Sayyed Javad Asadpoor | Energy Sustainability | Best Researcher Award

Global Scientist Day Awards

Sayyed Javad Asadpoor is a researcher affiliated with Mashhad Branch-Islamic Azad University, Iran, whose indexed research profile is associated with the subject area of Energy Sustainability. His scholarly record includes seven documents, 25 citations, and an h-index of 3 according to the supplied Scopus author information. This article presents a neutral academic recognition profile in the context of the Global Scientist Day Awards.

Sayyed Javad Asadpoor
Affiliation Mashhad Branch-Islamic Azad University
Country Iran
Scopus ID 57196087982
Documents 7
Citations 25
h-index 3
Subject Area Energy Sustainability
Event Global Scientist Day Awards
ORCID 0000-0002-0977-8674

The profile is intended to provide an organized overview of the researcher’s documented scholarly indicators, research orientation, publication activity, and relevance to an academic recognition framework. Bibliographic indicators should be interpreted within the scope and coverage of the indexing databases from which they are obtained. [1]

Abstract

Sayyed Javad Asadpoor is an Iran-based researcher affiliated with Mashhad Branch-Islamic Azad University and associated with Energy Sustainability. The supplied scholarly profile records seven documents, 25 citations, and an h-index of 3 in Scopus. His research profile is considered within the broader academic context of sustainable energy research, where interdisciplinary investigation supports efficient resource use and long-term environmental objectives.[1]

Keywords

Energy Sustainability; Sustainable Energy Research; Academic Research; Scholarly Publications; Research Impact; Scopus; ORCID; Mashhad Branch-Islamic Azad University; Iran; Global Scientist Day Awards.

Introduction

Energy sustainability is a multidisciplinary research area concerned with the development, management, and responsible utilization of energy resources while considering environmental, economic, and societal dimensions. Academic research in this field frequently intersects with engineering, environmental science, energy systems, and resource management.[2]

Research Profile

Sayyed Javad Asadpoor is affiliated with Mashhad Branch-Islamic Azad University in Iran. The supplied Scopus information identifies the researcher with Author ID 57196087982 and records seven documents, 25 citations, and an h-index of 3. These indicators provide quantitative evidence of indexed scholarly activity, although citation metrics can vary according to database coverage, publication type, citation age, and field-specific practices. [1][3]

Research Contributions

The documented contribution profile is centered on Energy Sustainability, a research domain requiring consideration of energy efficiency, sustainable resource utilization, environmental responsibility, and technological development. Based on the supplied information, Asadpoor’s contribution is best described through the established research area and indexed publication record rather than through unsupported claims about individual discoveries or specific technological outcomes. [2][1]

Publications

The supplied Scopus profile records seven documents for Sayyed Javad Asadpoor. These indexed documents constitute the publication base from which the reported citation count and h-index are derived. Individual publication titles, journal information, publication years, and DOI identifiers have not been supplied in the source data for this article; therefore, no specific publication or DOI is attributed here without verification. [1][3]

Research Impact

The supplied profile reports 25 citations and an h-index of 3. Citation counts represent the number of indexed citations associated with the documented publication record, while the h-index reflects a combined measure of publication output and citation distribution. Such indicators can provide useful quantitative context but should be considered alongside publication quality, research relevance, collaboration, methodological contribution, and disciplinary context. [1][2]

Award Suitability

The Global Scientist Day Awards provide an academic recognition framework through which researchers may be considered in relation to their documented scholarly activities and research areas. Sayyed Javad Asadpoor’s affiliation with Mashhad Branch-Islamic Azad University, research orientation in Energy Sustainability, indexed publication record, citation count, and h-index form relevant evidence for consideration within such an academic recognition process. [4]

Conclusion

Sayyed Javad Asadpoor is an Iran-based researcher affiliated with Mashhad Branch-Islamic Azad University and associated with Energy Sustainability. The supplied Scopus indicators document seven publications, 25 citations, and an h-index of 3, providing a concise quantitative representation of indexed scholarly activity. [1] [3]

