Chelsey Jansen | Climate Change Data Analysis | Young Scientist Award

Young Scientist Award

Chelsey Jansen
Researcher Chelsey Jansen
Affiliation University of Cape Town
Country South Africa
Scopus ID JBWyqo0AAAAJ&hl
Documents 2
Subject Area Climate Change Data Analysis
Event Research Data Analysis Awards

Chelsey Jansen
University of Cape Town

Chelsey Jansen is affiliated with the South Africa, and has contributed to the field of Her scholarly activities emphasize evidence-based environmental research, data interpretation, and analytical approaches that support sustainable decision-making. Her developing publication profile demonstrates early-career research engagement and aligns with the objectives of the Young Scientist Award, recognizing promising researchers with emerging academic contributions.[1]

Abstract

Chelsey Jansen’s research focuses on climate change data analysis through systematic evaluation of environmental datasets and quantitative interpretation of scientific evidence. Her publications reflect an early-stage commitment to advancing climate-related research while promoting reproducible analytical methods that contribute to environmental sustainability and informed policy development.[2]

Keywords

Climate Change, Environmental Analytics, Data Analysis, Sustainability, Scientific Research, Statistical Modelling, Young Scientist, Research Data Analysis.

Introduction

Climate change research increasingly relies on robust analytical techniques for interpreting environmental observations and supporting evidence-based conclusions. Early-career researchers contribute significantly by developing innovative analytical perspectives and improving understanding of climate systems through data-driven investigation.[3]

Research Profile

Chelsey Jansen is associated with the University of Cape Town and has established an emerging research profile in climate change data analysis. Her documented scholarly output illustrates active participation in academic research and an interest in environmental data interpretation using quantitative methodologies.[1]

Research Contributions

Research activities contribute to understanding environmental datasets through structured analysis and careful interpretation. These efforts support reliable scientific conclusions and improved assessment of climate-related trends.The research applies statistical and analytical methods for evaluating climate observations. Quantitative approaches strengthen data reliability and encourage transparent scientific reporting.

Publications

The available academic profile records two scholarly publications relevant to climate change data analysis. These publications demonstrate early research productivity and provide a foundation for continued scientific development within environmental analytics.

Research Impact

Although the publication portfolio is currently limited in size, the research reflects meaningful engagement with climate-related scientific questions. Continued scholarly activity and collaboration have the potential to enhance future research visibility and academic influence.[5]

Award Suitability

The Young Scientist Award recognizes promising researchers demonstrating originality, academic potential, and commitment to scientific advancement. Chelsey Jansen’s developing research profile, institutional affiliation, and focus on climate change data analysis align with the objectives of recognizing emerging scientific excellence.[6]

Conclusion

Chelsey Jansen represents an emerging researcher contributing to climate change data analysis through quantitative investigation and environmental research. Her academic profile demonstrates promising scientific potential and provides a solid basis for future contributions within interdisciplinary climate research.

External Links

References

  1. Google Scholar. (n.d.). Chelsey Jansen Scholar Profile.
    https://scholar.google.com/citations?user=JBWyqo0AAAAJ&hl=en&oi=ao
  2. IPCC. (2023). Climate Change Assessment Report.
  3. Jansen, C. L., Abiodun, B. J., Makinde, A. I., & Omar, S. A. (2026). Cut-off low–induced extreme rainfall in the Western Cape, South Africa: The roles of the Agulhas and Benguela current systems. Atmospheric Research. Advance online publication. Article 109220.
    https://www.sciencedirect.com/science/article/pii/S0169809526004849
  4. Jansen, C. L. (2026). Simulating the influence of the Agulhas and Benguela current systems on cut-off lows and associated rainfall over the Western Cape, South Africa, using MPAS-A (Master’s thesis/Doctoral dissertation).

