Dr. Javad A. Esfahani
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Dr. Javad A. Esfahani

Professor
Ferdowsi University of Mashhad, Iran


Highest Degree
Ph.D. in Mechanical Engineering from University of New Brunswick, Canada

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Area of Interest:

Physical Science Engineering
100%
Heat and Mass Transfer
62%
Modelling and Simulation
90%
Industrial Process
75%
Numerical Analysis
55%

Research Publications in Numbers

Books
0
Chapters
0
Articles
0
Abstracts
0

Selected Publications

  1. Rashidi, S., M. Bovand, N. Rahbar and J.A. Esfahani, 2018. Steps optimization and productivity enhancement in a nanofluid cascade solar still. Renew. Energy, 118: 536-545.
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  2. Zade, N.M., S. Akar, S. Rashidi and J.A. Esfahani, 2017. Thermo-hydraulic analysis for a novel eccentric helical screw tape insert in a three dimensional tube. Applied Thermal Eng., 124: 413-421.
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  3. Tighchi, H.A. and J.A. Esfahani, 2017. Combined radiation/natural convection in a participating medium using novel lattice boltzmann method. J. Thermophys. Heat Transfer, 31: 563-574.
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  4. Rashidi, S., N. Moghaddaszadehbazzaz and J.A. Esfahani, 2017. Thermo-fluid performance and entropy generation analysis for a new eccentric helical screw tape insert in a 3D tube. Chem. Eng. Process., 117: 27-37.
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  5. Rashidi, S., J.A. Esfahani and N. Rahbar, 2017. Partitioning of solar still for performance recovery: Experimental and numerical investigations with cost analysis. Solar Energy, 153: 41-50.
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  6. Rashidi, S., J.A. Esfahani and M. Maskaniyan, 2017. Applications of magnetohydrodynamics in biological systems-a review on the numerical studies. J. Magnet. Magnet. Mater., 439: 358-372.
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  7. Rashidi, S., J.A. Esfahani and A. Rashidi, 2017. A review on the applications of porous materials in solar energy systems. Renew. Sustain. Energy Rev., 73: 1198-1210.
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  8. Monfared, Z., Z. Afsharnezhad and J.A. Esfahani, 2017. Flutter, limit cycle oscillation, bifurcation and stability regions of an airfoil with discontinuous freeplay nonlinearity. Nonlinear Dynamics, 90: 1965-1986.
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  9. Maskaniyan, M., S. Rashidi and J.A. Esfahani, 2017. A two-way couple of Eulerian-Lagrangian model for particle transport with different sizes in an obstructed channel. Powder Technol., 312: 260-269.
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  10. Kazemi, Z., S. Rashidi and J.A. Esfahani, 2017. Effect of flap installation on improving the homogeneity of the mixture in an induced-charge electrokinetic micro-mixer. Chem. Eng. Process.: Process Intensification, 121: 188-197.
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  11. Karbasian, H.R. and J.A. Esfahani, 2017. Enhancement of propulsive performance of flapping foil by fish-like motion pattern. Comput. Fluids, 156: 305-316.
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  12. Hosseini, R., S. Rashidi and J.A. Esfahani, 2017. A lattice Boltzmann method to simulate combined radiation-force convection heat transfer mode. J. Braz. Soc. Mech. Sci. Eng., 39: 3695-3706.
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  13. Famileh, I.Z., J.A. Esfahani and K. Vafai, 2017. Effect of nanoparticles on condensation of humid air in vertical channels. Int. J. Thermal Sci., 112: 470-483.
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  14. Famileh, I.Z. and J.A. Esfahani, 2017. Experimental investigation of wet flue gas condensation using twisted tape insert. Int. J. Heat Mass Transfer, 108: 1466-1480.
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  15. Esfahani, J.A., M.R. Safaei, M. Goharimanesh, L.R. de Oliveira, M. Goodarzi, S. Shamshirband and E.P.B. Filho, 2017. Comparison of experimental data, modelling and non-linear regression on transport properties of mineral oil based nanofluids. Powder Technol., 317: 458-470.
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  16. Esfahani, J.A., M.A. Sokkeh, S. Rashidi, M.A. Rosen and R. Ellahi, 2017. Influences of wavy wall and nanoparticles on entropy generation over heat exchanger plat. Int. J. Heat Mass Transfer, 109: 1162-1171.
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  17. Bovand, M., S. Rashidi and J.A. Esfahani, 2017. Optimum interaction between magnetohydrodynamics and nanofluid for thermal and drag management. J. Thermophys. Heat Transfer, 31: 218-229.
