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Featured researches published by Gu Haifeng.


Nuclear Engineering and Technology | 2013

IODINE REMOVAL EFFICIENCY IN NON-SUBMERGED AND SUBMERGED SELF-PRIMING VENTURI SCRUBBER

Majid Ali; Yan Changqi; Sun Zhongning; Gu Haifeng; Wang Junlong; Khurram Mehboob

The objective of this conducted research is to study the iodine removal efficiency in a self-priming venturi scrubber for submerged and non-submerged operating conditions experimentally and theoretically. The alkaline solution is used as an absorbent, which is prepared by dissolving sodium hydroxide (NaOH) and sodium thiosulphate (Na2S2O3) in water to remove the gaseous iodine (I2) from the gas. Iodine removal efficiency is examined at various gas flow rates and inlet concentrations of iodine for submerged and non-submerged operating conditions. In the non-submerged venturi scrubber, only the droplets take part in iodine removal efficiency. However, in a submerged venturi scrubber condition, the iodine gas is absorbed from gas to droplets inside the venturi scrubber and from bubbles to surrounding liquid at the outlet of a venturi scrubber. Experimentally, it is observed that the iodine removal efficiency is greater in the submerged venturi scrubber as compare to a nonsubmerged venturi scrubber condition. The highest iodine removal efficiency of 0.99±0.001 has been achieved in a submerged self-priming venturi scrubber condition. A mathematical correlation is used to predict the theoretical iodine removal efficiency in submerged and non-submerged conditions, and it is compared against the experimental results. The Wilkinson et al. correlation is used to predict the bubble diameter theoretically whereas the Nukiyama and Tanasawa correlation is used for droplet diameter. The mass transfer coefficient for the gas phase is calculated from the Steinberger and Treybal correlation. The calculated results for a submerged venturi scrubber agree well with experimental results but underpredicts in the case of the nonsubmerged venturi scrubber.


Archive | 2012

Non-dynamic safety case cooling system

Sun Zhongning; Fan Guangming; Yan Changqi; Ding Ming; Wang Jianjun; Sun Licheng; Cao Xiaxin; Gu Haifeng


Archive | 2014

Condensation heat-transfer experiment device capable of realizing coupling of natural circulation and forced circulation

Sun Zhongning; Ding Ming; Fan Guangming; Gao Li; Hou Xiaofan; Yan Changqi; Sun Licheng; Wang Jianjun; Cao Xiaxin; Gu Haifeng


Archive | 2014

Split self-suction type Venturi tube washer

Gu Haifeng; Sun Zhongning; Zhou Yanmin; Wang Junlong; Yan Changqi; Cao Xiaxin


Archive | 2013

Self-starting gas discharging device with long-term water sealing function

Ding Ming; Sun Zhongning; Gu Haifeng; Cao Xiaxin; Fan Guangming; Yan Changqi; Sun Licheng; Wang Jianjun


Archive | 2013

Integral inclined pin-fin tube

Ding Ming; Sun Zhongning; Fan Guangming; Cao Xiaxin; Gu Haifeng; Yan Changqi; Sun Licheng; Wang Jianjun


Archive | 2013

Iodine vapor sampling apparatus under high temperature and high humidity environment

Gu Haifeng; Sun Zhongning; Zhang Nana; Wang Junlong; Zhou Yanmin; Yan Changqi; Sun Licheng


Archive | 2016

Containment cooling system, and containment and reactor pressure vessel joint cooling system

Sun Zhongning; Fan Guangming; Ding Ming; Yan Changqi; Wang Jianjun; Cao Xiaxin; Gu Haifeng; Zhang Nan


Archive | 2015

Methyl iodide gas sampling system applicable to high pressure steam pipeline environment

Gu Haifeng; Sun Zhongning; Zhou Yanmin; Wang Junlong; Yan Changqi; Wang Xiaoyan; Sun Licheng; Cao Xiaxin


Archive | 2013

Self-support type heat exchanger with micro wavy tubes and straight tubes mixedly arranged

Fan Guangming; Sun Zhongning; Zhang Dongyang; Xu Huiqiang; Yan Changqi; Sun Licheng; Cao Xiaxin; Wang Jianjun; Ding Ming; Gu Haifeng

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Sun Zhongning

Harbin Engineering University

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Yan Changqi

Harbin Engineering University

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Cao Xiaxin

Harbin Engineering University

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Sun Licheng

Harbin Engineering University

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Wang Jianjun

Harbin Engineering University

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Wang Junlong

Harbin Engineering University

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Khurram Mehboob

Harbin Engineering University

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Majid Ali

Harbin Engineering University

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