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Biography and Research Information
OverviewAI-generated summary
Sandeep Aryal's research focuses on energy efficiency and environmental control systems, particularly for agricultural applications. His work includes the analytical and experimental analysis of novel liquid desiccant systems utilizing fertilizer-based solutions for dehumidifying indoor plant environments. Aryal has investigated the energy efficiency and demonstrated the functionality of prototype systems for controlled plant cultivation.
His research also extends to thermodynamic modeling, including simultaneous phase transitions in evaporators for Organic Rankine Cycle applications, with comparative studies involving different coolants. Aryal has explored design parameters impacting heat transfer and fouling factors in gas-to-gas coolers through numerical studies. He has published six papers and has an h-index of 3, with 12 total citations. He has collaborated with Kwangkook Jeong on three shared publications.
Metrics
- h-index: 3
- Publications: 6
- Citations: 12
Selected Publications
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Investigating the effects of design parameters on heat transfer rate and fouling factor in full-scale gas-to-gas coolers: A numerical study (2025)
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Analytical modeling of simultaneous phase transitions in a low-temperature evaporator for a pilot-scale Organic Rankine Cycle using R134a: A comparative study with water coolant (2024)
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Analytical Modelling on Simultaneous Phase Transitions in Low Temperature Evaporator for Organic Rankine Cycle Applications (2022)
Collaboration Network
Top Collaborators
- Analytical modeling of simultaneous phase transitions in a low-temperature evaporator for a pilot-scale Organic Rankine Cycle using R134a: A comparative study with water coolant
- Investigating the effects of design parameters on heat transfer rate and fouling factor in full-scale gas-to-gas coolers: A numerical study
- Analytical Modelling on Simultaneous Phase Transitions in Low Temperature Evaporator for Organic Rankine Cycle Applications
- Analytical Modelling on Simultaneous Phase Transitions in Low Temperature Evaporator for Organic Rankine Cycle Applications
- Analytical Modelling on Simultaneous Phase Transitions in Low Temperature Evaporator for Organic Rankine Cycle Applications
- Investigating the effects of design parameters on heat transfer rate and fouling factor in full-scale gas-to-gas coolers: A numerical study
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