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  18. Bovand, M., S. Rashidi and J.A. Esfahani, 2017. Control of interaction between MHD and nanofluid for thermal and drag management by RSM. J. Thermophys. Heat Transfer, 31: 218-229.
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  19. Bashi, M., S. Rashidi and J.A. Esfahani, 2017. Exergy analysis for a plate-fin triangular duct enhanced by a porous material. Applied Thermal Eng., 110: 1448-1461.
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  20. Asadollahi, A., S. Rashidi and J.A. Esfahani, 2017. Condensation process and phase-change in the presence of obstacles inside a minichannel. Meccanica, 52: 2265-2274.
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  21. Alinejad, J. and J.A. Esfahani, 2017. Lattice boltzmann simulation of 3-dimensional natural convection heat transfer of CuO/water nanofluids. Thermophys. Aeromech., 24: 95-108.
  22. Akbarzadeh, M., S. Rashidi and J.A. Esfahani, 2017. Influences of corrugation profiles on entropy generation, heat transfer, pressure drop and performance in a wavy channel. Applied Thermal Eng., 116: 278-291.
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  23. Ziaforoughi, A. and J.A. Esfahani, 2016. A salient reduction of energy consumption and drying time in a novel PV-solar collector-assisted intermittent infrared dryer. Solar Energy, 136: 428-436.
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  24. Vahidhosseini, S.M., E. Barati and J.A. Esfahani, 2016. Green's function method (GFM) and mathematical solution for coupled equations of transport problem during convective drying. J. Food Eng., 187: 24-36.
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  25. Shirejini, S.Z., S. Rashidi and J.A. Esfahani, 2016. Recovery of drop in heat transfer rate for a rotating system by nanofluids. J. Mol. Liquids, 220: 961-969.
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  26. Rashidi, S., M. Hayatdavoodi and J.A. Esfahani, 2016. Vortex shedding suppression and wake control: A review. Ocean Eng., 126: 57-80.
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  27. Rashidi, S., M. Bovand, J.A. Esfahani and G. Ahmadi, 2016. Discrete particle model for convective AL2O3-water nanofluid around a triangular obstacle. Applied Thermal Eng., 100: 39-54.
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  28. Rashidi, S., M. Bovand and J.A. Esfahani, 2016. Optimization of partitioning inside a single slope solar still for performance improvement. Desalination, 395: 79 -91.
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  29. Rashidi, S., M. Bovand and J.A. Esfahani, 2016. Opposition of magnetohydrodynamic and AL2O3-water nanofluid flow around a vertex facing triangular obstacle. J. Mol. Liquids, 215: 276-284.
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  30. Rashidi, S., M. Bovand and J.A. Esfahani, 2016. Application of magnetohydrodynamics for suppressing the fluctuations in the unsteady flow around two side-by-side circular obstacles. Eur. Phys. J. Plus, Vol. 131. 10.1140/epjp/i2016-16423-9.
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  31. Rashidi, S., J.A. Esfahani, M.S. Valipour, M. Bovand and I. Pop, 2016. Magnetohydrodynamic effects on flow structures and heat transfer over two cylinders wrapped with a porous layer in side. Int. J. Numer. Methods Heat Fluid Flow, 26: 1416-1432.
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  32. Rahbar, N., J.A. Esfahani and A. Asadi, 2016. An experimental investigation on productivity and performance of a new improved design portable asymmetrical solar still utilizing thermoelectric modules. Energy Convers. Manage., 118: 55-62.
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  33. Norouzi, A. and J.A. Esfahani, 2016. Capturing non-equilibrium effects of micro/nano scale gaseous flow using a novel lattice Boltzmann model. J. Stat. Phys., 162: 712-726.
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  34. Mohaghegh, M.R. and J.A. Esfahani, 2016. Entropy generation analysis of free convection from a constant temperature vertical plate using similarity solution. Thermal Sci., 20: 1855-1866.
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  35. Laein, R.P., S. Rashidi and J.A. Esfahani, 2016. Experimental investigation of nanofluid free convection over the vertical and horizontal flat plates with uniform heat flux by PIV. Adv. Powder Technol., 27: 312-322.
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  36. Karbasian, H.R., J.A. Esfahani and E. Barati, 2016. The power extraction by flapping foil hydrokinetic turbine in swing arm mode. Renew. Energy, 88: 130-142.
