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About the database ScholarIQanswers from OpenAlex & ORCID
How has Huixiang Chen's publication output changed over time?
ScholarIQpublication output · 2016–2025
Output grew0% over the shown period — from 1 works in 2016 to 1 in 2025.
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20162017201820192020202220242025
What are the most-cited papers on Huixiang Chen?
ScholarIQmost cited works
Pump as turbine cavitation performance for both conventional and reverse operating modes: A review
Kan Kan, Maxime Binama, Huixiang Chen, Yuan Zheng, Daqing Zhou, Wen-Tao Su, Alexis Muhirwa
S68497187. 2022197 Citations
Transient characteristics during power-off process in a shaft extension tubular pump by using a suitable numerical model
Kan Kan, Huixiang Chen, Yuan Zheng, Daqing Zhou, Maxime Binama, Jing Dai
S815301. 2020173 Citations
Energy loss mechanisms of transition from pump mode to turbine mode of an axial-flow pump under bidirectional conditions
Kan Kan, Zhe Xu, Huixiang Chen, Hui Xu, Yuan Zheng, Daqing Zhou, Alexis Muhirwa, Maxime Binama
Energy. 2022152 Citations
Numerical simulation and experimental study of transient characteristics in an axial flow pump during start-up
Shifeng Fu, Yuan Zheng, Kan Kan, Huixiang Chen, Xingxing Han, Xiaoling Liang, Huiwen Liu, Xiaoqing Tian
S815301. 2019120 Citations
Energy performance evaluation of an axial-flow pump as turbine under conventional and reverse operating modes based on an energy loss intensity model
Kan Kan, Feng Hua Zhao, Hui Xu, Jiangang Feng, Huixiang Chen, Weidong Liu
Physics of Fluids. 202298 Citations
Related on ScholarIQ
Hohai University
Institution
Pump as turbine cavitation performance for both conventional and reverse operating modes: A review
Paper
Transient characteristics during power-off process in a shaft extension tubular pump by using a suitable numerical model
Paper
Energy loss mechanisms of transition from pump mode to turbine mode of an axial-flow pump under bidirectional conditions
Paper
Numerical simulation and experimental study of transient characteristics in an axial flow pump during start-up
Paper
Energy performance evaluation of an axial-flow pump as turbine under conventional and reverse operating modes based on an energy loss intensity model
Paper