December 22, 2024
Gholamreza Imani

Gholamreza Imani

Academic Rank: Associate professor
Address:
Degree: Ph.D in Mechanical Engineering-Thermo-Fluids
Phone: 07131222717
Faculty: Faculty of Engineering

Education

  • PhD. in Mechanical Engineering-Thermo Fluids , Tarbiat Modares University , Iran (2008 - 2013)
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Research interests

  • Numerical Simulation of Transport Phenomena in Porous Media
  • Lattice Boltzmann Simulation of Various Thermo-Fluids Problems
  • Thermoeconomic Analysis of Energy Systems
  • Simulation and Design of Air-conditioning Systems Based on Thermal Comfort Analysis
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Research activities

Journal articles
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Alireza Khoshnood, Mehdi Maerefat, Gholamreza Imani, (2023) Effect of soot particle deposition on porous fouling formation and thermal characteristics of an exhaust gas recirculation cooler APPLIED THERMAL ENGINEERING: 229; 120629
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Gholamreza Imani, Mohsen Mozafari-Shamsi (2023) On the Magnus effect of a rotating porous circular cylinder in uniform flow: A lattice Boltzmann study PHYSICS OF FLUIDS: 35; 17
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Alireza Khoshnood, Mehdi Maerefat, Gholamreza Imani (2022) Lattice Boltzmann simulation of laminar forced convection in a parallel-plate duct with evolving porous layers at the walls INTERNATIONAL COMMUNICATIONS IN HEAT AND MASS TRANSFER: 136; 0
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mohamad sedigh kohanpour, Gholamreza Imani (2022) Lattice Boltzmann study of fluid flow and heat transfer characteristics of a heated porous elliptic cylinder: a two-domain scheme INTERNATIONAL JOURNAL OF NUMERICAL METHODS FOR HEAT & FLUID FLOW: 0; 0
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Gholamreza Imani, Mohsen Mozafari-Shamsi (2021) Lattice Boltzmann non-equilibrium extrapolation method for modeling hydrodynamic compatibility conditions at curved porous-fluid interfaces INTERNATIONAL JOURNAL OF NUMERICAL METHODS FOR HEAT & FLUID FLOW: 0; 27
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, Yasser Amini, Gholamreza Imani (2021) Heat transfer characteristics of a circular cylinder covered by a porous layer undergoing vortex-induced vibration INTERNATIONAL JOURNAL OF THERMAL SCIENCES: 166; 106974-...
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Gholamreza Imani (2019) Lattice Boltzmann method for conjugate natural convection with heat generation on non-uniform meshes Computers and Mathematics with Applications: ; 1188،1207
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Mohsen Mozafari-Shamsi, Mohammad Sefid, Gholamreza Imani (2018) Application of the ghost fluid lattice Boltzmann method to moving curved boundaries with constant temperature or heat flux conditions COMPUTERS & FLUIDS: ; 51،65
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Mohsen Mozafari-Shamsi, Mohammad Sefid, Gholamreza Imani (2016) New formulation for the simulation of the conjugate heat transfer at the curved interfaces based on the ghost fluid lattice Boltzmann method NUMERICAL HEAT TRANSFER PART B-FUNDAMENTALS: ; 559،576
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Mohsen Mozafari-Shamsi, Mohammad Sefid, Gholamreza Imani (2016) Developing a ghost fluid lattice Boltzmann method for simulation of thermal Dirichlet and Neumann conditions at curved boundaries NUMERICAL HEAT TRANSFER PART B-FUNDAMENTALS: ; 251،266
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Gholamreza Imani, Mehdi Maerefat, (2012) Lattice Boltzmann Simulation of Conjugate Heat Transfer from Multiple Heated Obstacles Mounted in a Walled Parallel Plate Channel NUMERICAL HEAT TRANSFER PART A-APPLICATIONS: ; 798،821
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Gholamreza Imani, Mehdi Maerefat, (2012) Estimation of heat flux bifurcation at the heated boundary of a porous medium using a pore-scale numerical simulation INTERNATIONAL JOURNAL OF THERMAL SCIENCES: ; 109،118
Conference articles
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Alireza Khoshnood, Mehdi Maerefat, Gholamreza Imani (2022) Lattice Boltzmann simulation of forced convection in partial porous channel with application in exhaust gas recirculating (EGR) coolers Ninth Fuel and Combustion Conference of Iran, Iran, Shiraz
Projects
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Rouhollah Fatehi, Ehsan Izadpanah, Seyed Abdollatif Hashemifard, Marzie Babaie Rabiee, Mohsen Abbasi, Yasser Amini, Gholamreza Imani (2017) Study on and Modelling of Seawater Desalination Process Using Humidification-Dehumidification Method دانشگاه خلیج فارس
Theses
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Mohsen Mozafari-Shamsi, Mohammad Sefid, Gholamreza Imani (2017) Title Not Found
Books
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Innovations
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Grant Attraction
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Courses

Executive activities

  • Head of Mechanical Engineering Department (2021 - present)
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