Best Researcher Award
Lijun Wang — Xi’an Jiaotong University, China
| Lijun Wang | |
|---|---|
| Affiliation | Xi’an Jiaotong University |
| Country | China |
| Scopus ID | 57187379600 |
| Documents | 350 |
| Citations | 4,453 |
| h-index | 33 |
| Subject Area | Technology Innovations |
| Event | Technology Scientists Awards |
Lijun Wang is a researcher affiliated with Xi’an Jiaotong University whose documented scholarly record includes work involving plasma processes, magneto-hydrodynamic simulation, vacuum arcs, and related electrical and computational phenomena. The supplied academic record lists 350 documents, 4,453 citations, and an h-index of 33, providing quantitative indicators of publication activity and citation impact within the submitted profile.
Abstract
Lijun Wang, affiliated with Xi’an Jiaotong University, China, is associated with research addressing computational and physical phenomena in plasma and electrical systems. The supplied profile records 350 documents, 4,453 citations, and an h-index of 33. Selected research includes three-dimensional simulation of plasma diffusion in vacuum hydrogen ion sources, two-dimensional magneto-hydrodynamic analysis of breaking arcs in medium-voltage switchgear, and investigation of vacuum arc cathode spot crater formation using dynamic effective-radius modelling. These studies demonstrate the application of simulation and modelling approaches to technically complex problems involving plasma behaviour, switching phenomena, and vacuum arc processes.[1][2][3]
Keywords
Plasma simulation; vacuum hydrogen ion source; magneto-hydrodynamics; medium-voltage switchgear; breaking arc; vacuum arc; cathode spot; crater formation; dynamic effective radius; computational modelling; electrical engineering; technology innovations.
Introduction
Research into plasma and electrical switching phenomena combines physical modelling with numerical simulation to examine processes that are difficult to observe directly. Wang’s selected studies address plasma diffusion, breaking arcs, and vacuum arc cathode behaviour, linking computational methods with practical engineering problems in ion sources and switching equipment. [1][2][3]
Research Profile
The supplied profile identifies Lijun Wang with Xi’an Jiaotong University and the subject area of Technology Innovations. The reported bibliometric record contains 350 documents, 4,453 citations, and an h-index of 33. Selected publications indicate sustained engagement with computational analysis of plasma, arc, and switching phenomena using physics-based simulation approaches.[1][2][3]
Research Contributions
The selected research contributions concern numerical investigation of plasma and arc behaviour across different engineering settings. The reported studies examine plasma diffusion in a vacuum hydrogen ion source, breaking-arc characteristics in medium-voltage switchgear, and vacuum-arc cathode spot crater formation. Together, these topics illustrate modelling of transient physical processes relevant to electrical and plasma technologies.[1][2][3]
Publications
The supplied publication list includes studies on plasma diffusion, magneto-hydrodynamic simulation of breaking arcs, and vacuum arc cathode spot crater formation. These publications address distinct but related physical processes and employ simulation or modelling frameworks to investigate their behaviour. The topics collectively represent a research profile centred on computational analysis of complex electrical phenomena.[1][2][3]
Research Impact
The supplied bibliometric indicators report 4,453 citations across 350 documents, with an h-index of 33. These figures describe the citation and publication record provided for the researcher and should be interpreted in relation to database coverage, discipline, publication age, and citation practices. The selected studies further indicate continuing engagement with specialised computational engineering problems.[1][2][3]
Award Suitability
The submitted record provides several elements relevant to consideration for a Best Researcher Award, including substantial publication activity, reported citation impact, and an h-index of 33. The selected publications demonstrate research addressing technically specialised plasma and electrical phenomena through simulation and modelling. Final award assessment may additionally consider originality, methodological quality, contribution, and independent evaluation.[1][2][3]
Conclusion
Lijun Wang’s submitted profile combines a substantial bibliometric record with research concerning plasma diffusion, magneto-hydrodynamic arc simulation, and vacuum arc cathode phenomena. The three selected publications illustrate the use of computational approaches to examine complex physical processes. The documented record therefore provides a substantive basis for academic recognition subject to the award’s independent review criteria.[1][2][3]
External Links
References
- 3D simulation study on plasma diffusion process in vacuum hydrogen ion source. (n.d.). Researching.cn.
https://www.researching.cn/articles/OJc5188649713e81e4 - Two-dimensional magneto-hydro-dynamic simulation of breaking arc characteristics in medium-voltage switchgear. (n.d.). Physics of Plasmas.
https://pubs.aip.org/aip/pof/article-abstract/38/5/056116/3391645/ - Study of vacuum arc cathode spot crater formation with dynamic effective radius. (n.d.). Vacuum. ScienceDirect.
https://www.sciencedirect.com/science/article/abs/pii/S0042207X26001934 - Elsevier. (n.d.). Scopus author details: Lijun Wang, Author ID 57187379600. Scopus.
https://www.scopus.com/authid/detail.uri?authorId=57187379600
