Luca Zannini | Engineering | Young Researcher Award

Young Researcher Award

Luca Zannini
Affiliation University of Modena and Reggio Emilia
Country Italy
Scopus ID 59258265500
Documents 2
Citations 20
h-index 2
Subject Area Engineering
Event International Young Scientists Award
ORCID 0009-0000-6923-2457

Luca Zannini

University of Modena and Reggio Emilia, Italy

Luca Zannini is an emerging researcher affiliated with the University of Modena and Reggio Emilia, Italy, whose academic activities are associated with the field of Engineering. Through scholarly investigations and peer-reviewed publications, the researcher has contributed to the development of technical knowledge within the engineering domain. Research performance indicators, including publication output, citation records, and h-index measurements, provide an overview of scholarly engagement and the influence of published work within the academic community. Such metrics are frequently used to assess research visibility and scientific contribution across disciplines.[1]

Abstract

This academic profile summarizes the scholarly activities, research indicators, and professional achievements of Luca Zannini in the field of Engineering. The profile considers publication records, citation performance, research visibility, and academic contributions. Although the documented publication portfolio remains at an early stage, the available bibliometric indicators demonstrate growing engagement with scientific research and the dissemination of engineering knowledge. Citation activity associated with the researcher’s publications suggests that the work has attracted attention within relevant scholarly communities and contributes to ongoing technical discussions.[1]

Keywords

Engineering, Scientific Research, Academic Publications, Citation Analysis, Young Researcher, Research Impact, Innovation, Technical Studies, Scholarly Communication, International Young Scientists Award.

Introduction

Engineering research plays a fundamental role in advancing technology, industrial development, sustainability, and innovation. Researchers in this discipline contribute to the creation of new methods, systems, and applications that address contemporary technical challenges. Luca Zannini’s academic activities are situated within this broader context of engineering scholarship. Through participation in scientific publication and research dissemination, the researcher contributes to the accumulation and exchange of technical knowledge that supports future scientific and industrial progress.[2]

Research Profile

According to available bibliometric information, Luca Zannini has authored two indexed publications that have collectively received twenty citations. The researcher currently maintains an h-index of 2, indicating that multiple publications have generated measurable scholarly attention. These indicators provide a quantitative perspective on research productivity and academic visibility while also highlighting the early-stage development of a growing research career.[1]

Research Contributions

  • Contribution to engineering-related scientific investigations and scholarly communication.
  • Participation in peer-reviewed research activities and publication processes.
  • Development of technical knowledge through academic collaboration and research dissemination.
  • Support for innovation and evidence-based engineering practices through scientific output.

Publications

The researcher’s publication portfolio consists of peer-reviewed scholarly works indexed within recognized academic databases. These publications serve as a platform for communicating research findings, encouraging scientific discussion, and contributing to the broader engineering literature. Through publication and citation activity, the research outputs demonstrate relevance to ongoing academic and technical investigations.[3]

Research Impact

Research impact is often evaluated through indicators such as citations, publication quality, collaboration networks, and scholarly influence. The citation record associated with Luca Zannini’s publications indicates that the research has been referenced by other academic works, contributing to knowledge exchange within the engineering community. As research activity continues to expand, such indicators may further reflect the growing influence of the researcher’s scientific contributions.[1]

Award Suitability

The Young Researcher Award recognizes promising scholars who demonstrate dedication to scientific advancement and research excellence during the early stages of their careers. Based on the available publication record, citation performance, institutional affiliation, and scholarly engagement, Luca Zannini represents a developing research profile within the field of Engineering. These characteristics align with the objectives of programs that seek to encourage emerging researchers and support continued scientific achievement. Final award consideration remains subject to the evaluation criteria established by the organizing committee of the International Young Scientists Award.[4]

Conclusion

Luca Zannini’s academic profile reflects an emerging presence within Engineering research, supported by peer-reviewed publications, citation activity, and engagement with scientific scholarship. While the documented research portfolio remains at an early stage, available indicators demonstrate meaningful participation in academic research and knowledge dissemination. Continued scholarly activity, publication growth, and interdisciplinary collaboration are expected to strengthen the researcher’s contribution to the engineering field and enhance future academic impact.[1]

