Innovative Research Award
Nurhan Adil Öztürk — iskenderun tecnical universty, Turkey
| Nurhan Adil Öztürk | |
|---|---|
| Affiliation | iskenderun tecnical universty |
| Country | Turkey |
| Scopus ID | 7005688800 |
| Documents | 11 |
| Citations | 324 |
| h-index | 8 |
| Subject Area | Thermodynamics |
| Event | Math Scientist Awards |
| ORCID | 0000-0002-9551-8122 |
This academic recognition profile presents the supplied bibliometric information for Nurhan Adil Öztürk, a researcher from Turkey whose identified subject area is thermodynamics. The supplied profile reports Scopus Author ID 7005688800, 324 citations, and an h-index of 8.[1]
Abstract
This article provides a scholarly recognition profile of Nurhan Adil Öztürk, a Turkish researcher associated with the field of thermodynamics. The supplied bibliometric information identifies Scopus Author ID 7005688800, with 324 reported citations and an h-index of 8.[1] Thermodynamics is a fundamental branch of physical science concerned with energy, heat, work, equilibrium, and the transformation of matter and energy. Its principles have broad applications across engineering, physics, chemistry, materials science, and energy research.[2]
Keywords
Thermodynamics, Thermodynamic Systems, Heat Transfer, Energy Conversion, Entropy, Enthalpy, Exergy, Statistical Thermodynamics, Chemical Thermodynamics, Engineering Thermodynamics, Energy Systems, Thermal Engineering, Heat Engines, Refrigeration, Thermodynamic Cycles, Phase Equilibrium, Fluid Thermodynamics, Renewable Energy, Energy Efficiency, Computational Thermodynamics, Mathematical Modelling, Applied Mathematics, Physical Chemistry, Materials Science, Energy Research, Innovative Research Award, Math Scientist Awards.
Introduction
Thermodynamics provides a theoretical framework for understanding energy transfer and transformation in physical systems. Its fundamental laws establish relationships among heat, work, internal energy, entropy, and other thermodynamic properties. These principles are applicable to both natural phenomena and engineered systems.[2]
Modern thermodynamic research extends from classical equilibrium analysis to statistical descriptions of matter, non-equilibrium processes, computational modelling, energy conversion, and advanced materials. Thermodynamic methods are also important in the design and analysis of engines, refrigeration systems, energy-storage technologies, and sustainable energy systems.[3]
Research Profile
The supplied information identifies the following principal elements of Nurhan Adil Öztürk’s academic profile:
The supplied bibliometric indicators provide quantitative information about the researcher’s indexed scholarly visibility. Citation counts and h-index values are dynamic measures and may change as databases add new publications, citations, corrections, and author-linkage information.[1]
Research Contributions
Thermodynamic research encompasses the analysis of energy and matter under defined physical conditions. Important research themes include equilibrium thermodynamics, energy conversion, entropy generation, exergy analysis, phase transitions, thermal systems, and thermodynamic optimization.[2]
In engineering and applied science, thermodynamic principles are frequently combined with numerical methods and mathematical modelling to investigate the performance of energy systems. Research may address efficiency, energy conservation, heat and mass transfer, thermal management, renewable-energy technologies, and advanced conversion systems.[3]
Publications
The supplied information identifies Nurhan Adil Öztürk through Scopus Author ID 7005688800. A complete verified bibliography would require access to the corresponding Scopus author record and individual publication records. Such records may contain publication titles, journal information, publication dates, co-authors, citation counts, and DOI identifiers.[1]
Research Impact
The supplied profile reports 324 citations and an h-index of 8. These indicators provide quantitative measures of citation activity associated with the researcher’s indexed scholarly record.[1]
Bibliometric indicators should be interpreted within the context of disciplinary practices, database coverage, publication age, and research specialization. Citation counts alone do not measure every dimension of research quality or influence and are most informative when considered alongside publication content, methodological rigor, originality, collaboration, and broader scholarly contributions.
Award Suitability
The Math Scientist Awards are the stated recognition context for this profile, with the Innovative Research Award identified as the article title. The supplied academic indicators identify a researcher working in thermodynamics with 324 reported citations and an h-index of 8. These data may constitute part of an academic recognition assessment, subject to the official eligibility criteria, nomination requirements, and independent verification procedures of the awarding organization.
Conclusion
Nurhan Adil Öztürk is presented in the supplied information as a Turkish researcher associated with thermodynamics. The reported Scopus profile identifies Author ID 7005688800, 324 citations, and an h-index of 8.[1] These measures provide a quantitative indication of indexed scholarly visibility. A comprehensive assessment of research achievement should additionally consider verified publications, originality, scientific significance, methodological quality, and contributions to the development or application of thermodynamic knowledge.
External Links
References
- Downstream particle image velocimetry measurements of a circular cylinder—plate junction, https://doi.org/10.1243/09544062JMES1446
- Bilinearization and Exact Soliton Dynamics of an Integrable Variable-Coefficient Korteweg–de Vries Model for Shallow-Water Waves and Its Boundary with Variable-Depth Shoaling, https://www.mdpi.com/2227-7390/14/16/2864
- Experimental study of butane adsorption on coconut based activated carbon for different gas concentrations, temperatures and relative humidities, https://doi.org/10.1080/09593330.2019.1692913
- Experimental investigation of thermal coefficient of the graphene used concrete, https://dergipark.org.tr/en/pub/iarej/article/415181
- PIV measurements of flow through normal triangular cylinder arrays in the passage of a model plate-tube heat exchanger, 10.1016/j.ijheatfluidflow.2016.06.013