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Featured researches published by Pan Yiwen.


Science China-earth Sciences | 2016

Research progress in artificial upwelling and its potential environmental effects

Pan Yiwen; Fan Wei; Zhang DaHai; Chen Jiawang; Huang Haocai; Liu Shuxia; Jiang Zongpei; Di YaNan; Tong MengMeng; Chen Ying

Artificial upwelling, as a geoengineering tool, has received worldwide attention because it may actualize ocean fertilization in a sustainable way, which could potentially alleviate the pressures on the fish stocks and human-driven climate change in the ocean. We reviewed the current knowledge on the development of an artificial upwelling system and its potential environmental effects. Special attention was given to the research progress on the air-lift concept artificial upwelling by Zhejiang University. The research on artificial upwelling over the past few decades has generated a range of devices that have been successfully applied in the field for months. Based on field experiments and the associated modeling results, part of them reported positive effects on increasing primary production and enhancing CO2 sequestration. However, as a significant disturbance to the environment, especially for large-scale applications, the uncertainties related to the potential effects on ecosystem remain unsolved. Zhejiang University has overcome the technical challenges in designing and fabricating a robust and high efficiency artificial upwelling device which has been examined in two field experiments in Qiandao Lake and one sea trial in the East China Sea. It was investigated that cold and hypoxic deep ocean water (DOW) could be uplifted to the euphotic layer, which could potentially change the nutrient distribution and adjust the N/P ratio. Both simulation and field experiments results confirmed that utilizing self-powered energy to inject compressed air to uplift DOW was a valid and efficient method. Therefore, further field-based research on artificial upwelling, especially for long-term field research is required to test the scientific hypothesis.


Archive | 2013

Artificial upwelling marine environment multi-parameter real-time continuous three-dimensional monitoring system

Huang Haocai; Chen Ying; Chen Jiawang; Leng Jinying; Fan Wei; Pan Yiwen; Lin Shan; Liu Mingzhou; Yang Jing


Archive | 2015

Timing seawater sampling device

Fan Wei; Xu Chicheng; Qiang Yongfa; Wang Kui; Pan Yiwen; Chen Ying


Archive | 2013

Multi-parameter real-time continuous three-dimensional monitoring system for marine environment with artificial upwelling

Huang Haocai; Chen Ying; Chen Jiawang; Leng Jinying; Fan Wei; Pan Yiwen; Lin Shan; Liu Mingzhou; Yang Jing


Archive | 2016

Anoxic zone sea area continuous normal position monitoring platform device

Fan Wei; Xu Feng; Wang Kui; Xu Chicheng; Qiang Yongfa; Pan Yiwen; Chen Ying


Archive | 2016

Artifical sinking device

Chen Ying; Fan Wei; Pan Yiwen; Xu Chicheng; Qiang Yongfa; Xiao Canbo; Jiang Zongpei; Zhang Chaohui; Liu Shuxia


Archive | 2013

Flexible ocean manpower upwelling pipe

Fan Wei; Chen Ying; Zhang Zhujun; Cai Yong; Chen Jiawang; Huang Haocai; Liang Naikuang; Peng Haikun; Pan Yiwen; Ge Han


Archive | 2016

Macro algae breeding device

Fan Wei; Xu Feng; Xu Chicheng; Qiang Yongfa; Pan Yiwen; Chen Ying


Archive | 2016

Artificial downwelling device

Chen Ying; Fan Wei; Pan Yiwen; Xu Chicheng; Qiang Yongfa; Xiao Canbo; Jiang Zongpei; Zhang Zhaohui; Liu Shuxia


Archive | 2016

Continuous in-situ monitoring platform device in hypoxia sea area

Fan Wei; Xu Feng; Wang Kui; Xu Chicheng; Qiang Yongfa; Pan Yiwen; Chen Ying

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