References

  1. Elsevier. (n.d.). Scopus author details: Luca Zannini, Author ID 59258265500. Scopus.
    https://www.scopus.com/authid/detail.uri?authorId=59258265500
  2. National Academy of Engineering. (n.d.). The role of engineering research in technological advancement.
    https://www.nae.edu
  3. Orcid. (n.d.). Orcid author details. Luca Zannini.
    https://orcid.org/0009-0000-6923-2457
  4. International Young Scientists Award. (n.d.). Award eligibility and recognition criteria.
    https://youngscientistawards.com/

Chandan Pandey | Engineering | Young Scientist Award

Young Scientist Award

Chandan Pandey
IIT Jodhpur, India
Chandan Pandey
Affiliation IIT Jodhpur
Country India
Scopus ID 56494528900
Documents 233
Citations 8,637
h-index 55
Subject Area Engineering
Event International Young Scientists Award
Google Scholar View Profile

Chandan Pandey of IIT Jodhpur, India. His academic record demonstrates sustained contributions to engineering research through high-impact publications, extensive citation performance, and active participation in scientific advancement. With more than 233 indexed publications, 8,637 citations, and an h-index of 55, his research portfolio reflects notable influence across engineering disciplines and interdisciplinary technological studies.[1]

Abstract

This article presents a concise academic overview of Chandan Pandey and evaluates his suitability for recognition through the International Young Scientists Award. His scholarly activities encompass engineering research, scientific publications, collaborative investigations, and contributions to knowledge dissemination. The measurable indicators of research productivity, including publication output, citation count, and h-index, demonstrate a sustained level of academic engagement and visibility within the global research community.[1]

Keywords

Engineering Research, Scientific Publications, Innovation, Citation Impact, Scopus Author Profile, Academic Recognition, Research Excellence, IIT Jodhpur, Young Scientist Award, Scholarly Contributions.

Introduction

Research excellence is commonly assessed through scholarly productivity, scientific influence, and contributions to advancing knowledge. Chandan Pandey has established a substantial academic profile through publication activity and citation performance. His work reflects engagement with engineering challenges and emerging technological developments while supporting the broader objectives of innovation and scientific progress.[2]

Research Profile

The research profile of Chandan Pandey indicates extensive scholarly activity. According to publicly available academic indexing services, his publication record includes more than two hundred peer-reviewed documents. These publications have received significant citation attention, suggesting that the research has contributed meaningfully to ongoing scientific discussions and technological applications.[1]

  • 233 indexed research documents.
  • 8,637 scholarly citations.
  • h-index of 55.

Research Contributions

The research contributions associated with Chandan Pandey demonstrate participation in areas related to engineering innovation, applied scientific methodologies, and interdisciplinary investigations. His publications have supported the development of scientific understanding and have contributed to research networks through collaboration and dissemination of findings. Such contributions are reflected through citation metrics and continued academic engagement.[3]

Publications

The publication portfolio includes journal articles, conference papers, reviews, and collaborative research outputs indexed by major scholarly databases. The breadth of publications demonstrates sustained academic productivity and ongoing participation in research activities. Selected works are associated with internationally recognized publishers and indexed literature repositories.[1]

Research Impact

Research impact is frequently measured using citations, visibility, and adoption within subsequent studies. The citation count exceeding 8,600 and h-index of 55 indicate substantial scholarly recognition. These indicators suggest that published findings have been referenced by numerous researchers, thereby contributing to the cumulative advancement of engineering knowledge and related scientific fields.[1]

Award Suitability

Based on publicly available academic indicators, Chandan Pandey demonstrates characteristics commonly associated with candidates for scientific recognition programs. His publication record, citation performance, institutional affiliation, and demonstrated research engagement provide evidence of scholarly achievement. These attributes align with the objectives of the International Young Scientists Award, which seeks to acknowledge individuals contributing to scientific advancement and research excellence.[4]

Conclusion

Chandan Pandey’s academic profile reflects sustained research productivity, measurable scholarly influence, and active participation in engineering research. The combination of publication volume, citation impact, and institutional affiliation highlights a record of academic achievement. Within the context of scientific recognition initiatives, these accomplishments support consideration for acknowledgement through international research and innovation award programs.[1]

References

  1. Elsevier. (n.d.). Scopus author details: Chandan Pandey, Author ID 56494528900. Scopus.
    https://www.scopus.com/authid/detail.uri?authorId=56494528900
  2. Google Scholar. (n.d.). Scholar profile and citation metrics for Chandan Pandey.
    https://scholar.google.co.in/citations?user=s-7k1QEAAAAJ&hl=en
  3. Pandey, C. et al. (2018). Research publication with DOI indexing.
    DOI: https://doi.org/10.1016/j.nanoen.2018.03.021
  4. International Young Scientists Award. (n.d.). Award objectives and recognition framework.
    https://youngscientistawards.com/

