Amir Saber

CFD Researcher

Experience

2021- Present
  • Developing CFD Models for Cerebral and Cardiovascular Systems
  • Using Statistical Methods and Design of Experiments (DOE) Methodology for Cardiovascular Biomechanics Systems

2012 - 2022
  • Leading Role in Cooling Thermal Designs and Thermal/Mechanical Definition for Next Generation Cooling Systems
  • Supervise the Commissioning and Maintenance of “Cold Water Supply Equipment” for Cooling Systems in Rotary High Vacuum Machines
  • Provide a Radiation Heat Transfer Model to Evaluate Thermal Behavior of a Rotary High Vacuum Machine to the Selection of the Optimum Cooling System Condition
  • Utilize a well-equipped Thermal Test Laboratory to Provide “Quality Empirical Test Results” and Verification of Predictions
  • Optimal Thermal Design of Electrical Devices and Selecting the Best Cooling Fan, Heat Sink and Materials
  • Develop the Transient and Steady-State Solutions and Predictions for Thermal Models
  • Evaluate new Thermal Technologies, new Materials, and new Cooling Solutions, and Provide Guidance to R&D and Business Teams
  • Take Part in the Preliminary Design Phase Including Test Plan, Reliability Analysis and FMEA
2010 - 2012
  • Design and Price Estimate of HVAC Systems in Pedagogical Buildings
  • Design of Heating and Cooling Load in School Facilities Including Radiators and Chillers
2009 - 2011

University Lecturer

Education

2022-Present.
2007-2010.

M.Sc. Mechanical Engineering, M. Ardabili University, Iran.

2001 – 2006.

B.Sc. Mechanical Engineering, Guilan University, Iran.

Skills

Ansys Fluent
Minitab
Engineering Equation Solver (EES)
Solidworks
Python
User Define Function (UDF)​
MATLAB
C++

Contact

About Me

CFD engineer with practical experience in building physics, vascular biomechanics simulation, the design of cooling systems and proficiency with Ansys Fluent and Minitab

Research Expertise:

Energy Efficiency in Buildings
Biomechanics
Computational Fluid Dynamics
Heat Transfer Analysis
Fluid Flow Simulation
Uncertainty Analysis
Design of Experiments (DOE)
Uncertainty Analysis
Monte Carlo Simulation
Optimization

Research Topics:

Using low-emissivity coating materials to reduce energy consumption in an enclosure with an under-floor heating system.
Uncertainty analysis of the Influence of the Wind Velocity and Ambient Temperature on Building Energy Assessment (Monte Carlo Simulation).
Analyze the effects of geometrical characteristics of parent vessels on the rupture of cerebral aneurysms (CFD Simulation).
Numerical simulation of using porous material for cerebral aneurysm filling as a treatment.

  1. Hao Jiang, ZHiwei Lu, M. Barzegar Gerdroodbary, Amir Sabernaeemi,  Sajad Salavatidezfouli. The influence of sac centreline on saccular aneurysm rupture: computational study. Scientific Reports, (2023).
  2. Sajad Salavatidezfouli, Asad Alizadeh, M. Barzegar Gerdroodbary, Amir Sabernaeemi,   Amir Musa Abazari, Armin Sheidani. Investigation of the stent induced deformation on hemodynamic of internal carotid aneurysms by computational fluid dynamics. Scientific Reports, (2023).
  3. Amir Sabernaeemi, M. Barzegar Gerdroodbary, Sajad Salavatidezfouli, Peiman Valipour. Influence of stent-induced vessel deformation on hemodynamic feature of bloodstream inside ICA aneurysms. Biomechanics and Modeling in Mechanobiology, (2023).
  4. Armin Sheidani, M. Barzegar Gerdroodbary, Amin Poozesh, Amir Sabernaeemi, Sajad Salavatidezfouli, Arash Hajisharifi. Influence of the coiling porosity on the risk reduction of the cerebral aneurysm rupture: computational study. Scientific Reports, (2022) 12:19082.
  5. Mostafa Rahimi, Amir Sabernaeemi. Experimental study of radiation and free convection in an enclosure with an under-floor heating system. Journal of Energy Conversion and Management 52 (2011) 2752-2757.
  6. Mostafa Rahimi, Amir Sabernaeemi. Experimental study of radiation and free convection in an enclosure with a radiant ceiling heating system. Journal of Energy and Buildings 42 (2010) 2077-2082.
  1. Mostafa Rahimi, Amir Sabernaeemi. Experimental and theoretical determination of radiation, convection and conduction heat transfer rate in a model enclosure. 18th annual International Conference of Iranian Society of Mechanical Engineering. (2010) ISME2010-1811, COI code: ISME18_164.
  2. Mortaza Yari, Amir Sabernaeemi, Ahad Abbasi. Entropy analysis of a Couette flow between two parallel plates with the condition of slip and temperature jump and constant temperature walls. 17th annual International Conference of Iranian Society of Mechanical Engineering. (2009) ISME2009-1699, COI code: ISME17_150.

