Network


Latest external collaboration on country level. Dive into details by clicking on the dots.

Hotspot


Dive into the research topics where Wang Huanqin is active.

Publication


Featured researches published by Wang Huanqin.


Plasma Science & Technology | 2013

Simulation of Electrical Discharge Initiated by a Nanometer-Sized Probe in Atmospheric Conditions

Chen Ran; Chen Chilai; Liu Youjiang; Wang Huanqin; Ma Yuan; Michael Cada; Jürgen Brugger; Kong Deyi

In this paper, a two-dimensional nanometer scale tip-plate discharge model has been employed to study nanoscale electrical discharge in atmospheric conditions. The field strength distributions in a nanometer scale tip-to-plate electrode arrangement were calculated using the finite element analysis (FEA) method, and the influences of applied voltage amplitude and frequency as well as gas gap distance on the variation of effective discharge range (EDR) on the plate were also investigated and discussed. The simulation results show that the probe with a wide tip will cause a larger effective discharge range on the plate; the field strength in the gap is notably higher than that induced by the sharp tip probe; the effective discharge range will increase linearly with the rise of excitation voltage, and decrease nonlinearly with the rise of gap length. In addition, probe dimension, especially the width/height ratio, affects the effective discharge range in different manners. With the width/height ratio rising from 1:1 to 1:10, the effective discharge range will maintain stable when the excitation voltage is around 50 V. This will increase when the excitation voltage gets higher and decrease as the excitation voltage gets lower. Furthermore, when the gap length is 5 nm and the excitation voltage is below 20 V, the diameter of EDR in our simulation is about 150 nm, which is consistent with the experiment results reported by other research groups. Our work provides a preliminary understanding of nanometer scale discharges and establishes a predictive structure-behavior relationship.


Archive | 2016

Detection device and detection method for number concentration of fine particulate matter in motor vehicle exhaust gas

Liu Jianguo; Yu Tongzhu; Gui Huaqiao; Wang Huanqin; Zhang Jiaoshi; Cheng Yin; Yang Yixin; Du Peng; Lu Yihuai; Liu Wenqing; Wang Jie


Archive | 2013

Manufacturing method of ultramicropore broadband flexible micro-perforated plate

Kong Deyi; Qian Yujie; Liu Shumei; Wang Huanqin; Zhu Likai; Sun Shaoming; Li Zibo; Li Shanshan; Yin Shiping; Wu Zhihui


Archive | 2012

Miniature measurement and control system for high-field asymmetric waveform ion mobility spectrometry (FAIMS)

Liu Youjiang; Wang Huanqin; Chen Ran; Kong Deyi; Chen Chilai; Wang Dianling; Zhao Cong; Gao Jun; Yin Shiping


Archive | 2017

Panel device for miniaturized-rapidly measuring fine particle size distribution and measuring method thereof

Wang Huanqin; Gui Huaqiao; Qin Feihu; Shi Zongbo; Cao Yangyang; Liu Jianguo; Liu Wenqing


Archive | 2017

Particulate matter particle-size-spectra measurement apparatus with adjustable trap voltage and measurement method

Wang Huanqin; Cao Yangyang; Qin Feihu; Gui Huaqiao; Liu Jianguo; Yu Tongzhu; Sun Qiang; Lyu Liang; Wang Jie; Cheng Yin; Yang Yixin; Zhang Jiaoshi


Archive | 2017

Immersion-type transmitting-receiving combined all-fiber structure liquid turbidity detection device and method

Wang Huanqin; Qin Feihu; Gui Huaqiao; Liu Jianguo; Hu Juntao; Cao Yangyang; Sun Qiang; Lyu Liang


Archive | 2017

Integrative all optical fibre structure liquid turbidity detection device of immersion receiving and dispatching

Wang Huanqin; Qin Feihu; Gui Huaqiao; Liu Jianguo; Hu Juntao; Cao Yangyang; Sun Qiang; Lyu Liang


Archive | 2017

Potential well voltage adjustable particulate matter particle size spectrometer measuring device

Wang Huanqin; Cao Yangyang; Qin Feihu; Gui Huaqiao; Liu Jianguo; Yu Tongzhu; Sun Qiang; Lyu Liang; Wang Jie; Cheng Yin; Yang Yixin; Zhang Jiaoshi


Archive | 2017

Laser vector wind finding radar based on polarization effect and self -mixing effect

Lyu Liang; Bi Tiezhu; Song Xue; Wang Chenchen; Tu Guojie; Zhang Daoxin; Yu Benli; Gui Huaqiao; Wang Huanqin; Fan Xuewei; Yu Didi; Yang Xinbo

Collaboration


Dive into the Wang Huanqin's collaboration.

Top Co-Authors

Avatar

Liu Jianguo

Chinese Academy of Sciences

View shared research outputs
Top Co-Authors

Avatar

Kong Deyi

Chinese Academy of Sciences

View shared research outputs
Top Co-Authors

Avatar
Top Co-Authors

Avatar
Top Co-Authors

Avatar

Chen Chilai

Chinese Academy of Sciences

View shared research outputs
Top Co-Authors

Avatar

Chen Ran

University of Science and Technology of China

View shared research outputs
Top Co-Authors

Avatar

Duan Xiuhua

Chinese Academy of Sciences

View shared research outputs
Top Co-Authors

Avatar

Liu Youjiang

Chinese Academy of Sciences

View shared research outputs
Top Co-Authors

Avatar

Lu Yihuai

Chinese Academy of Sciences

View shared research outputs
Top Co-Authors

Avatar

Zhu Jun

Chinese Academy of Sciences

View shared research outputs
Researchain Logo
Decentralizing Knowledge