Nasreddine Belbachir | Electrical Engineering | Young Scientist Award

 Dr. Nasreddine Belbachir | Electrical Engineering | Young Scientist Award

👨‍🏫Profile Summary

Nasreddine Belbachir received a B.Sc. degree in Electrical Engineering from the University of Relizane, Algeria, in 2013, and a M.Sc. degree in Electrical Engineering and Renewable Energy from the University of Mostaganem, Algeria, in 2015. Recently received a Ph.D. degree in Electrical Engineering and Renewable Energy from the University of Mostaganem, Algeria. His research interests include the optimal integration of renewable energy in distribution grids, electric vehicles, power systems protection, PV parameters optimization. Also, he works as an electrical engineer for more than 8 years in the oil and gas industry at Sonatrach, Algeria. Holding a research Index H= 7 with more than 110 citations.

🌐 Professional Profiles

🎓 Education

B.Sc. in Electrical Engineering, University of Relizane, Algeria, 2013, M.Sc. in Electrical Engineering and Renewable Energy, University of Mostaganem, Algeria, 2015, Ph.D. in Electrical Engineering and Renewable Energy, University of Mostaganem, Algeria, 2022

💼 Experience

Electrical Engineer at Sonatrach, Algeria (2015-2022), Temporary Teacher of Power Systems at University of Mostaganem, Algeria (2020-2022), Electrical & Instrumentation Engineer at Sonatrach, TRC/RTO (2022-present)

🔧 Training

2 years of professional training as an Electrical Engineer at Sonatrach – Ourhoud, 4 months of theoretical training at the Algerian Petroleum Institute (IAP), Short-term trainings in HSE, Risk Assessment, First Aid, Electrical Security, Electrical Maintenance, ATEX, Defensive Driving

💻 Skills

Proficiency in MATLAB, LabVIEW, Adobe products, Microsoft products, Homer Pro, PVSyst, ETAP, Data Stream, GMO, SAP, and AutoCAD, Excellent analytical, problem-solving, and communication skills, Strong understanding of electrical theory, logic control, and HSE, Wide knowledge in Oil & Gas processes, security, and maintenance, Strong academic research background with participation in international conferences and publications in reputable journals

Research Focus:

The research focus of N. Belbachir centers on the optimal integration of renewable energy sources, particularly photovoltaic distributed generation (PVDG), into electrical distribution systems. Employing metaheuristic optimization algorithms and considering various factors such as seasonal uncertainties, load demand, and overcurrent relay characteristics, Belbachir investigates the efficient allocation and sizing of PVDG and related systems like battery energy storage and distribution static var compensators. By addressing these challenges, Belbachir’s work contributes to enhancing the reliability, efficiency, and sustainability of distribution networks, ultimately facilitating the transition towards a greener and more resilient energy infrastructure.

  • All Time:
    • Citations: 119 📖
    • h-index: 9 📊
    • i10-index: 9 🔍
  • Since 2018:
    • Citations: 119 📖
    • h-index: 9 📊
    • i10-index: 9 🔍

📚Top Noted Publication

  1. Simultaneous optimal integration of photovoltaic distributed generation and battery energy storage system in active distribution network using chaotic grey wolf optimization
    • Authors: N Belbachir, M Zellagui, S Settoul, CZ El-Bayeh, B Bekkouche
    • Journal: Электротехника и электромеханика
    • Pages: 52-61
    • Year: 2021
    • Citations: 20

 

  1. Optimal allocation of RDG in distribution system considering the seasonal uncertainties of load demand and solar-wind generation systems
    • Authors: M Zellagui, N Belbachir, CZ El-Bayeh
    • Conference: IEEE EUROCON 2021-19th International Conference on Smart Technologies
    • Pages: 471-477
    • Year: 2021
    • Citations: 18

 

  1. Optimal integration of photovoltaic distributed generation in electrical distribution network using hybrid modified PSO algorithms
    • Authors: N Belbachir, M Zellagui, A Lasmari, CZ El-Bayeh, B Bekkouche
    • Journal: Indonesian Journal of Electrical Engineering and Computer Science
    • Volume: 24
    • Issue: 1
    • Pages: 50-60
    • Year: 2021
    • Citations: 17

