peng


Archive | 2014

Stand pipe anti-icing device of ice resisting jacket platform

Bi Xiangjun; Wang Heping; Bai Wenzhu; Yang Biao; Li Gang; Wang Bo; Ji Shunying; Yue Qianjin; Qu Yan


Archive | 2013

Ocean platform wave removal icebreaking structure

Qu Yan; Shi Zhongmin; Yue Qianjin; Liu Jiayue; Bi Xiangjun; Liu Yuan; Li Huihui

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Lu Qingzhen

Dalian University of Technology

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Yan Jun

Dalian University of Technology

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Yang Zhixun

Dalian University of Technology

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Zhang Wenshou

Dalian University of Technology

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Zhao Panpan

Dalian University of Technology

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Guo Fengwei

Dalian University of Technology

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Xie Peng

Dalian University of Technology

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Zhang Xiangfeng

Dalian University of Technology

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