Biography

Fuqiang Wang

Harbin Institute of Technology at Weihai,

School of New Energy

Professor Doctor


E-mail: aaronwang544@gmail.com


Qualifications


2012, Harbin Institute of Technology, Engineering Thermo-physics, Ph.D.
2007, Harbin Institute of Technology, Thermal Engineering, Master
2005, Thermal Energy and Power Engineering, China University of Petroleum (East China), Bachelor




Publications


1. Liang Hua-Xu,Wang Fu-Qiang*,Cheng Zi-Ming,Shuai Yong,Lin Bo,Pan Yu-Zhai.Performance study on optical splitting film-based spectral

 splitting concentrated photovoltaic/thermal applications under concentrated solar irradiation.Solar Energy,2020,206:84–91

(SCI、EI,IF=4.674)

2. Cheng Zi-Ming,Shuai Yong,Gong Da-Yang,Wang Fu-Qiang*,Liang Hua-Xu,Li Gui-Qiang.Optical properties and cooling performance analyses

 of single-layer radiative cooling coating with mixture of TiO2 particles and SiO2 particles.Science China-Technological Sciences,2020,63:1–13

(SCI、EI,IF=2.180)

3. Wang Fu-Qiang, Shi Xu-Hang, Zhang Chuan-Xin, Cheng Zi-Ming, Chen    Xue. Effects of non-uniform porosity on thermochemical performance of

solar driven methane reforming. Energy, 2020(IF=5.537)

4. Shi Xu-Hang, Shuai Yong, Wang Fu-Qiang*, Zhang Chuan-Xin, Cheng Zi-Ming, Chen Xue. Effects of ordered hierarchically porous structure on methane

reforming performance in solar foam reactor. Journal of CO2 Utilization, 2020 (IF=5.189)

5.  Liang Hua-Xu,Wang Fu-Qiang*,Zhang Dong,Cheng Zi–Ming,Zhang Chuan-Xin,Lin Bo,Xu Hui-Jin.Experimental investigation of cost-effective

 ZnO nanofluids based spectral splitting CPV/T system. Energy,2020,194:116913(IF=5.537)

6.  Shi Xu-Hang,Shuai Yong,Wang Fu-Qiang*,Zhang Chuan-Xin,Cheng Zi–Ming,Chen Xue.Effects of ordered hierarchically porous structure on

methane reforming performance in solar foam reactor. Journal of CO2 Utilization,2020,37:147–157(IF=5.189)

7. Yuan Yuan,Lin Xiao-Jie,Cheng Zi-Ming,Wang Fu-Qiang*,Shuai Yong,Tan He-Ping.Experimental investigation of thermal performance enhancement

 of cavity receiver with bottom surface interior convex. Applied Thermal Engineering,2020,168:114847(IF=4.026)

8. Cheng Zi-Ming,Shuai Yong,Gong Da-Yang,Wang Fu-Qiang*,Liang Hua-Xu,Li Gui-Qiang.Optical properties and cooling performance analyses of

 single-layer radiative cooling coating with mixture of TiO2 particles and SiO2 particles.Science China-Technological Sciences,In Press(IF=2.180)

9. Liang Hua-Xu,Wang Fu-Qiang*,Cheng Zi-Ming,Xu Chao,Li Gui-Qiang,Shuai Yong.Full-spectrum solar energy utilization and enhanced solar energy

 harvesting via photon anti-reflection and scattering performance using nanophotonic structure.ES Energy &  Environment,2020,In Press

10.  Zhang Hao,Shuai Yong*,Bachirou Guene–Lougou,Jiang Bo–Su,Wang Fu-Qiang,Cheng Zi–Ming,Tan He-Ping.Effects of multilayer porous ceramics

on thermochemical energy conversion and storage efficiency in solar dry reforming of methane reactor. Applied Energy,2020,265:114799(IF=8.426)

11.  Zhang Chuan–Xin,Li Tian–Jiao,Yuan Yuan*,Wang Fu–Qiang,Tan He–Ping.Effects of droplets in the air on light transmission in target optical

 detection. Optics and Lasers in Engineering,2020,128:106044(IF=4.059)

12. Zhang Chuan-Xin,Shi Xu-Hang,Li Tian-Jiao,Yuan Yuan*,Wang Fu-Qiang,Tan He-Ping.Determining the effects of droplets attached to glass on light

 transmission by using Monte Carlo ray tracing method in target optical detection.Journal of Quantitative Spectroscopy and Radiative Transfer,2020,

245:106856(IF=2.955)

13. Qi Han-Bing,Deng Ji-Tong,Li Dong*,Wang Fu-Qiang,Arıcı Müslüm*,Wang Qiu–Shi.Optical properties of paraffin suspension containing TiO2

nanoparticles. Optik,2020,In Press(IF=1.914)

14. Chen Xue*,Xia Xin-Lin,Sun Chuang*, Wang Fu-Qiang,Liu Rong-Qiang.Performance evaluation of a double-pipe heat exchanger with uniform and

graded metal foams. Heat and Mass Transfer,2020,56 (1):291–302

15. Liang Hua-Xu, Han Han, Wang Fu-Qiang*, Cheng Zi-Ming, Pan Yu-Zhai, Tan Jian-Yu. Experimental investigation on spectral splitting of photovoltaic/

 thermal hybrid system with two-axis sun tracking based on SiO2/TiO2 interference thin film. Energy Conversion and Management, 2019,

188: 230-240 (IF=7.181)



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