Javier Mora | Sustainable Engineering | Innovative Research Award

Innovative Research Award

Javier Mora
Researcher Javier Mora
Affiliation CIMNE
Country Spain
Scopus ID 57217538461
Documents 19
Citations 419
h-index 9
Subject Area Sustainable Engineering
Event Superior Engineering Research Awards
ORCID 0000-0001-7142-2559

Javier Mora

Institution: CIMNE, Spain

The Javier Mora of CIMNE has established a research profile in sustainable engineering through peer-reviewed publications, interdisciplinary collaboration, and contributions to engineering methodologies addressing contemporary scientific and industrial challenges. Bibliometric indicators recorded through Scopus demonstrate a consistent publication record and citation impact that reflects the visibility of the research within the international engineering community.[1]

Abstract

Javier Mora has contributed to sustainable engineering through research integrating computational methods, engineering analysis, and practical applications relevant to modern infrastructure and environmental performance. The available bibliometric evidence indicates a developing yet influential research portfolio characterized by 19 indexed publications, 419 citations, and an h-index of 9. These indicators suggest consistent scholarly engagement and recognition within the engineering research community.[1]

Keywords

  • Innovative Research Award
  • Javier Mora
  • Sustainable Engineering
  • CIMNE
  • Engineering Innovation
  • Scientific Publications
  • Scopus Metrics

Introduction

Recognition through research awards commonly considers originality, scientific rigor, publication quality, collaboration, and measurable research influence. Sustainable engineering continues to evolve through multidisciplinary approaches that combine computational modelling, environmental responsibility, and engineering optimization. Researchers contributing to these areas support technological progress while addressing practical engineering challenges across academic and industrial environments.[2]

Research Profile

Javier Mora is affiliated with the International Center for Numerical Methods in Engineering (CIMNE), Spain. His research activity reflects sustained involvement in engineering investigations related to sustainable technologies, numerical methods, and applied engineering science. The available Scopus metrics indicate international visibility supported by citations across peer-reviewed scientific literature.[1]

Research Contributions

  • Development of engineering methodologies supporting sustainable design principles.
  • Application of computational and numerical approaches for engineering analysis.
  • Publication of peer-reviewed research contributing to scientific knowledge.
  • Collaboration with multidisciplinary engineering researchers.
  • Support for innovation through evidence-based engineering investigations.[3]

Publications

The documented publication record includes nineteen indexed scholarly documents covering sustainable engineering and related engineering disciplines. The publications collectively demonstrate methodological consistency, interdisciplinary collaboration, and dissemination through internationally recognized scientific journals and conference proceedings.[1]

Research Impact

Citation-based indicators provide one perspective for evaluating scholarly influence. According to the available Scopus profile, Javier Mora has accumulated 419 citations with an h-index of 9, indicating that multiple publications have received sustained recognition by other researchers. Such bibliometric indicators suggest continued academic relevance while complementing qualitative assessments of research originality and scientific contribution.[1]

Award Suitability

Based on publicly available scholarly metrics, institutional affiliation, publication activity, and demonstrated research influence, Javier Mora presents characteristics generally associated with candidates considered for engineering research recognition. Evaluation for the Superior Engineering Research Awards would appropriately include scientific quality, innovation, citation impact, interdisciplinary collaboration, and broader contributions to sustainable engineering.[1][4]

Conclusion

The available scholarly evidence portrays Javier Mora as an active engineering researcher whose work contributes to sustainable engineering through scientific publications and measurable research influence. The combination of publication output, citation performance, institutional affiliation, and ongoing research activity aligns with the objectives of recognizing innovation, scientific excellence, and engineering advancement through academic awards.[1]

References

  1. Elsevier. (n.d.). Scopus author details: Javier Mora, Author ID 57217538461. Scopus.https://www.scopus.com/authid/detail.uri?authorId=57217538461
  2. United Nations. (2015). Transforming our world: The 2030 Agenda for Sustainable Development.https://sdgs.un.org/2030agenda
  3. Crossref. (n.d.). Digital Object Identifier (DOI) reference.https://doi.org/10.1016/j.compstruc.2018.02.001
  4. Superior Engineering. (n.d.). Superior Engineering Research Awards.https://superiorengineering.org/

Dr. Goutam Khankari | Sustainable Engineering | Best Researcher Award

Dr. Goutam Khankari | Sustainable Engineering | Best Researcher Award

Dr. Goutam Khankari | Damodar Valley Corporation | India

Dr. Goutam Khankari is a distinguished researcher and engineer specializing in thermal power systems. His PhD research, titled “Thermodynamic Analysis and Performance Improvement of Coal-Fired Thermal Power Plants,” focused on a comprehensive 4-E approach—Energy, Exergy, Environment, and Economic analysis—of various coal-fired steam power plants using high-ash Indian coals. The primary objective of his work was to enhance the overall efficiency and net power output of these plants by exploiting low-grade waste energy through the Kalina Cycle System, integrating solar energy, and optimizing operational conditions. Dr. Khankari’s research not only provides critical insights into energy and exergy efficiencies but also emphasizes sustainable practices and environmental considerations in coal-based power generation. His work has been widely recognized, reflected in 97 citations across 88 documents and an h-index of 5, demonstrating significant academic influence. Through his innovative approaches to performance improvement and waste energy utilization, Dr. Khankari has contributed meaningfully to the field of thermal engineering, offering practical solutions for maximizing energy output while minimizing environmental impact in India’s coal-fired power sector.

Profile: Scopus | Google Scholar

Featured  Publications

Khankari, G., & Karmakar, S. (2016). Power generation from coal mill rejection using Kalina cycle. Journal of Energy Resources Technology, 138(5), 052004.

Khankari, G., Munda, J., & Karmakar, S. (2016). Power generation from condenser waste heat in coal-fired thermal power plant using Kalina cycle. Energy Procedia, 90, 613–624.

Khankari, G., & Karmakar, S. (2018). Power generation from fluegas waste heat in a 500 MWe subcritical coal-fired thermal power plant using solar assisted Kalina Cycle System 11. Applied Thermal Engineering, 138, 235–245.

Khankari, G., & Karmakar, S. (2021). A novel solar assisted Kalina cycle system for waste heat utilization in thermal power plants. International Journal of Energy Research, 45(12), 17146–17158.

Roge, N. H., Khankari, G., & Karmakar, S. (2022). Waste heat recovery from fly ash of 210 MW coal fired power plant using organic rankine cycle. Journal of Energy Resources Technology, 144(8), 082107.

Khankari, G., & Karmakar, S. (2014). Operational optimization of turbo-generator (TG) cycle of a 500MW coal-fired thermal power plant. In 2014 6th IEEE Power India International Conference (PIICON) (pp. 1–6).

Khankari, G., Karmakar, S., Pramanick, A., & Biswas, M. (2013). Thermodynamic analysis of a 500MW coal-fired Indian power plant. In ESMOC Conference, NIT Durgapur, India.