 

  1. Optimal PV sources integration in distribution system and its impacts on overcurrent relay based time-current-voltage tripping characteristic
    • Authors: N Belbachir, M Zellagui, A Lasmari, CZ El-Bayeh, B Bekkouche
    • Conference: 2021 12th International Symposium on Advanced Topics in Electrical
    • Pages: 15
    • Year: 2021
    • Citations: 15

 

  1. Arithmetic optimization algorithm for optimal installation of DSTATCOM into distribution system based on various voltage stability indices
    • Authors: M Zellagui, A Lasmari, S Settoul, CZ El-Bayeh, R Chenni, N Belbachir
    • Conference: 2021 9th International Conference on Modern Power Systems (MPS)
    • Pages: 1-6
    • Year: 2021
    • Citations: 11

 

  1. Multi-objective optimal renewable distributed generator integration in distribution systems using grasshopper optimization algorithm considering overcurrent relay indices
    • Authors: N Belbachir, M Zellagui, S Settoul, CZ El-Bayeh
    • Conference: 2021 9th International Conference on Modern Power Systems (MPS)
    • Pages: 1-6
    • Year: 2021
    • Citations: 11

 

  1. Multi-objective optimal allocation of hybrid photovoltaic distributed generators and distribution static var compensators in radial distribution systems using various …
    • Authors: M Zellagui, N Belbachir, RA El-Sehiemy, CZ El-Bayeh
    • Journal: Journal of Electrical Systems
    • Volume: 18
    • Issue: 1
    • Year: 2022
    • Citations: 10

 

  1. Multi dimension-based optimal allocation of uncertain renewable distributed generation outputs with seasonal source-load power uncertainties in electrical distribution network …
    • Authors: N Belbachir, M Zellagui, S Settoul, CZ El-Bayeh, RA El-Sehiemy
    • Journal: Energies
    • Volume: 16
    • Issue: 4
    • Pages: 1595
    • Year: 2023
    • Citations: 8
  1. Optimal location and sizing of multiple distributed generators in radial distribution network using metaheuristic optimization algorithms
    • Authors: N Belbachir, M Zellagui, B Bekkouche
    • Journal: Facta Universitatis, Series: Electronics and Energetics
    • Volume: 35
    • Issue: 2
    • Pages: 229-242
    • Year: 2022

 

  1. Photosynthetic and cellular responses in plants under saline conditions
    • Authors: KBM Ahmed, S Singh, Y Sadiq, MMA Khan, M Uddin, M Naeem, T Aftab
    • Book: Frontiers in Plant-Soil Interaction
    • Pages: 293-365
    • Year: 2021

 

  1. Application hybrid chaotic maps and adaptive acceleration coefficients PSO algorithm for optimal integration photovoltaic distributed generation problem in distribution energy …
    • Authors: M Zellagui, N Belbachir, A Lasmari, B Bekkouche, CZ El-Bayeh
    • Book: Control Applications in Modern Power Systems: Select Proceedings of EPREC
    • Pages: 5
    • Year: 2022

Maryam Nasehnejad | Thin films | Women Researcher Award

 Dr. Maryam Nasehnejad | Thin films | Women Researcher Award

👨‍🏫Profile Summary

Maryam Nasehnejad, a Ph.D. graduate in Solid State Physics from Arak University, Iran, focuses on thin film physics and materials science. With expertise in electrodeposition, AFM dynamic studies, and fractal analysis, her research explores the morphology, structure, and properties of electrodeposited metal films. Her work delves into magnetic anisotropy, giant magnetoresistance, and the relationship between surface roughness and magnetic behavior in thin films. Through collaborations, she aims to advance our understanding of nanostructured materials for applications spanning magnetic recording, sensors, and nanoelectronics. With a citation count of 117 and an h-index of 6, her contributions significantly impact the field.

