Jingzhu Wang | Hydrodynamics | Best Researcher Award

Jingzhu Wang | Hydrodynamics | Best Researcher Award

Prof. Jingzhu Wang, Institute of Mechanics, Chinese Academy of Sciences, China.

Publication profile

Scopus

Education and Experience

    • 2017.05โ€“2019.12: Assistant Researcher, Institute of Mechanics, Chinese Academy of Sciencesย ๐ŸŽ“๐Ÿ”ฌ
    • 2019.12โ€“Present: Associate Researcher, Institute of Mechanics, Chinese Academy of Sciencesย ๐Ÿ”ฌ
    • 2008.09โ€“2012.07: Bachelor, Dalian Maritime University, Chinaย ๐ŸŽ“
    • 2013.04โ€“2015.03: Master’s Degree, Kobe University, Japanย ๐Ÿ‡ฏ๐Ÿ‡ต๐ŸŽ“
    • 2015.04โ€“2017.03: Ph.D., Kobe University, Japanย ๐Ÿ‡ฏ๐Ÿ‡ต๐ŸŽ“

Suitability For The Award

Prof. Jingzhu Wang is an outstanding candidate for the Best Researcher Award due to his pioneering work in interfacial hydrodynamics, particularly in cavitation bubble collapse and free surface stability. His leadership in major national research initiatives, impactful publications, and recognition from prestigious organizations highlight his significant contributions to fluid dynamics. Prof. Wangโ€™s research has advanced high-speed interfacial equipment design, making him a leader in the field.

Professional Developmentย 

Publications Top Notes

  • Physics-enhanced data-driven turbulence model for flow around submerged bodies, Ocean Engineering, 2025, 119779ย ๐Ÿ“Š๐ŸŒŠ
  • Crown control in a pair of cavitation bubbles close to a free surface: A numerical study, Physics of Fluids, 2024, 107127ย ๐Ÿ’ฅ๐ŸŒŠ
  • Modeling two-phase flows with complicated interface evolution using parallel physics-informed neural networks, Physics of Fluids, 2024, 093330ย ๐Ÿ’ก๐Ÿ’ป
  • Cavitation caused by an elastic membrane deforming under the jetting of a spark-induced bubble, Physical Review Fluids, 2024, 093604ย ๐Ÿ’ฅ๐Ÿ’ง
  • Numerical analysis of ice-breaking effects induced by two interacting bubbles using the coupled boundary element method and peridynamics model, Physics of Fluids, 2024, 097110ย โ„๏ธ๐Ÿ’ฅ
  • A reduction-consistent phase field model for non-isothermal multiphase flows of N immiscible incompressible fluids, International Journal of Heat and Mass Transfer, 2024, 125657ย ๐Ÿ”ฅ๐Ÿ’ง
  • Jetting of a near-wall cavitation bubble induced by another tandem bubble, Journal of Hydrodynamics, 2024, 444โ€“456ย ๐Ÿ’ฅ๐ŸŒŠ
  • Dynamics of tandem bubble interaction near tissue, Physics of Fluids, 2024, 053324ย ๐Ÿ’ฅ๐Ÿงฌ
  • Wall vortex induced by the collapse of a near-wall cavitation bubble: Influence of the water surface, Physical Review Fluids, 2024, 053602ย ๐Ÿ’จ๐ŸŒŠ

Berna Aksoy | Hydraulics | Best Researcher Award

Berna Aksoy | Hydraulics | Best Researcher Award

Dr. Berna Aksoy, Zonguldak Bรผlent Ecevit University, Turkey.

Publication profile

Googlescholar
Orcid

Education and Experience

  • Atatรผrk Anadolu High Schoolย โ€“ 2003ย ๐ŸŽ“
  • Mehmet ร‡elikeL High Schoolย โ€“ 1996ย ๐ŸŽ“
  • Bรผlent Ecevit Universityย โ€“ BSc in Civil Engineering (1998-2004)ย ๐Ÿซ
  • Bรผlent Ecevit Universityย โ€“ MSc in Civil Engineering (2003-2007)ย ๐Ÿซ
  • Bรผlent Ecevit Universityย โ€“ Ph.D. in Civil Engineering (2012-2018)ย ๐Ÿซ
  • Zonguldak Bรผlent Ecevit Universityย โ€“ Faculty Member, Hydraulics Specialist (Current)ย ๐Ÿข

Suitability For The Award

Dr. Berna Aksoy is a highly qualified candidate for theย Best Researcher Awardย based on her extensive academic background, significant contributions to research inย hydrology, water resources, and coastal sciences, and her active involvement in impactful studies.

