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December 29, 2016
1 Mohammad Jadidi
Mohammad Jadidi Department of Mechanical Engineering
Contact:
Email: [email protected]
Phone: 98-912-3852050 (Cell Phone)
98-21-33306861 (Home)
LinkedIn: https://ir.linkedin.com/in/mohammad-jadidi-03ab8399
PERSONAL DATA
► Data of Birth: June 11, 1982
► Marital Status: Married
► Gender: Male
RESEARCH INTEREST
“Fluid mechanics and their applications in man’s life”
► Computational Fluid Dynamics (CFD)
► Turbulence (SRS models)
► Heat and mass transfer
► Reactive flows
► Multiphase flows
► Parallel computing
Key Index
► Numerical simulation, Finite volume method (FVM), Computational Fluid Dynamics (CFD).
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2 Mohammad Jadidi
EDUCATION
Postdoc | Mechanical Engineering, Energy Transform 2014- 2016
Iran University of Science and Technology (IUST), Tehran, Iran
Thesis title: Spectral Analysis of Scale Adaptive Simulation Approach in Prediction of Complex
Turbulent Flow Structures
Supervisor: Prof. Tehrani
PH.D. | Mechanical Engineering, Energy Transform 2009- finished 27 Feb. 2014
Iran University of Science and Technology (IUST), Tehran, Iran
Total GPA: 17.64 out of 20.
Thesis title: Analysis of Dynamic Sub-Grid Scale Turbulent Flux Models in Large Eddy Simulation
Supervisor: Prof. Tehrani
Advisor 1: Dr. Nori
Advisor 2: Dr. Hosseinalipor
Advisor 3: Dr. Alizadeh
M. S. | Mechanical Engineering, Energy Transform 2007- finished Jan. 2009
Isfahan University of Technology (IUT), Isfahan, Iran
Thesis title: Application of RSM Turbulence Models in Atmospheric boundary layer.
Supervisor: Dr. Sedaghat
Advisor 1: Dr. Saghafian
Advisor 2: Prof. Shirani
B. S. | Mechanical Engineering, Solid Mechanics 2001- finished Aug. 2006
Sharif University of Technology- Iran
Thesis title: Analytical Thermal Stress Analysis of FGM Material
Supervisor: Prof. Nosair
Diploma| Mathematics and Physics 2001
Motahari high school, Tehran, Iran
PUBLICATIONS
INTERNATIONAL ISI PAPERS:
►Grid Resolution Assessment in Large Eddy Simulation of Dispersion around an Isolated Cubic Building
Accepted in international journal of wind engineering and industrial aerodynamic (2013)
► Large Eddy Simulation of Dispersion around an Isolated Cubic Building: Evaluation of Localized Dynamic
SGSk -Equation Sub-Grid Scale Model
Accepted in international journal of environmental fluid mechanics (2013)
► Investigation of various non-linear k-ε turbulence models for simulating flow and pollutant dispersion on and
around a cubical model building
Accepted in the international journal of building simulation (2014)
► Influence of Film Cooling Jet Inlet Boundary Condition on Large Eddy Simulation of Model Turbine Blade
Leading Edge
Accepted in international journal of progress in computational fluid dynamics (2015)
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► Assessment of Isotropic Thermal Eddy Diffusivity Model for Prediction of Spanwise Distribution of Film
Cooling Effectiveness Using LES
Accepted in the international journal of heat and mass transfer
► Dynamic Sub-Grid Scale Turbulent Schmidt Number Modeling of Dispersion around an Isolated Cubic Building
Accepted in the international journal of building simulation (2015)
► Embedded Large Eddy Simulation Approach for Pollutant Dispersion on and around a Model Building in
Atmospheric Boundary Layer
Accepted in the international journal of environmental fluid mechanics (2016)
►Inflow Turbulence Generation Techniques for Large Eddy Simulation of Flow and Dispersion around a Model
Building in Atmospheric Boundary Layer
Accepted in the Journal of Building Performance Simulation (2016)
►Assessment of Scale Adaptive Simulation Approach for Pollutant Dispersion around an Isolated Model Building
Using Large Eddy Simulation and Proper Orthogonal Decomposition
Submitted to international journal of wind engineering and industrial aerodynamic (2016)
INTERNATIONAL CONFERENCE PAPERS:
► Investigation of Effect of Sub-Grid Scale Turbulent Schmidt Number on Pollutant Dispersion
Accepted in international ISTP-22 conference on 8 - 11 November 2011 in Delft University the
