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Dr. Somayeh Davoodabadi Farahani

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  • Dr Somayeh Davoodabadi Farahani

    Assistant Professor

     

    Ph.D.            Mechanical Engineering, University of Tehran (UT) , Iran (2012- 2017)

    M.Sc.:          Mechanical Engineering, University of Tehran (UT) , Iran (2009 - 2011)

    B.Sc.:           Mechanical Engineering, Iran University of Science and Technology (IUST) , Iran (2003- 2007)

    Phone:         +988633400681, Fax: + 988633400681
    Email:        This email address is being protected from spambots. You need JavaScript enabled to view it.
    Address:      Arak University of Technology, Daneshgah St., Arak, Iran. Post Code: 38181-41167

  • Dr Somayeh Davoodabadi Farahani

    Assistant Professor

     

    Ph.D.            Mechanical Engineering, University of Tehran (UT) , Iran (2012- 2017)

    M.Sc.:          Mechanical Engineering, University of Tehran (UT) , Iran (2009 - 2011)

    B.Sc.:           Mechanical Engineering, Iran University of Science and Technology (IUST) , Iran (2003- 2007)

    Phone:         +988633400681, Fax: + 988633400681
    Email:        This email address is being protected from spambots. You need JavaScript enabled to view it.
    Address:      Arak University of Technology, Daneshgah St., Arak, Iran. Post Code: 38181-41167

Research Interests

  • Nanoscale heat transfer

Thermal system modeling

  • Inverse heat transfer problem
  • Optimization
  • Two-phase flow

Heat transfer modeling in Machining Process.

 

Professional Experiences

  • Iran Gas Transmission Company’s research project “experimental estimation of local convective heat transfer coefficient of pulsating impingement slot jet by using inverse heat transfer method”,(2011-2015).
  • Design of pulsating valve (2011).
  • Design 32-channel data-acquisition device (2010).

Industrial refrigeration system design (2007).

 

Selected Publications

Journal Papers

S.D.Farahani and f.Kowsary,2017,”Estimation of Convective Heat Transfer Coefficient of pulsating Semi-Confined Impingement Slot Jet by Using Inverse Method”, Heat and Mass Transfer, Springer, DOI: 10.1007/s00231-017-2025-4

S.D. Farahani and F. Kowsary,2017,”Heat Transfer from Pulsating Laminar Impingement Slot Jet on a Flat Surface with inlet Velocity: Sinusoidal and Square Wave”, Heat Transfer Engineering, DOI: 10.1080/01457632.2017.1338868

S.D.Farahani, M. Bijarchi, F.Kowsary and M.Ashjaee,2016 “Optimization Arrangement of Two Pulsating Impingement Slot Jets for Achieving Heat Transfer Coefficient Uniformity”, ASME Journal of Heat transfer, DOI: 10.1115/1.4033616

S.D.Farahani, F.Kowsary and M.Ashjaee,2016,”Experimental Investigation of Heat Transfer Coefficient From The Impingement of A Slot Jet Using Conjugate Gradient Method With Adjoint Equation”, Experimental Heat Transfer, DOI: 10.1080/08916152.2015.1077295

S.D.Farahani, A.R.Njafi, F.Kowsary and M.Ashjaee, 2016,”Experimental Estimation Heat Flux and Heat Transfer Coefficient by Using Inverse Methods”, Scientia Iranica Journal, DOI: 4f92427015edb9b5679df9c60f90153f/1

S.D.Farahani, F.Kowsary, M.Ashjaee and A.R Najafi,2015,” Inverse Heat Transfer Method, Application: Achieving Constant Heat Flux on Flat Plate by Using Impinging Slot-Jet Arrays and Experimental Estimation of Convective Heat Transfer Coefficient”, Middle East Journal of Scientific Journal, DOI: 10.5829/idosi.mejsr.2015.23.08.220

S.D.Farahani, AR.Najafi and F.Kowsary, 2015,” Experimental Evaluation of Inverse Heat Conduction Methods: Sequential specification method”, Sharif University of Technology Journal Transaction B: Mechanical Engineering.

S.D.Farahani and F.Kowsary, 2013,” Inverse Experiment Design for Estimation of Convective Heat Transfer Coefficient Impinging Slot Jet”, Sharif University of Technology Journal Transaction B: Mechanical Engineering.