Professional Developmentย 

Awards and Honors

  • International Publication on Coastal Erosionย โ€“ Journal of Coastal Conservation (2014)ย ๐ŸŒ๐Ÿ“œ
  • Principal Component Analysis on Hydrological Dataย โ€“ Fresenius Environmental Bulletin (2009)ย ๐Ÿ…
  • Research Contributions on Water Quality by Artificial Neural Networkย โ€“ Tรผrkiye Su Bilimi ve Yรถnetimi Dergisi (2023)ย ๐Ÿ†
  • Hydraulic Risk Analysis and Flooding Area Studiesย โ€“ International Black Sea Coastline Countries Symposiumย ๐Ÿ†

Publications

  • Temporal analysis of coastal erosion in Turkey: a case study Karasu coastal regionย (Journal of Coastal Conservation, 2014)ย ๐ŸŒŠ๐Ÿ“š
  • Afet ve acil durumlarฤฑnda su ihtiyacฤฑnฤฑn belirlenmesi ve yรถnetimiย (Natural Hazards and Disaster Management, 2018)ย ๐Ÿ’ง๐Ÿšจ
  • Mevsimsel deฤŸiลŸikliฤŸin Filyos ร‡ayฤฑ su kalitesine etkisinin yapay sinir aฤŸฤฑ ile belirlenmesiย (Fen Bilimleri Enstitรผsรผ, 2018)ย ๐Ÿง ๐Ÿ’ง
  • Principal component analysis of the annual precipitation of West Black Sea hydrological basin in Turkeyย (Fresenius Environmental Bulletin, 2009)ย ๐ŸŒง๏ธ๐ŸŒ
  • Filyos Nehriโ€™ndeki Askฤฑda Katฤฑ Madde Miktarฤฑnฤฑn Yapay Sinir AฤŸlarฤฑ ฤฐle Belirlenmesiย (SETSCI-Conference Proceedings, 2019)ย ๐Ÿ’ป๐ŸŒŠ
  • Effect of Bed Material on Roughness and Hydraulic Potential in Filyos Riverย (Water, 2024)ย ๐ŸŒŠ๐Ÿ”ฌ

 

Mangala Kandagal | Fluid Mechanics | Best Researcher Award

Dr. Mangala Kandagal | Fluid Mechanics | Best Researcher Award

Dr. Mangala D. Kandagal, Sharnbasva University Kalaburagi, India

Dr. Mangala D. Kandagal is an Assistant Professor in the Mathematics Department at Sharnbasva University, Kalaburagi. With a background in Fluid Mechanics, she combines academic rigor with significant research contributions, particularly in fluid dynamics and heat transfer phenomena.

 

Profile

ORCID Profile

Suitability For The Award:

Dr. Mangala Kandagal is an accomplished researcher and academician with a strong background in fluid dynamics, heat transfer, and applied mathematics. Her extensive experience in teaching, research, and academic contributions make her a suitable candidate for the Best Researcher Award.

Education:

Dr. Kandagal holds an M.Sc., B.Ed., and Ph.D. from Sharnbasva University, Kalaburagi. Her academic journey includes a Bachelor’s degree from Gulbarga University and a Master’s degree from Sharanbasveshwar Science College, where she achieved First Class distinctions throughout her education.

Research Focus:

Her research centers on Fluid Mechanics, with a particular focus on the effects of natural convection and magneto-hydrodynamic flows in vertical channels. Her studies delve into heat generation, absorption, and multifluid flow characteristics.

Professional Journey:

Dr. Kandagal’s teaching career began at Sharnbasveshwar Science College, where she taught B.Sc. and M.Sc. courses from 2014 to 2017. She has been with Sharnbasva University, Kalaburagi, since 2017, where she continues to educate and inspire students in advanced mathematical concepts.

Honors & Awards:

She has been recognized with the โ€œYoung Researcher Awardโ€ at an international level for her contributions to digital education, awarded by the Shri Paramhans Education and Research Foundation Trust.