Rajab Abousnina | Solution for Environmental Challenges | Excellence in Research

Dr. Rajab Abousnina | Solution for Environmental Challenges | Excellence in Research

Dr. Rajab Abousnina at University at Curtin University, Australia

 Professional Profile👨‍🎓

Early Academic Pursuits 📚

Dr. Rajab Abousnina began his academic journey in engineering with a strong focus on materials science. His foundational education emphasized sustainable practices, particularly in civil engineering and environmental solutions. This early focus laid the groundwork for his future endeavors in innovative construction techniques and waste material utilization.

Professional Endeavors 🛠️

Currently serving as a Postdoctoral Research Fellow at Curtin University in Australia, Dr. Abousnina leads groundbreaking research on sustainable geopolymer concrete. His previous role at Macquarie University involved heading a project on structural health monitoring systems for concrete pavements, showcasing his blend of academic knowledge and practical engineering skills.

Contributions and Research Focus 🌍

Dr. Abousnina’s research primarily targets several critical areas: the development of sustainable geopolymer concrete using alternative activators, advancements in 3D concrete printing, structural health monitoring with embedded sensing systems, and innovative wastewater treatment technologies. His work aims to reduce carbon emissions and promote eco-friendly construction practices.

Impact and Influence 💡

Through his impactful research and global collaborations, Dr. Abousnina significantly influences sustainable engineering practices. His findings not only advance academic discourse but also offer practical solutions that shape industry standards, addressing pressing environmental challenges in construction and materials science.

Academic Cites 📑

With over 12 Q1 journal articles and numerous conference papers, Dr. Abousnina has established a robust publication record. His research is frequently cited, reflecting its relevance and importance within the scientific community. This extensive bibliographic contribution demonstrates his commitment to advancing knowledge in the field.

Technical Skills ⚙️

Dr. Abousnina possesses a diverse range of technical skills, including expertise in developing geopolymer concrete and composite materials, proficiency in structural health monitoring technologies, and knowledge of advanced wastewater treatment processes. These competencies position him as a leader in sustainable engineering solutions.

Teaching Experience 🎓

As an educator, Dr. Abousnina plays a vital role in shaping future engineers. He teaches various civil engineering courses such as Transport Engineering and Structural Design, while also supervising MSc and PhD students in their research projects. His dedication to teaching fosters a new generation of professionals equipped with sustainable engineering practices.

Legacy and Future Contributions 🌱

Looking ahead, Dr. Abousnina is committed to continuing his innovative work in sustainable engineering. He aims to further develop new materials and construction methods that minimize environmental impact. His ongoing collaborations with industry partners will likely lead to practical applications of his research, ensuring a lasting legacy in civil and environmental engineering.

 Top Noted Publications 📖

Optimal design for epoxy polymer concrete based on mechanical properties and durability aspects

Authors: W Ferdous, A Manalo, HS Wong, R Abousnina, OS AlAjarmeh, Y Zhuge
Journal: Construction and Building Materials
Year: 2020

 Effects of light crude oil contamination on the physical and mechanical properties of fine sand

Authors: RM Abousnina, A Manalo, J Shiau, W Lokuge
Journal: Soil and Sediment Contamination: An International Journal
Year: 2015

Effect of using metakaolin as supplementary cementitious material and recycled CRT funnel glass as fine aggregate on the durability of green self-compacting concrete

Authors: Y Ouldkhaoua, B Benabed, R Abousnina, EH Kadri, J Khatib
Journal: Construction and Building Materials
Year: 2020

Experimental investigation on effects of calcined bentonite on fresh, strength and durability properties of sustainable self-compacting concrete

Authors: ZEA Laidani, B Benabed, R Abousnina, MK Gueddouda, EH Kadri
Journal: Construction and Building Materials
Year: 2020

Characteristics, strength development and microstructure of cement mortar containing oil-contaminated sand

Authors: R Abousnina, A Manalo, W Ferdous, W Lokuge, B Benabed, KS Al-Jabri
Journal: Construction and Building Materials
Year: 2020