H
Hai-Shan Zhou
Researcher at Chinese Academy of Sciences
Publications - 79
Citations - 697
Hai-Shan Zhou is an academic researcher from Chinese Academy of Sciences. The author has contributed to research in topics: Permeation & Irradiation. The author has an hindex of 12, co-authored 77 publications receiving 458 citations. Previous affiliations of Hai-Shan Zhou include Graduate University for Advanced Studies & University of Science and Technology of China.
Papers
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Development and Optimization of STEP—A Linear Plasma Device for Plasma-Material Interaction Studies
Guang-Hong Lu,Long Cheng,Kameel Arshad,Yue Yuan,Jun Wang,Shaoyang Qin,Ying Zhang,Kaigui Zhu,Guang-Nan Luo,Hai-Shan Zhou,Bo Li,Jiefeng Wu,Bo Wang +12 more
TL;DR: The linear plasma device simulator for the Tokamak Edge Plasma (STEP) has been constructed at Beihang University, Beijing, to study plasma-material interactions for fusion reactor applications as mentioned in this paper.
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Gas- and plasma-driven hydrogen permeation through a reduced activation ferritic steel alloy F82H
TL;DR: In this paper, the first wall of a magnetic fusion power reactor will be subjected to hydrogen isotope permeation by the two mechanisms: one is gas-driven and the other is plasma-driven.
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Studies on oxidation and deuterium permeation behavior of a low temperature α-Al2O3-forming FeCrAl ferritic steel
Yu-Ping Xu,Yu-Ping Xu,Sixiang Zhao,Feng Liu,Xiao-Chun Li,Mingzhong Zhao,Jing Wang,Jing Wang,Tao Lu,Suk-Ho Hong,Hai-Shan Zhou,Guang-Nan Luo +11 more
TL;DR: In this paper, the capability of Fe Cr Al ferritic steels as tritium permeation barrier in fusion systems was evaluated, and the oxidation behavior together with the permeation behavior of a Fe CrAl steel was investigated.
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Deuterium gas-driven permeation and subsequent retention in rolled tungsten foils
Feng Liu,Hai-Shan Zhou,Xiao-Chun Li,Yu-Ping Xu,Yu-Ping Xu,Zhong-Qing An,Zhong-Qing An,Hongmin Mao,Wenjing Xing,Qing Hou,Guang-Nan Luo,Guang-Nan Luo +11 more
TL;DR: In this paper, deuterium gas-driven permeation through rolled tungsten foils in the temperature range of 850-950 K and subsequent deutereium retention have been performed.
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Overview of plasma–material interaction experiments on EAST employing MAPES
Fang Ding,G.-N. Luo,R.A. Pitts,Andrey Litnovsky,Xianzu Gong,Rui Ding,Hongmin Mao,Hai-Shan Zhou,William R. Wampler,P.C. Stangeby,Sophie Carpentier,M. Hellwig,Rong Yan,Naoko Ashikawa,M. Fukumoto,Kazunari Katayama,Wenzhang Wang,Huiqian Wang,Chen Liang,Jing Wu,Junling Chen,Songlin Liu,Chunyi Xie +22 more
TL;DR: The Material and Plasma Evaluation System (MAPES) has been built up and used to address a variety of plasma-material interaction (PMI) issues relevant to ITER in 2012 EAST campaign as discussed by the authors.