Publications Noted & Contributions:

Dr. Kandagalโ€™s notable publications include studies on multifluid flow, heat generation, and magneto-hydrodynamic effects, featured in high-impact journals like the Journal of Heat Transfer Wiley and Case Studies in Thermal Engineering. Her research significantly contributes to understanding complex fluid dynamics and heat transfer mechanisms.

Research Timeline:

Her research trajectory includes her Ph.D. thesis on natural convection in magneto-hydrodynamic flows, with ongoing and recent contributions to the field, including a 2023 international conference paper on MHD models.

Collaborations and Projects:

Dr. Kandagal collaborates with researchers like Shreedevi Kalyan and Ramesh Kempepatil on various projects focusing on fluid dynamics and heat transfer. Her work includes joint research on multifluid flows and MHD models in vertical channels.

Conclusion:

Dr. Mangala Kandagal’s extensive teaching experience, significant research contributions, published works in reputable journals, and recognition through awards make her an outstanding candidate for the Best Researcher Award. Her research not only advances the understanding of complex fluid dynamics but also contributes to the academic community through education and leadership. Her achievements demonstrate a strong alignment with the qualities sought in a recipient of this prestigious award.

Assoc Prof Dr. Can Huang| Computational Fluid Dynamics Award | Most Cited Paper Award | 9196

Assoc Prof Dr. Can Huang| Computational Fluid Dynamics Award | Most Cited Paper Award

Assoc Prof Dr. Can Huang , North China University of Technology , China

Can Huang is a distinguished fluid dynamics researcher specializing in Smoothed Particle Hydrodynamics (SPH) and its applications in multi-phase flow, wave energy, and marine gas hydrate studies. With a robust academic background, including a Ph.D. in Fluid Mechanics from Beijing Institute of Technology and post-doctoral experience at Peking University and Zhejiang University, Can has made significant contributions to computational fluid dynamics (CFD) simulation techniques. His research focuses on developing high-precision SPH methods for modeling complex transport processes in hydrate-bearing sediments and methane hydrate dissociation. As an Associate Professor at North China University of Technology and a Visiting Professor at Polytechnique University, Can continues to advance the field of fluid dynamics, particularly in marine and environmental applications. His innovative work in SPH and hybrid methods underscores his dedication to pushing the boundaries of simulation and modeling in fluid dynamics, emphasizing practical implications for industries such as marine engineering and energy. ๐ŸŒŠ

Professional Profile:

Scopus

Google Scholar

Orcid

Education and Academic Journey ๐ŸŽ“

Dr. Huang earned his Bachelor’s degree in Thermal Energy and Power Engineering from the Agricultural University of Hebei in 2009. He pursued his passion for fluid mechanics further by completing a PhD in Fluid Mechanics at the Beijing Institute of Technology University, focusing on SPH, CFD simulation, and heat transfer algorithms.

Professional Experience ๐Ÿ’ผ

Dr. Huang’s academic career spans prestigious institutions where he has made significant contributions to fluid dynamics research. As an Associate Professor at North China University of Technology, he delved into SPH, hybrid methods, and marine gas hydrate studies. He continued this pursuit during his time as a Lecturer and later as a Visiting Professor at Polytechnique University, honing his expertise in ice mechanics, multi-phase flow, and CFD simulation.

Research and Projects ๐Ÿ”ฌ

Dr. Huang has led and contributed to several key research projects, including the development of high-precision SPH methods for hydrate-bearing sediments and methane hydrate dissociation modeling. His work on GPU-accelerated meshless particle methods has advanced computational fluid dynamics capabilities.

Key Focus Areas ๐ŸŒ

  • Smoothed Particle Hydrodynamics
  • Multi-phase Flow Modeling
  • Fluid-Structure Interactions
  • Wave Energy and Ocean Engineering
  • Marine Gas Hydrate Dynamics
  • Hybrid Computational Methods

Publication Top Notes :

A data-driven design for fault detection of wind turbines using random forests and XGboost

Citation -514

Present situation and future prospect of renewable energy in China

Citation -495

Smoothed particle hydrodynamics (SPH) for complex fluid flows: Recent developments in methodology and applications

Citation -319

A finite particle method with particle shifting technique for modeling particulate flows with thermal convection

Citation -79

A kernel gradient free (KGF) SPH method

Citation -70