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Mohammad Rahjoo
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Prediction of heat transfer, pressure drop and entropy generation in shell and helically coiled finned tube heat exchangers
M Sepehr, SS Hashemi, M Rahjoo, V Farhangmehr, A Alimoradi
Chemical Engineering Research and Design 134, 277-291, 2018
502018
Combination of Dual-MRT lattice Boltzmann method with experimental observations during free convection in enclosure filled with MWCNT-MgO/Water hybrid nanofluid
A Rahimi, M Rahjoo, SS Hashemi, MR Sarlak, MH Malekshah, ...
Thermal Science and Engineering Progress 5, 422-436, 2018
352018
Thermal analysis of a cell of lead-acid battery subjected by non-uniform heat flux during natural convection
MH Malekshah, EH Malekshah, M Salari, A Rahimi, M Rahjoo, ...
Thermal Science and Engineering Progress 5, 317-326, 2018
282018
Geopolymer concrete performance study for high-temperature thermal energy storage (TES) applications
M Rahjoo, G Goracci, P Martauz, E Rojas, JS Dolado
Sustainability 14 (3), 1937, 2022
212022
Direct solar production of medium temperature hot air for industrial applications in linear concentrating solar collectors using an open Brayton cycle. Viability analysis
A Famiglietti, A Lecuona-Neumann, J Nogueira, M Rahjoo
Applied Thermal Engineering 169, 114914, 2020
212020
Thermal energy storage (TES) prototype based on geopolymer concrete for high-temperature applications
M Rahjoo, G Goracci, JJ Gaitero, P Martauz, E Rojas, JS Dolado
Materials 15 (20), 7086, 2022
112022
A Numerical Study of Geopolymer Concrete Thermal Energy Storage: Benchmarking TES Module Design and Optimizing Thermal Performance
M Rahjoo, E Rojas, G Goracci, JJ Gaitero, P Martauz, JS Dolado
Journal of Energy Storage 74 (B), 109389, 2023
32023
Data-Driven and Machine Learning-Enabled Design and Optimization of Solid-Based Thermal Energy Storage Units
M Rahjoo, E Rojas, G Goracci, J Dolado
Available at SSRN 4678237, 0
1
Exploring the role of surface roughness in concrete-based thermal energy storage systems: A computational study
M Rahjoo, E Rojas, G Goracci, J S. Dolado
Journal of Energy Storage 88 (C), 111515, 2024
2024
Multi-Scale Modelling and Design of Thermal Energy Storage (TES) Devices Based on Cementitious Materials.
M Rahjoo
2024
Exploring the Role of Surface Roughness in Concrete-Based Thermal Energy Storage Systems: A Computational Study
M Rahjoo, E Rojas, G Goracci, JS Dolado
https://dx.doi.org/10.2139/ssrn.4515513, 2023
2023
Machine Learning for Optimization of Thermal Energy Storage Systems
M Rahjoo, E Rojas, G Goracci, J Dolado
Available at SSRN 4479433, 2023
2023
Thermal Energy Storage (TES) Prototype Based on Geopolymer Concrete for High-Temperature Applications. Materials 2022, 15, 7086
M Rahjoo, G Goracci, JJ Gaitero, P Martauz, E Rojas, JS Dolado
s Note: MDPI stays neutral with regard to jurisdictional claims in published …, 2022
2022
Solar Hot Air for Industrial Applications Using Linear Fresnel Concentrating Collectors and Open Brayton Cycle Layout
A Famiglietti, A Lecuona-Neumann, M Rahjoo, J Nogueira-Goriba
E3S Web of Conferences 238, 01003, 2021
2021
Industrial Turbo-Assisted Direct Solar Air Heater Using Linear Fresnel Concentrating Collectors
JN Antonio Famiglietti, Antonio Lecuona, Mohammad Rahjoo
EuroSun 2020 - 13th International Conference on Solar Energy for Buildings …, 2020
2020
Industrial Turbo-Assisted Direct Solar Air Heater Using Linear Fresnel Concentrating Collectors
A Famiglietti, A Lecuona-Neumann, M Rahjoo, J Nogueira-Goriba
2020
Producción directa de aire caliente en colectores solares Fresnel para la industria minera: estudio de prefactibilidad
A Famiglietti, A Lecuona-Neumann, M Rahjoo, M Ibarra, J Roa
CIES2020-XVII Congresso Ibérico e XIII Congresso Ibero-americano de Energia …, 2020
2020
Preliminary Study of Direct High-Temperature Air Generation Inside Linear Fresnel Concentrating Solar Collectors
A Famiglietti, A Lecuona-Neumann, M Rahjoo, J Nogueira-Goriba
2019
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