  • Computational Fluid Dynamics
  • Design of Experiments (DOE)
  • Radiation Heat Transfer
  • Thermodynamic Analysis
  • Renewable Energy
  • Geothermal Systems

  • Using low-emissivity coating materials to reduce energy consumption in an enclosure with an under-floor heating system, (CFD Simulation), Amir Sabernaeemi, 2022.
  • Uncertainty analysis of Influence of the Wind Velocity and Ambient Temperature on Building Energy Assessment (Monte Carlo Simulation), Amir Sabernaeemi, (2021) (Under Preparation).
  • CFD Analysis of a Flat Plate Solar Collector (Radiation Model), Amir Sabernaeemi, Farshid Arab, 2018.
  • CFD Analysis of a Helix-shaped Water Cooling System and Sensitivity Analysis of the Effects of Ambient Parameters and Heat Sources inside a Machine.
  • Numerical Simulation for Dynamic Behavior of Density Currents (Turbid Flow) in according to Turbulent Models (Multiphase Model), Amir Sabernaeemi, Hamidreza Shaabani, 2013.
  • CFD analysis of a Selective Inverted Sink (SIS) (Buoyancy Model), Amir Sabernaeemi, 2011.
  • CFD Analysis of a Backward Facing Step (BFS) Flow, Amir Sabernaeemi, 2010.
  • CFD Analysis of an Incompressible 2-D Couette Flow, Amir Sabernaeemi, 2008.
  • Utilization of Waste Heat from GT-MHR for Power Generation in Organic Rankine Cycles, Amir Sabernaeemi, Supervisor: Prof. Mortaza Yari, 2012.
  • Analysis of a Combined Brayton and Inverse Brayton Cycle, Amir Sabernaeemi, Supervisor: Prof. Mortaza Yari, 2011.
  • Analysis of Entropy Generation inside Micro Concentric Cylindrical Annuli with Relative Rotation, Amir Sabernaeemi, 2010.
  • Thermodynamic Analysis of Rankine-Kalina Combined Cycle, Amir Sabernaeemi,Supervisor: Prof. Mortaza Yari, 2009.
  • Thermal Conductivity Determination of a Bad Conductor (an Insulated Wall) Using Lee’s Method, Amir Sabernaeemi, Supervisor: Prof. Mostafa Rahimi, 2009.
  • Commissioning of Hydrogen Bubble System for Fluid Dynamics Laboratory in M. Ardabili University and Visualizing and Measuring of External Flow Patterns, Amir Sabernaeemi, 2008.
  • ANSYS FLUENT
  • SOLIDWORKS SIMULATION
  • DESIGN OF EXPERIMENTS (DOE)
  • UNCERTAINTY
  • GD&T
  • DFMEA
  • Design for Manufacturing (DFM) and Design for Assembly (DFA)

Available Upon Your Request.