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Dive into the research topics where Qingquan Yang is active.

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Featured researches published by Qingquan Yang.


Physics of Plasmas | 2015

Fast electron flux driven by lower hybrid wave in the scrape-off layer

Yan Li; Guosheng Xu; H. Q. Wang; C. Xiao; Baonian Wan; Zhe Gao; R. Chen; Ling-Jian Wang; Kaifu Gan; J. H. Yang; Xiaotao Zhang; Shaojin Liu; M. H. Li; S. Ding; N. Yan; W. Zhang; G. H. Hu; Y. Liu; L. M. Shao; J.G. Li; L. Chen; Ning Zhao; J. C. Xu; Qingquan Yang; H. Lan; Yang Ye

The fast electron flux driven by Lower Hybrid Wave (LHW) in the scrape-off layer (SOL) in EAST is analyzed both theoretically and experimentally. The five bright belts flowing along the magnetic field lines in the SOL and hot spots at LHW guard limiters observed by charge coupled device and infrared cameras are attributed to the fast electron flux, which is directly measured by retarding field analyzers (RFA). The current carried by the fast electron flux, ranging from 400 to 6000 A/m2 and in the direction opposite to the plasma current, is scanned along the radial direction from the limiter surface to the position about 25 mm beyond the limiter. The measured fast electron flux is attributed to the high parallel wave refractive index n|| components of LHW. According to the antenna structure and the LHW power absorbed by plasma, a broad parallel electric field spectrum of incident wave from the antennas is estimated. The radial distribution of LHW-driven current density is analyzed in SOL based on Landau d...


Plasma Physics and Controlled Fusion | 2016

Density limits investigation and high density operation in EAST tokamak

X.W. Zheng; Jiangang Li; Jiansheng Hu; Haiqing Liu; Yinxian Jie; Shouxin Wang; Jiahong Li; Yanming Duan; M. H. Li; Yongchun Li; Ling Zhang; Yang Ye; Qingquan Yang; Tao Zhang; Yingjie Cheng; Jichan Xu; Liang Wang; Liqing Xu; H.L. Zhao; Fudi Wang; S. Y. Lin; Bin Wu; B. Lyu; Guosheng Xu; X. Gao; Tonghui Shi; Kaiyang He; H. Lan; Nan Chu; Bin Cao

Increasing the density in a tokamak is limited by the so-called density limit, which is generally performed as an appearance of disruption causing loss of plasma confinement, or a degradation of high confinement mode which could further lead to a H → L transition. The L-mode and H-mode density limit has been investigated in EAST tokamak. Experimental results suggest that density limits could be triggered by either edge cooling or excessive central radiation. The L-mode density limit disruption is generally triggered by edge cooling, which leads to the current profile shrinkage and then destabilizes a 2/1 tearing mode, ultimately resulting in a disruption. The L-mode density limit scaling agrees well with the Greenwald limit in EAST. The observed H-mode density limit in EAST is an operational-space limit with a value of . High density H-mode heated by neutral beam injection (NBI) and lower hybrid current drive (LHCD) are analyzed, respectively. The constancy of the edge density gradients in H-mode indicates a critical limit caused perhaps by e.g. ballooning induced transport. The maximum density is accessed at the H → L transition which is generally caused by the excessive core radiation due to high Z impurities (Fe, Cu). Operating at a high density () is favorable for suppressing the beam shine through NBI. High density H-mode up to could be sustained by 2 MW 4.6 GHz LHCD alone, and its current drive efficiency is studied. Statistics show that good control of impurities and recycling facilitate high density operation. With careful control of these factors, high density up to 0.93 stable H-mode operation was carried out heated by 1.7 MW LHCD and 1.9 MW ion cyclotron resonance heating with supersonic molecular beam injection fueling.


Archive | 2010

Anti-bacterial thermoplastic composite and preparation method thereof

Li Chen; Jie Li; Kui Li; Tao Liu; Mingfu Lu; Yun Lu; Jingbo Shao; Xiaolan Wang; Meng Xu; Qingquan Yang; Hua Yin; Hao Zhang; Hongbo Zhang; Liying Zhang; Wei Zhang; Hao Zou


Archive | 2011

Antibacterial mold-resistant PVC (Poly Vinyl Chloride) flexible composition and preparation method thereof

Tao Liu; Jie Li; Guoyuan Pan; Liying Zhang; Hua Yin; Jingbo Shao; Wei Zhang; Kui Li; Mingfu Lv; Hao Zou; Qingquan Yang; Meng Xu; Li Chen; Yun Lv; Hao Zhang; Xiaolan Wang; Hongbo Zhang


Archive | 2012

Polylactic acid composition for environmentally-friendly synthetic paper and preparation method thereof

Xiaolan Wang; Meifang Guo; Jiaxiang Hou; Dali Gao; Liying Zhang; Qingquan Yang; Hua Yin; Lili Yan


Archive | 2012

Compound antimicrobial and preparation method thereof

Li Chen; Jie Li; Kui Li; Tao Liu; Mingfu Lu; Yun Lu; Jingbo Shao; Xiaolan Wang; Meng Xu; Qingquan Yang; Hua Yin; Hao Zhang; Hongbo Zhang; Liying Zhang; Wei Zhang; Hao Zou


Archive | 2011

Poly-guanidine pyrithione acid salt antimicrobial and preparation method thereof

Jie Li; Wei Zhang; Liying Zhang; Tao Liu; Hao Zhang; Hua Yin; Jingbo Shao; Xiaolan Wang; Kui Li; Mingfu Lu; Hao Zou; Qingquan Yang; Hongbo Zhang; Meng Xu; Li Chen; Yun Lu


Archive | 2011

Composite antibacterial agent and preparation method thereof

Jie Li; Wei Zhang; Liying Zhang; Tao Liu; Hao Zhang; Hua Yin; Jingbo Shao; Xiaolan Wang; Kui Li; Mingfu Lv; Hao Zou; Qingquan Yang; Hongbo Zhang; Meng Xu; Li Chen; Yun Lv


Archive | 2011

Radiation-resistance high-elastic resilience polyvinyl chloride composition and preparation method thereof

Tao Liu; Wei Zhang; Jingbo Shao; Liying Zhang; Kui Li; Jie Li; Hua Yin; Hao Zou; Hao Zhang; Li Chen; Hongbo Zhang; Meng Xu; Qingquan Yang


Archive | 2012

Processing agent for polyolefin and alloy thereof, preparation method and application thereof

Qingquan Yang; Wei Zhang; Liying Zhang; Tao Liu; Hao Zhang; Hua Yin; Jingbo Shao; Xiaolan Wang; Kui Li; Mingfu Lu; Hao Zou; Jie Li; Hongbo Zhang; Meng Xu; Li Chen; Yun Lu

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Tao Liu

East China University of Science and Technology

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Guosheng Xu

Chinese Academy of Sciences

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Haiqing Liu

Chinese Academy of Sciences

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Jichan Xu

Chinese Academy of Sciences

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Liang Wang

Chinese Academy of Sciences

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