Netherlands
CONFERENCE PAPERS in IRAN:
► Effects of Blowing Ratio on Film Cooling Technique-LES Study
Accepted for the 9th Iranian Aerospace Society Conference-AERO2010
► Investigation of Supply Plenum Effect on Delivery Tube Flow Structure Using LES Approach
Applicable on Film Cooling
Accepted in (International) Conference on Mechanical Engineering-ISME2010
► Turbulent Transport of Thermal Energy in Film cooling Application – Turbulent Prandtl Number
Study
Accepted for the 9th Iranian Aerospace Society Conference-AERO2010
► Grid resolution techniques in quality assessment of implicit large eddy simulation
Accepted for the (International) Conference of Fluid Dyanamics-FD2010
► Stability Analysis of Two Dynamic Subgrid Scale Models in Large Eddy Simulation: Part A: Flow
Field Study
Accepted for the (International) Conference of Fluid Dyanamics-FD2011
► Evaluation of grid resolution technique based on LES_IQ in implicit large eddy simulation
Accepted for the 9th Iranian Aerospace Society Conference-AERO2012
► Grid resolution assessment using energy spectra and two-point correlation in large eddy simulation
Accepted for the 9th Iranian Aerospace Society Conference-AERO2012
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► Influence of inflow boundary conditions on flow field in large eddy simulation
Accepted for the (International) Conference of Fluid Dyanamics-FD2012
► Influence of inflow boundary condition on pollutant dispersion in large eddy simulation
Accepted in (International) Conference on Mechanical Engineering-ISME2012
► Investigation of turbine blade leading edge film cooling: application of object oriented programming
Accepted in first Iranian conference on heat and mass transfer-2012
► Investigation of blowing ratio effect on film cooling of model turbine leading edge
Accepted for the Iranian Aerospace Society Conference-AERO2012
► Large eddy simulation of spanwise contaminate dispersion in the wake region of an isolated building
by dynamic subgrid scale Schmidt modeling
First national conference on air and noise pollution management- AQM2012
► Investigation of effect of vortical structures on turbine blade leading edge film cooling using large
eddy simulation
Accepted in (International) Conference on Mechanical Engineering-ISME2013
► Coherent motion analysis of turbine balding leading edge film cooling: LES study
Accepted in (International) Conference on Mechanical Engineering-ISME2013
ساختار های سنجاق سری بر اثر بخشی خنک کاری الیه ای لبه جلویی پره توربین مدل توسط رهیافت شبیه مطالعه عددی ►
سازی گردابه های بزرگ
Accepted in Second National Gas Turbine Conference-GTC2013
►Application of object oriented programming in contaminate dispersion simulation using OpenFOAM
around an isolated cubic building
Accepted in Second national conference on air and noise pollution management- AQM 2013
TEACHING EXPERIENCE
Instructor | Mechanical Engineering Fall 2013-present
Iran University of science and technology, Jahad Daneshgahi Group, Tehran, Iran
► Subject: FLUENT and CFD
Instructor | Mechanical Engineering Fall 2009-2012
Iran University of science and technology, Tehran, Iran
► Subject: heat Transfer laboratory
Teacher assistant | Mechanical Engineering Fall 2010- present
Iran University of science and technology, Tehran, Iran
► Subject: Advanced convective heat Transfer, Boundary Layer theory
Instructor | Mechanical Engineering Fall 2009-2011
Iran University of science and technology, Arak department of mechanical engineering, Iran
► Subject: Thermodynamics, Fluid mechanics (I & II). Steam power plant, OPENFOAM & FLUENT
and CFD
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Instructor | Mechanical Engineering 2010- 2011
Sharif University of technology, Oj group, Tehran, Iran
► Subject: OPENFOAM & FLUENT and CFD
Instructor | Mechanical Engineering Fall 2010
Free University North Tehran Branch, Tehran, Iran
► Subject: OPENFOAM & FLUENT and CFD
Instructor | Mechanical Engineering 2010- 2011
Sina negar Institute, Semnan, Iran
► Subject: OPENFOAM & FLUENT and CFD
Teacher Assistant | Mechanical Engineering 2005- 2006
Sharif University of Technology- Golpayegan Department.