🌐 Professional Profiles

🎓Education:

PhD in Solid State Physics, Arak University, Iran, 2017

🔬Professional Skills:

Electrodeposition, Dynamic studies of surface roughness of thin films using Atomic Force Microscope (AFM), Growth and studies of morphology and physical properties of nanocrystalline materials, Fractal and multifractal analysis of thin films, Magnetic anisotropy properties of thin films, Magnetic properties and giant magnetoresistance of thin films, Simulation of the growth of thin films by electroplating using DLA model, Simulation of multiphase and nanostructured systems using MATLAB software, Computational methods for investigating nanoscale behavior of thin film surfaces

Research Focus:

The research focus of Maryam Nasehnejad and her collaborators encompasses a broad range of topics in thin film physics and materials science. Their work primarily investigates the morphology, structure, and properties of electrodeposited metal films, particularly silver and cobalt-silver alloys, using techniques such as atomic force microscopy (AFM), dynamic scaling analysis, and fractal characterization. Additionally, they explore the relationship between surface roughness and magnetic properties in thin films. Through their comprehensive studies, they aim to deepen our understanding of nanostructured materials and their potential applications in various fields, including magnetic recording, sensor technology, and nanoelectronics.

  • All Time:
    • Citations: 117 📖
    • h-index: 6 📊
    • i10-index: 5 🔍
  • Since 2018:
    • Citations: 99 📖
    • h-index: 5 📊
    • i10-index: 4 🔍

📚Top Noted Publication

  1. Atomic force microscopy study, kinetic roughening and multifractal analysis of electrodeposited silver films
    • Authors: M. Nasehnejad, M. Gholipour Shahraki, G. Nabiyouni
    • Journal: Applied Surface Science
    • Volume: 389
    • Pages: 735–741
    • Year: 2016

 

  1. Dynamic scaling study of nanostructured silver films
    • Authors: M. Nasehnejad, G. Nabiyouni, M. Gholipour Shahraki
    • Journal: Physics D: Applied Physics
    • Volume: 50
    • Article Number: 375301
    • Year: 2017

 

  1. Thin film growth by 3D multi-particle diffusion limited aggregation model: anomalous roughening and fractal analysis
    • Authors: Maryam Nasehnejad, Mehran Gholipour Shahraki, Gholamreza Nabiyouni
    • Journal: Physica A
    • Volume: 493
    • Pages: 135–147
    • Year: 2018

 

  1. Morphological characterization and microstructure of silver films prepared by electrodeposition method
    • Authors: Maryam Nasehnejad, Gholamreza Nabiyouni, Mehran Gholipour Shahraki
    • Journal: Surface Engineering
    • Volume: 33
    • Pages: 389-394
    • Year: 2016

 

  1. Fractal Analysis of Nanostructured Silver Film Surface
    • Authors: M. Nasehnejad, G. Nabiyouni, M. Gholipour Shahraki
    • Journal: Chinese Journal of Physics
    • Volume: 55
    • Pages: 2484–2490
    • Year: 2017

 

  1. Conventional and fractal analyses and nanoscale behavior studies of electrodeposited silver films
    • Authors: M. Nasehnejad, G. Nabiyouni, M. Gholipour Shahraki
    • Journal: Physica B: Condensed Matter
    • Volume: 548
    • Pages: 46–52
    • Year: 2018

 

  1. Studying magnetic properties and surface roughness evolution of Ag-Co electrodeposited films
    • Authors: Maryam Nasehnejad, Gholamreza Nabiyouni
    • Journal: Journal of Magnetism and Magnetic Materials
    • Volume: 490
    • Article Number: 165501
    • Year: 2019

 

  1. Structure, magnetic properties and giant magnetoresistance of granular cobalt–silver films
    • Authors: Maryam Nasehnejad, Gholamreza Nabiyouni
    • Journal: Applied Physics A
    • Volume: 128
    • Page: 162
    • Year: 2022

 

  1. Structure and size effects in the magnetic anisotropy factors of Co-Ag nano granular films
    • Authors: Mehrdad Ahmadi, Maryam Nasehnejad
    • Journal: Colloid & Nanoscience Journal
    • Volume: 1
    • Pages: 11-21
    • Year: 2023

 

  1. Influence of composition on the structural, magnetic and magnetotransport properties of nanostructured Co-Ag films fabricated by electrodeposition technique
    • Authors: Mehrdad Ahmadi, Maryam Nasehnejad
    • Journal: Journal of Magnetism and Magnetic Materials
    • Volume: 589
    • Article Number: 171568
    • Year: 2024

 

  1. Morphological and multifractal studies of nanocrystalline Au films
    • Authors: Mehrdad Ahmadi, Maryam Nasehnejad
    • Journal: Progress in Physics of Applied Materials
    • Volume: 4
    • Pages: 27-35
    • Year: 2024

 

  1. Role of substrate on the fractal characteristics of nanostructure surfaces of electrodeposited nickel thin films
    • Authors: Maryam Nasehnejad, Gholamreza Nabiyouni
    • Journal: Physics of the Solid State
    • Status: Accepted
    • Year: 2024

