Minghao Lu | Soil Physics | Research Excellence Award

Mr. Minghao Lu | Soil Physics | Research Excellence Award

Western Sydney University | Australia

Mr. Minghao Lu’s research profile demonstrates a strong focus on geotechnical engineering, particularly in soil–structure interaction, expansive soil stabilization, and geo-mechanical behavior under varying environmental conditions. His work emphasizes innovative approaches such as alkali-activated stabilization techniques and the application of engineered inclusions to improve structural performance in integral bridge systems. His contributions span experimental investigations, analytical modeling, and practical laboratory testing methods, reflecting a balance between theoretical insight and applied engineering solutions. His research outputs include peer-reviewed journal articles and conference proceedings addressing thermal effects, cyclic loading, and environmental impacts such as bushfire conditions on soil behavior. His scholarly impact is reflected through an h-index of 3, with 5 documents published and 32 citations across 30 citing documents, indicating growing recognition within the academic and engineering community. Overall, Mr. Minghao Lu’s research advances sustainable and resilient geotechnical practices relevant to infrastructure development and long-term soil performance.

Citation Metrics (Scopus)

40
30
20
10
0

Citations
32

Documents
5

h-index
3

Citations

Documents

h-index

View Scopus Profile


Effect of moisture content on alkali-activated stabilisation of expansive soils

– Case Studies in Construction Materials

Aida Mehrpajouh | Soil Physics | Best Researcher Award

Dr. Aida | Soil Physics | Best Researcher Award

Dr. Aida Mehrpajouh | HTW University of Applied Sciences Dresden | Germany

Dr. Aida Mehrpajouh’s research portfolio exemplifies a strong and evolving commitment to scientific excellence, marked by consistent productivity, academic integrity, and interdisciplinary relevance. She has contributed 5 well-recognized research documents, each representing a meaningful advancement in her area of expertise and showcasing her analytical depth and experimental precision. These publications collectively demonstrate her capacity to identify emerging research gaps and provide innovative solutions that bridge theoretical knowledge with applied outcomes. Her work has earned 108 citations drawn from 91 citing documents, a clear reflection of the recognition her studies have received from peers across related disciplines. This citation record highlights her ability to produce work that not only informs but also inspires subsequent investigations, contributing to the expansion of knowledge in her domain. With an h-index of 4, Dr. Mehrpajouh maintains a solid scholarly impact, where multiple papers continue to attract attention and engagement within the global research community. Her academic endeavors emphasize both innovation and reliability, often intersecting with environmental, technological, or societal aspects that underline the practical value of her findings. Collectively, her research achievements portray a profile of intellectual rigor, sustained academic contribution, and growing influence that continues to enrich and advance her field of study.

Profile:  Scopus 

Featured Publications

Ghasemzadeh, H., Mehrpajouh, A., & Pishvaei, M. (2022). Compressive strength of acrylic polymer-stabilized kaolinite clay modified with different additives. ACS Omega.