References

  1. Elsevier (2026.). Scopus author details: Sayyed Javad Asadpoor, Author ID 57196087982. Scopus.
    https://www.scopus.com/authid/detail.uri?authorId=57196087982
  2. Assessment of impacting architectural aspects on UHI and energy in apartment housing of Mashhad, Iran.
    https://www.sciencedirect.com/org/science/article/abs/pii/S0969998826001050
  3. ORCID (2026.). ORCID record: Sayyed Javad Asadpoor, ORCID iD 0000-0002-0977-8674. ORCID.
    https://orcid.org/0000-0002-0977-8674
  4. Global Scientist Day Awards (2026.). Global Scientist Day Awards. Official Award Website.
    https://scientistday.org/

Mr. Wenzhuang Liu | Energy Sustainability | Best Researcher Award | 2573

Mr. Wenzhuang Liu | Energy Sustainability | Best Researcher Award

Mr. Wenzhuang Liu | North China University of Science and Technology | China

This researcher has built a strong academic foundation in energy systems and renewable energy integration, focusing on innovative methods to enhance the flexibility, efficiency, and sustainability of modern power grids. With advanced studies in engineering thermophysics and hands-on experience in multiple research projects, the researcher has developed a deep understanding of thermodynamics, energy storage systems, and the challenges associated with large-scale renewable energy integration under contemporary carbon-neutrality goals. A key contribution is the development of an optimized configuration regulation method for energy storage systems (ESS) designed to address peak-shaving pressures arising from the widespread adoption of renewable energy. This method integrates deep peak shaving of thermal power units with coordinated demand-side response strategies, forming a comprehensive source-load-storage interaction model. By accounting for uncertainties in renewable generation and dynamic load variations, the framework enhances system responsiveness and operational flexibility. Simulation studies conducted across multiple scheduling scenarios demonstrate substantial improvements, including reductions in overall operation cost, unit operating cost, and renewable energy input cost. The findings highlight the method’s potential to significantly boost renewable energy utilization while maintaining economic and operational stability in power systems. Beyond this flagship innovation, the researcher has contributed to ongoing projects related to optimizing energy storage configurations for enhanced peak regulation. Their scholarly output includes publications in reputable journals and active engagement in funded research initiatives supported by scientific foundations and industrial laboratories. The researcher has also patented a novel ESS configuration approach centered on deep peak shaving and source-load-storage coordination. Overall, the researcher’s work advances both theoretical and application-oriented dimensions of renewable energy integration. Their contributions support more resilient, responsive, and economically viable power systems, making a meaningful impact on the transition toward low-carbon energy futures and reinforcing their suitability for recognition under research excellence awards.

Profiles: ScopusOrcid 

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Liu, J., Zhang, Z., Xie, Q., & Liu, W. (2024). Dual-phase model: Estimating the temperature and hydrodynamic size of magnetic nanoparticles with protein-corona formation. Applied Physics Letters. https://doi.org/10.1063/5.0199403

Li, L., Yi, W., Cui, X., & Liu, W. (2023). Rapid and high sensitivity temperature measurement based on near-extinction photoelastic modulated magneto-optical Kerr effect of Fe-Gd nanofilm. IEEE Transactions on Instrumentation and Measurement. https://doi.org/10.1109/TIM.2023.3323049

Liu, J., Huang, P., Zhang, Z., Xie, Q., & Liu, W. (2023). The nonlinear dynamics of magnetic nanoparticles: A thermometry in complex magnetic fields. Applied Physics Letters. https://doi.org/10.1063/5.0151058

Cui, X., Li, L., & Liu, W. (2022). A rapid and sensitive magnetic immunoassay of biomolecules based on magnetic nanoparticles. IEEE Transactions on Instrumentation and Measurement. https://doi.org/10.1109/TIM.2022.3216405

Guo, S., Yi, W., & Liu, W. (2022). Biological thermometer based on the temperature sensitivity of magnetic nanoparticle paraSHIFT. Nanotechnology. https://doi.org/10.1088/1361-6528/ac3b81

Peng, H., Cheng, C., Wan, Q., Jia, S., Wang, S., Lv, J., Liang, D., Liu, W., Liu, X., Zheng, H., et al. (2022). Fast multi-parametric imaging in abdomen by B1+ corrected dual-flip angle sequence with interleaved echo acquisition. Magnetic Resonance in Medicine. https://doi.org/10.1002/mrm.29127