S.D.Farahani, F.Kowsary and J.Jamili, 2014,”Direct Estimation Local Convective Boiling Heat Transfer Coefficient in Mini Channel by Using Conjugated Gradient Method with Adjoint Equation”, International Communication Heat and Mass Transfer, DOI: 10.1016/j.icheatmasstransfer.2014.03.004

S.D.Farahani, F.Kowsary and J.Jamili,2014,” Estimation of Local Heat Transfer Coefficient in Impingement Jet By Solving Inverse Heat Conduction Problem with Mollified Temperature Data”, Scientia Iranica journal, Transaction B: Mechanical Engineering, DOI:

S.D.Farahani, M.Sefidgar and F.Kowsary,2011,” Estimation of Kinetic Parameters of Composite Materials During The Cure Process Using The Combined Mollification Method”, International Communications in Heat and Mass Transfer, DOI: 10.1016/j.icheatmasstransfer.2011.06.001

S.D.Farahani and F.Kowsary,2011,” Estimation Local Convective Boiling Heat Transfer Coefficient In Mini Channel”, International Communications in Heat and Mass Transfer, 2012DOI: 10.1016/j.icheatmasstransfer.2011.11.007

F. Kowsary and S.D. Farahani ,2010,”Smoothing Of Temperature Data Using The Mollification Method for Using In Inverse Heat Conduction Problem”, Numerical Heat Transfer, Part A: Applications, DOI: 10.1080/10407782.2010.490447

M. Nazari, S. D .Farahani and F. Kowsary, 2012,”Comparison of The Mollification And Wavelet Pre-Filtering of Temperature Data In A Highly Ill-Posed Inverse Heat Conduction Problem, Application: Non-Thermal Equilibrium Porous Channel”, Journal of Heat Transfer Engineering,DOI: 10.1080/01457632.2011.635978

S.D.Farahani and F.kowsary,2011, Investigated Effect of Mollified Experimental Data On Increasing Efficiency Standard IHCP Methods, Sharif University of Technology Journal Transaction B: Mechanical Engineering.( in Farsi)

F.Kowsary and S.D.Farahani,2010,”Comparison of Various Filters In Inverse Heat Conduction Problem”, Sharif University of Technology Journal Transaction B: Mechanical Engineering.(in Farsi)

A.Fereidoon, A.Rostamiyan, M.R. Davoudabadi, S.D. Farahani and D.D. Ganji,2010,”Analytic Approach To Investigation of Distributions of Stresses and Radial Displacement At The Thick-Wall Cylinder Under The Internal And External Pressures “, Middle-East Journal of Scientific Research.

A.Fereidoon, S.D.Farahani and M.R.Davoudabadi,2010,”Application of Differential Transformation Method To Study On Motion of A Sphere Rolling Down An Inclined Plane Submerged In Incompressible Newtonian Media”, World Applied Science Journal,DOI: 10.5121/csit.2014.41122

M.R.Davoudabadi, S.D.Farahani and A.Fereidon,2010,” Solution of Unsteady Rolling Motion of Spheres Equation In Inclined Tubes Filled With Incompressible Newtonian Fluids By Differential Transformation Method” , World Applied Science Journal.

Conference Papers

S.D.Farahani,2017,”Application of the sequential method for estimation heat transfer in Machining process”,ICME2017.

S.D.Farahani and K.Goudarzi, 2014,”Numerical Investigation of Pulsating Laminar Confined Impinging Slot-Jets with Nanofluids”, 22th Annual (international) conference on Mechanical engineering-ISME2014, Ahvaz, Iran.

S.D.Farahani, K. Goudarzi and F.Kowsary, 2013, “Estimation of Local Heat Transfer Coefficient of Laminar Confined Impinging Slot-Jet With Nanofluids”, 21th Annual (international) conference on Mechanical engineering-ISME2013, Tehran,Iran.

Z.Toloue, S.D.Farahani and S.M.Hossienalipour,2013,”Simulation of Simultaneous Heat And Mass Transfer In Bread Paste Doting The Baking Time In An Impinging Jet”, 21th Annual(international) conference on Mechanical engineering-ISME2013,Tehran,Iran.

S.D. Farahani, M.A.Deligani and M.R.D.Farahani,2010,”Survey Effects of Smoothing Measured Data By DWT And MOA Filters In Increasing Efficiency of IHCP Method”, 18th Annual(international) conference on Mechanical engineering-ISME2010,Tehran,Iran.

S.D. Farahani and K.Goudarzi,2009,”Optimization Fuel Consumption of Power Boiler by Multi-Object genetic Algorithm”, Annual conference on Mechanical engineering-Mech2009, Mashhad, Iran.

S.D.Farahani and M.R.Farahani,2009 ,”Application of The Mollification Method In Solution of 1_D Inverse Heat Conduction Problem” , Annual conference on Mechanical engineering-Mec.2009,Mashahad,Iran.

Teaching

Undergraduate:

  • Heat transfer I
  • Thermodynamic I
  • Fluid mechanic I
  • Heat transfer Lab.
  • Graduate:
  • advanced convective heat transfer
  • advanced conduction heat transfer
  • two phase flow
  • Inverse heat transfer