► Subject: Heat Transfer
Lecturer | Mechanical Engineering 2005- 2006
Sharif University of Technology- Golpayegan Department.
► Subject: Solid work Software
Lecturer | Mechanical Engineering 2005- 2006
Sharif University of Technology- Golpayegan Department.
► Subject: Visual Nastran Software
ACADEMIC PROJECTS
► Simulation of turbulent flow in two dimensional ducts with numerical methods.
Director: Dr. Saghafian
► Solving two dimensional flows in a rectangle and circular duct with SIMPLE algorithm.
Director: Dr. Saghafian
► Solving one, two and three dimensional conduction heat transfer in an arbitrary domain with
Finite Volume method.
Director: Dr. Saghafian
► Grid generation over an arbitrary 2D airfoil: O-type and C-type
Director: Dr. Mortazavi
► Solving two dimensional flows over a wedge in high speed flows.
Director: Dr. Mortazavi
► Solving 2D Laplace equation with multigrid methods
Director: Dr. Pishevar
BOOKLETS:
► Introduction to turbulence modeling for Engineering Students (two-equations turbulence modeling)
► Introduction to turbulence modeling for Engineering Students (Large eddy simulation)
► Introduction to wall function for Engineering Students
► Introduction to OPENFOAM & FLUENT boundary conditions for Engineering Students
► Effects of roughness in turbulent boundary layer
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INDUSTRIAL PROJECTS:
1. CFD Study of Tohid tunnel ventilation design-Tehran-Iran (about 27,000,000 computational cells
generated)-Software: OpenFOAM & FLUENT & Gambit.
2. Steady and unsteady simulation of heat transfer and flow field around a finned tube (Heat
Exchanger).
3. CFD Study of Gas Turbine Exhaust Gas Flow at the inlet Duct of HRSG and Design FCD to
Uniform Flow Field.
4. CFD study of Heat Recovery Steam Generators by using Porous Media Concept and
Determining the Inlet Duct Opening Angle.
5. CFD simulation of Heat Transfer of the Flue Gas (Exhausted from Gas Turbine) at the Diffuser
and Sttrat of Gas Turbine.
6. Numerical Simulation of Flow Field at the First Row of Superheater of HRSG (Heat Recovery
Steam Generator) and Optimizing the Steam Outlet Position.
7. Unsteady simulation of Heat Transfer in 3 Rows Superheater during Gas Turbine Fast Load
Change and Estimating the Boiler Life Time under the Fatigue Failure Stresses.
8. Simulation of Combustion Phenomena in the One Element of Duct Burner Rows Fixed in the
Inlet Duct of HRSG.
9. Numerical Simulation of Combustion and Radiation in Duct Burner Rows of Inlet Duct of HRSG
by Parallel Processing (about 20,000,000 computational cells generated)-Software: Fluent&
Gambit.
10. CFD Simulation of Combustion & Radiation Phenomena in Furnace of Auxiliary Boiler-15& 16
South Pars, Iran Power Plant.
11. CFD Simulation of Flow Field in Whole Auxiliary Boiler, Using Porous Media Concept in Tube
Bank Sections.
12. Steady Simulation of Heat Transfer and Flow Field of One Row Superheater.
13. 2D simulation of Flow Field in Furnace & Tube Bank of Auxiliary Boilers.
TECHNICAL SKILLS
► Applied CFD
COMPUTER SKILLS
Programming Languages | MATLAB (Perfect), C++ (Intermediate level ++)
Professional Software | ANSYS Work bench, FLUENT (Perfect), Design modeler (Perfect), Space
claim (Perfect), ANSYS meshing (Perfect), GAMBIT (Perfect), TECPLOT (Perfect), OpenFOAM
(Intermediate level++), ParaView (Perfect),
General Software | Microsoft Office (Perfect), Adobe illustrator (Perfect),
Operating system | Linux (Intermediate level), Windows (Perfect)
LANGUAGE
►Persian: Mother tongue
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►English: very Competent in Reading, Writing, and Listening and very well in Speaking
HOBBIES
► Climbing
► Photography (professional)
► Basketball (professional player)
►Table Tennis (professional player)
PERSONALITY TYPE
► Supportive
► Brainy
►Energetic, Calm & Keen
►Talented in teamwork activity, Highly responsible on the subject of my function in teamwork activity
►Enthusiastic in learning, researching and studying, studying, studying
References are available upon your request