 

  1. Morphology and structure of electrodeposited nanoscale Ag thin films: Dynamic scaling behavior
    • Authors: Mehrdad Ahmadi, Maryam Nasehnejad
    • Journal: Nanostructure
    • Status: Accepted
    • Year: 2024

 

  1. Relationship between roughness and magnetic properties of thin film
    • Authors: M. Nasehnejad
    • Conference: Zoominar on Stemio’s Magnetism and Magnetic Materials (SMMM-2021)
    • Location: Singapore
    • Year: 2021

 

  1. Surface roughening and nanoscale behavior of electrodeposited silver thin films
    • Authors: M. Gholipour Shahraki, M. Nasehnejad, G. Nabiyouni
    • Conference: International Conference on Material Sciences and Nanomaterials
    • Location: Barcelona, Spain
    • Year: 2017

 

Bingye Han| Pavement Engineering | Young Scientist Award

Assist Prof Dr. Bingye Han |Pavement Engineering | Young Scientist Award

👨‍🏫Profile Summary

With a background spanning from bachelor’s to doctoral degrees in Road, Bridge, and River Crossing Engineering, along with extensive research experience in Road and Railway Engineering, this individual has made remarkable contributions to transportation infrastructure. Their work, supported by prestigious grants and projects, focuses on innovative pavement materials and engineering solutions. Through numerous publications, patents, and awards, they have demonstrated expertise in environmental impact assessment, dynamic performance modeling, and pavement material innovation. Additionally, their involvement in academic organizations and editorial boards underscores their commitment to advancing the field of transportation engineering on a global scale.

🎓Education:

Chang’an University (2008.09 – 2012.07) Bachelor’s degree in Road, Bridge, and River Crossing Engineering. Tongji University (2012.09 – 2018.12) PhD in Road and Railway Engineering. Supervisor: Ling Jianming. University of Tennessee, USA (2015.11 – 2017.12) Participated in a joint training program for doctoral students sponsored by national high-level universities. Study abroad program. University of Tennessee, USA (2016.08 – 2019.12) PhD in Civil Engineering. Supervisor: Huang Baoshan.

🔬Research Experience:

Host topics/projects:

National Natural Science Foundation of China – Research on strength formation mechanism of polyurethane mixtures. National Ministry of Science and Technology – Technical research on porous pavement noise reduction materials. National Natural Science Foundation of China – Development and performance evaluation of polyurethane concrete stress absorption layer. Beijing Municipal Education Commission – Multi-scale experimental research on the interaction mechanism of polyurethane and mineral materials. Jiangsu Ecological Road Technology Industrialization Engineering Research Center – Research on low-carbon durable polyurethane mixture compaction machine. Key Laboratory of Civil Aviation Flight Area Facilities Durability – Research on strength formation rules of polyurethane concrete for rapid repair of airport pavements. 7-12. Various projects from Beijing University of Civil Engineering and Architecture and Ministry of Transport.

Participate in topics/projects:

National Ministry of Science and Technology – Life evolution mechanism and behavior theory of pavement structure and function. 2-3. Various projects from the National Ministry of Science and Technology. 4-12. Various projects from National Natural Science Foundation of China, U.S. Federal Highway Administration, Highway Science Institute of the Ministry of Transport, Beijing Municipal Transportation Commission, and Shanxi Provincial Department of Transportation.

🌟EI论文 (5篇):

Han, B., Ling, J., & Zhao, H. (2018). Environmental Impacts of Different Maintenance and Rehabilitation Strategies for Asphalt Pavement. Presented at the 2nd Transportation Research Congress, Beijing, China. Han, B., Du, Z., Ling, J., & Zhao, H. (2021). Modeling the Dynamic Performance of Transportation Infrastructure Using Panel Data Model in State-space Specifications. Journal of Traffic and Transportation Engineering (English Edition), 10(3), 441-453. Han, B., et al. (2021). New innovations in pavement materials and engineering: A review on pavement engineering research 2021. Journal of Traffic and Transportation Engineering (English Edition), 8(6), 815-999. Ji, J., Changwei, H., Tong, M., Xinqiang, X., Jian, Z., & Han, B. (2023). Evaluation of the effect of compatibilizer on improving the compatibility of direct coal liquefaction residue and petroleum asphalt. Journal of Chinese Highways, 36(6), 1-13. Ji, J., Ben, L., Han, B., Zhi, S., Jiani, W., & Haichen, Y. (2023). Review of soil solidification technology in Chinese road engineering. Journal of Transportation Engineering, 23(2), 47-66.

