Contact:
Google Scholar: Azmain Rashid Raiyan | ResearchGate: Raiyan | LinkedIn: Azmain-Raiyan | GrabCAD: Raiyan-101
Education
Islamic University of Technology (IUT) Gazipur, Bangladesh
B.Sc. Mechanical Engineering 2021-2025
- Thesis: “Exergoeconomic analysis and multi-objective optimization of a nuclear-driven integrated cooling and power cycle using response surface regression modeling coupled with genetic algorithm.” Supervisor: Dr. Mohammad Monjurul Ehsan, Professor, Dept. of MPE, IUT.
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Notre Dame College (NDC) |
Dhaka, Bangladesh |
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Higher Secondary School Certificate (HSC), Science |
2018-2020 |
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Saint Joseph Higher Secondary School (SJS) |
Dhaka, Bangladesh |
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Secondary School Certificate (SSC), Science |
2010-2018 |
Publications
- A. R. Raiyan, Samiuzzaman, Y. Khan, M. M. Ehsan, M. R. Karim, and S. M. Siddique, “Exergoeconomic analysis and multi objective optimization of a nuclear driven integrated cooling and power cycle using response surface regression modeling coupled with genetic algorithm,” Energy Conversion and Management., vol. 337, p. 119836, Aug. 2025, doi: 10.1016/j.enconman.2025.119836.
- A. R. Raiyan, S.Uzzaman, M. M. Ehsan, and Y. Khan, “Energy, exergy, exergoeconomic (3E) analyses and ANN-based multi-objective optimization of novel vortex tube and turbo-expander enhanced transcritical CO2 cogeneration cycles,” Energy Conversion and Management, vol. 345, p. 120385, Dec. 2025, doi: 10.1016/j.enconman.2025.120385.
- A. R. Raiyan, M. M. Uzzaman, M. M. Ehsan, and Y. Khan, “Exergoeconomic assessment of a novel ejector recompression absorption cycle integrated with flash tank enhanced compression refrigeration cycle: ANN assisted genetic algorithm optimization,” Energy Conversion and Management: X, vol. 27, p. 101208, July 2025, doi: 10.1016/j.ecmx.2025.101208.
Research Interests
- Supercritical Power Cycles
- Transcritical Refrigeration and Power Cycles
- Vapor Compression and Vapor Absorption Refrigeration systems
- Multi-effect Desalination System
- Integrated Cogeneration Cycles
- Solar Renewable Energy
- Jet Propulsion Engines
- Supersonic Flow Modeling
- Ejector and Vortex Tube Integrated systems
- Converging-Diverging Nozzles
- Compressible Fluid Flow
Undergraduate Research Projects
- Undergraduate Thesis Project | https://doi.org/10.1016/j.enconman.2025.119836
Exergoeconomic analysis and multi-objective optimization of a nuclear driven integrated cooling and power cycle using response surface regression modeling coupled with genetic algorithm
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- Cascaded an advanced sCO2 power cycle with a series flow Double Effect Absorption Refrigeration cycle o Integrated response surface regression modeling with genetic algorithm for optimization o Proposed system demonstrated 65.53% EUF, 76.28% exergy efficiency and 9.87 $/GJ unit cost Journal: Energy Conversion and Management (Elsevier) | Impact Factor: 10.9 | Cite Score: 19.8
- Extension of Undergraduate Thesis | https://doi.org/10.1016/j.enconman.2025.120385
Energy, exergy, exergoeconomic (3E) analyses and ANN-based multi-objective optimization of novel vortex tube and turbo-expander enhanced transcritical CO2 cogeneration cycles
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- Designed two novel Transcritical CO2 cycles for cogeneration employing vortex tube and turbo-expander o The turbo-expander cycle outperformed all the existing systems under baseline conditions
- The vortex tube CO2 cycle obtained 65.46% EUF, 74.7% exergy efficiency and 6.45 $/GJ unit cost when optimized Journal: Energy Conversion and Management (Elsevier) | Impact Factor: 10.9 | Cite Score: 19.8
- Project under the course titled: Refrigeration and Air Conditioning | https://doi.org/10.1016/j.ecmx.2025.101208
Exergoeconomic assessment of a novel ejector recompression absorption cycle integrated with flash tank enhanced compression refrigeration cycle: ANN assisted genetic algorithm optimization
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- Cascaded an Ejector enhanced Recompression Absorption cycle with Flash Tank Injection Refrigeration system o The proposed system achieved a maximum COP of 1.76 and exergy efficiency of 84.68% o Economically outperforms the existing systems as the calculated payback period is only 3.42 years Journal: Energy Conversion and Management: X (Elsevier) | Impact Factor: 7.6 | Cite Score: 11.3
Skills and Expertise
- Programming: Python, MATLAB, Engineering Equation Solver (EES)
- 3D Prototype Modeling: Autodesk Fusion 360
- Animation and Graphical Rendering: Unreal Engine 5
- Flow Simulation: Ansys Fluent
- Post Processing and Data Curation: OriginLAB
- Documentation and Presentation: Microsoft Word, Excel, PowerPoint and LaTeX
- Descriptive Statistical Analysis: MINITAB and OriginLAB
Extracurricular Activities, Achievements, and Scholarships
- IUT OIC Partial Scholarship for standing 71st in the Admission Exam
- Bangladesh Physics Olympiad Competition
- Regional Winner, 16th position in Dhaka Division
- National Winner, 10th position in Bangladesh
- Master Camper at National Team Selection Camp
- Online Physics Brawl Competition, Ranked 41st out of 1098 teams globally
- Saint Joseph Higher Secondary School Annual Science Festival Project Demonstration, 2nd position
