Tiantian Ma | Geomaterials | Best Researcher Award

Tiantian Ma | Geomaterials | Best Researcher Award

Dr. Tiantian Ma, Institute of rock and soil mechanics, Chinese Academy of Sciences, China.

Dr. Tiantian Ma is a distinguished researcher in Geotechnical Engineering at the Institute of Rock and Soil Mechanics, Chinese Academy of Sciences. With a Ph.D. from the University of Chinese Academy of Sciences (2013) and a B.Eng. in Civil Engineering from Shandong University (2008), she specializes in chemo-mechanical coupling in multiphasic geomaterials. Her research has led to multiple high-impact publications in Géotechnique, Acta Geotechnica, and the Journal of Geotechnical and Geoenvironmental Engineering. Passionate about soil behavior, swelling pressure, and unsaturated soil mechanics, she actively contributes to advancing geotechnical sciences. 📖🔬

Publication Profiles

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Education & Experience 🎓💼

✔ Ph.D. in Geotechnical Engineering (2013) 📖 – University of Chinese Academy of Sciences
✔ B.Eng. in Civil Engineering (2008) 🏗️ – Shandong University
✔ Researcher at the Institute of Rock and Soil Mechanics 🏢 – Chinese Academy of Sciences

Summary Suitability

Dr. Tiantian Ma, a distinguished researcher at the Institute of Rock and Soil Mechanics, Chinese Academy of Sciences, has made significant contributions to the field of geotechnical engineering and multiphasic geomaterials. Her groundbreaking work on chemo-mechanical coupling in unsaturated and expansive soils has advanced our understanding of soil behavior under complex environmental conditions. With a Ph.D. from the University of Chinese Academy of Sciences (2013) and a B.Eng. from Shandong University (2008), Dr. Ma has published extensively in top-tier journals such as Géotechnique, Journal of Geotechnical and Geoenvironmental Engineering, and Acta Geotechnica. Her highly cited research has provided fundamental insights into soil hydration, swelling mechanisms, and constitutive modeling of unsaturated soils. Dr. Ma’s exceptional contributions to geotechnical engineering make her a highly deserving recipient of the Best Researcher Award.

Professional Development  📚🔍

Dr. Tiantian Ma’s research integrates mechanics, chemistry, and environmental factors to study complex soil behaviors under different conditions. His work on chemo-mechanical coupling, soil shrinkage, and expansive clay behavior has been widely recognized in academic circles. Through high-impact journal publications and collaborations, he contributes significantly to understanding the microstructural evolution of soils. He has developed constitutive models to predict soil behavior, benefiting geotechnical engineering applications such as foundation stability, slope analysis, and soil-fluid interactions. His dedication to the field is reflected in his numerous peer-reviewed publications and ongoing projects in geotechnical science. 🌍🔍

Research Focus

Dr. Tiantian Ma’s research integrates mechanics, chemistry, and environmental factors to study complex soil behaviors under different conditions. Her work on chemo-mechanical coupling, soil shrinkage, and expansive clay behavior has been widely recognized in academic circles. Through high-impact journal publications and collaborations, she contributes significantly to understanding the microstructural evolution of soils. She has developed constitutive models to predict soil behavior, benefiting geotechnical engineering applications such as foundation stability, slope analysis, and soil-fluid interactions. Her dedication to the field is reflected in her numerous peer-reviewed publications and ongoing projects in geotechnical science. 🌍🔍

Publications Top Noted

1️⃣ Microstructural evolution of expansive clay during drying–wetting cycle – Acta Geotechnica (2020) | Cited by: 95 📖🔬
2️⃣ Soil freezing and soil water retention characteristics: connection and solute effects – Journal of Performance of Constructed Facilities (2017) | Cited by: 74 ❄️💧
3️⃣ Hydraulic and mechanical behavior of unsaturated silt: Experimental and theoretical characterization – International Journal of Geomechanics (2016) | Cited by: 33 🌍🏗️
4️⃣ Constitutive model of unsaturated soils considering the effect of intergranular physicochemical forces – Journal of Engineering Mechanics (2016) | Cited by: 30 🏗️📈
5️⃣ Strength theory model of unsaturated soils with suction stress concept – Journal of Applied Mathematics (2013) | Cited by: 26 📊🧪
6️⃣ Analytical model of soil-water characteristics considering the effect of air entrapment – International Journal of Geomechanics (2015) | Cited by: 24 🌫️🔍
7️⃣ Experimental investigation on the influence of thermochemical effect on the pore–water status in expansive soil – International Journal of Geomechanics (2021) | Cited by: 23 🔥🧱

 

 

Rolande Aurelie Tchouateu Kamwa | Geopolymer | Best Researcher Award

Rolande Aurelie Tchouateu Kamwa | Geopolymer | Best Researcher Award

Dr. Rolande Aurelie Tchouateu Kamwa, Université de Douala-Cameroun, Cameroon.

Publication profile

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Education and Experience

Education 🎓

  • 2022: Ph.D. in Inorganic Chemistry, Specializing in Physico-Chemistry of Materials, University of Douala, Cameroon
  • 2018–2019: Master’s in Inorganic Chemistry, University of Douala, Cameroon
  • 2015–2016: Bachelor’s in Chemistry, University of Douala, Cameroon
  • 2012–2013: Baccalaureate in Mathematics, Life, and Earth Sciences, Nkongsamba High School, Cameroon

Experience 💼

  • 2023–Present: Temporary Assistant, Civil Engineering Department, University Institute of Technology, Douala-Cameroon
  • 2020–2022: Temporary Assistant, Chemistry Department, University of Douala, Cameroon
  • 2024–Present: Internship, Sorbonne University, Paris, France
  • 2023: Internship, Sorbonne University, Paris, France
  • 2020–2021: Internship, Civil Engineering Lab (Labogenie), Douala-Cameroon
  • 2019–2020: Internship, Laboratory of Geotechnical Study and Control, Douala-Cameroon

Suitability For The Award

Dr. Rolande Aurelie Tchouateu Kamwa stands as a highly accomplished researcher, making her an ideal candidate for the prestigious Best Researcher Award. Her groundbreaking work in sustainable construction materials and expertise in material characterization techniques, geopolymer technology, and environmental impact assessment underscore her significant contributions to the field. Her research focuses on utilizing local raw materials, such as natural pozzolans, clay soils, and organic waste, to develop low-energy, sustainable building materials.

Professional Development 

Publications Top Notes

  • Stabilization of compressed Earth blocks (CEB) by pozzolana-based phosphate geopolymer binder: Physico-mechanical and microstructural investigations (18 citations, 2022) 🏗️
  • Engineering and structural properties of compressed earth blocks (CEB) stabilized with a calcined clay-based alkali-activated binder (17 citations, 2022) 🌍
  • A comparative study of compressed lateritic earth bricks stabilized with natural pozzolan-based geopolymer binders synthesized in acidic and alkaline conditions (14 citations, 2023) ⚙️
  • Effect of curing temperature on properties of compressed lateritic earth bricks stabilized with natural pozzolan-based geopolymer binders synthesized in acidic and alkaline media (7 citations, 2023) 🔥
  • Stabilization of Compressed Earth Blocks (CEB) by Pozzolana Based Phosphate Geopolymer: Physico-Mechanical, Structural and Microstructural Investigations (3 citations, 2021) 🧱
  • Improvement of the bearing capacity of lateritic gravel by a geopolymer binder: road construction in tropical countries (1 citation, 2024) 🚧