📚Publish monograph:

  • Ji, J., Zhe, W., Han, B., & Wei, J. (2021). Development and application of asphalt materials modified by direct coal liquefaction residue. People’s Communications Press.

📝Patents:

  • Han, B. et al. Various patents related to positioning devices, chiseling concrete, and asphalt mixtures preparation methods.

👩‍🔬Social work:

  • Editorial board member of multiple journals.
  • Member of academic committees.
  • SCI journal reviewer and reviewers for other journals.
  • Member of various transportation-related organizations.
  • Former Director of Science and Technology Department, Chinese Students and Scholars Association, University of Tennessee.

Academic exchange/conference papers:

  • Participated in and presented keynote reports at international conferences.
  • Presented research papers at various conferences.

🏆Awards:

Received scholarships and awards for outstanding academic achievements. Overall, the individual has made significant contributions to research in transportation infrastructure, particularly in the field of pavement materials and engineering, and has received recognition for their work through publications, patents, and awards.

📚Top Noted Publication

  1. New innovations in pavement materials and engineering: A review on pavement engineering research 2021
    • Authors: JE Office, J Chen, H Dan, Y Ding, Y Gao, M Guo, S Guo, B Han, B Hong, …
    • Journal: Journal of Traffic and Transportation Engineering (English Edition)
    • Volume: 8
    • Issue: 6
    • Pages: 108
    • Year: 2021

 

  1. Rheological and aging characteristics of the recycled asphalt binders with different rejuvenator incorporation methods
    • Authors: Y Ma, W Hu, PA Polaczyk, B Han, R Xiao, M Zhang, B Huang
    • Journal: Journal of Cleaner Production
    • Volume: 262
    • Pages: 121249
    • Year: 2020

 

  1. Direct shear properties of railway ballast mixed with tire derived aggregates: Experimental and numerical investigations
    • Authors: H Gong, W Song, B Huang, X Shu, B Han, H Wu, J Zou
    • Journal: Construction and Building Materials
    • Volume: 200
    • Pages: 465-473
    • Year: 2019

 

  1. Laboratory investigation of particle size effects on the shear behavior of aggregate-geogrid interface
    • Authors: B Han, J Ling, X Shu, H Gong, B Huang
    • Journal: Construction and Building Materials
    • Volume: 158
    • Pages: 1015-1025
    • Year: 2018

 

  1. Experimental investigation of utilizing waste flue gas desulfurized gypsum as backfill materials
    • Authors: Y Ma, Q Nie, R Xiao, W Hu, B Han, PA Polaczyk, B Huang
    • Journal: Construction and Building Materials
    • Volume: 245
    • Pages: 118393
    • Year: 2020

 

  1. Analysis of airfield composite pavement responses using full-scale accelerated pavement testing and finite element method
    • Authors: J Ling, F Wei, H Zhao, Y Tian, B Han
    • Journal: Construction and Building Materials
    • Volume: 212
    • Pages: 596-606
    • Year: 2019

 

  1. Quantifying the effects of geogrid reinforcement in unbound granular base
    • Authors: B Han, J Ling, X Shu, W Song, RL Boudreau, W Hu, B Huang
    • Journal: Geotextiles and Geomembranes
    • Volume: 47
    • Issue: 3
    • Pages: 369-376
    • Year: 2019

 

  1. Evaluation of the hot mix asphalt compactability utilizing the impact compaction method
    • Authors: P Polaczyk, B Han, B Huang, X Jia, X Shu
    • Journal: Construction and Building Materials
    • Volume: 187
    • Pages: 131-137
    • Year: 2018

 

  1. Continuous compaction control technology for granite residual subgrade compaction
    • Authors: J Ling, S Lin, J Qian, J Zhang, B Han, M Liu
    • Journal: Journal of Materials in Civil Engineering
    • Volume: 30
    • Issue: 12
    • Pages: 04018316
    • Year: 2018

 

  1. Improved estimation of dynamic modulus for hot mix asphalt using deep learning
    • Authors: H Gong, Y Sun, Y Dong, B Han, P Polaczyk, W Hu, B Huang
    • Journal: Construction and Building Materials
    • Volume: 263
    • Pages: 119912
    • Year: 2020