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  37. Karbasian, H.R., J.A. Esfahani and E. Barati, 2016. Effect of acceleration on dynamic stall of airfoil in unsteady operating conditions. Wind Energy, 19: 17-33.
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  38. Darbari, B., S. Rashidi and J.A. Esfahani, 2016. Sensitivity analysis of entropy generation in nanofluid flow inside a channel by response surface methodology. Entropy, Vol. 18. 10.3390/e18020052.
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  39. Bovand, M., S. Rashidi, J.A. Esfahani, S.C. Saha, Y.T. Gu and M. Dehesht, 2016. Control of flow around a circular cylinder wrapped with a porous layer by magnetohydrodynamic. J. Magnet. Magnet. Mater., 401: 1078-1087.
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  40. Bovand, M., S. Rashidi, J.A. Esfahani and R. Masoodi, 2016. Control of wake destructive behavior for different bluff bodies in channel flow by magnetohydrodynamics. Eur. Phys. J. Plus, Vol. 131 10.1140/epjp/i2016-16194-3.
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  41. Bovand, M., S. Rashidi, G. Ahmadi and J.A. Esfahani, 2016. Effects of trap and reflect particle boundary conditions on particle transport and convective heat transfer for duct flow-A two-way coupling of Eulerian-Lagrangian model. Applied Thermal Eng., 108: 368-377.
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  42. Bovand, M., S. Rashidi and J.A. Esfahani, 2016. New design of Ranque-Hilsch vortex tube: Helical multi-intake vortex generator. J. Thermophys. Heat Transfer, 30: 608-613.
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  43. Bovand, M., S. Rashidi and J.A. Esfahani, 2016. Heat transfer enhancement and pressure drop penalty in porous solar heaters: Numerical simulations. Solar Energy, 123: 145-159.
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  44. Amirahmadi, S., S. Rashidi and J.A. Esfahani, 2016. Minimization of exergy losses in a trapezoidal duct with turbulator, roughness and beveled corners. Applied Thermal Eng., 107: 533-543.
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  45. Alinejad, J. and J.A. Esfahani, 2016. Taguchi design of three dimensional simulations for optimization of turbulent mixed convection in a cavity. Meccanica, 52: 925-938.
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  46. Alinejad, J. and J.A. Esfahani, 2016. Numerical stabilization of three-dimensional turbulent natural convection around isothermal cylinder. J. Thermophys. Heat Transfer, 30: 94-102.
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  47. Alinejad, J. and J.A. Esfahani, 2016. Lattice Boltzmann simulation of EGM and solid particle trajectory due to conjugate natural convection. Trasport Phenomena Nano Micro Scales, 4: 36-43.
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  48. Zeynali, I., J.A. Esfahani and H. Moeenfard, 2015. Entropy generation analysis of squeeze film air damping in torsional micromirrors. Optik, 126: 28-37.
  49. Rashidi, S., M. Bovand, J.A. Esfahani, H.F. Oztop and R. Masoodi, 2015. Control of wake structure behind a square cylinder by magnetohydrodynamics. J. Fluids Eng., Vol. 137. 10.1115/1.4029633.
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  50. Rashidi, S., M. Bovand and J.A. Esfahani, 2015. Heat transfer enhancement and pressure drop penalty in porous solar heat exchangers: A sensitivity analysis. Energy Convers. Manage., 103: 726-738.
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  51. Rashidi, S., M. Bovand and J.A. Esfahani, 2015. Structural optimization of nanofluid flow around an equilateral triangular obstacle. Energy, 88: 385-398.
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  52. Rashidi, S. and J.A. Esfahani, 2015. The effect of magnetic field on instabilities of heat transfer from an obstacle in a channel. J. Magnet. Magnet. Mater., 391: 5-11.
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  53. Rahbar, N., J.A. Esfahani and E. Fotouhi-Bafghi, 2015. Estimation of convective heat transfer coefficient and water-productivity in a tubular solar still-CFD simulation and theoretical analysis. Solar Energy, 113: 313-323.
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  54. Norouzi, A. and J.A. Esfahani, 2015. Two relaxation time lattice Boltzmann equation for high Knudsen number flows using wall function approach. Microfluidics Nanofluidics, 18: 323-332.
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  55. Karbasian, H.R., J.A. Esfahani and E. Barati, 2015. Simulation of power extraction from tidal currents by flapping foil hydrokinetic turbines in tandem formation. Renew. Energy, 81: 816-824.
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  56. Feyz, M.E., J.A. Esfahani, I. Pishbin and S.M.R.M. Razavi, 2015. Effect of recess length on the flame parameters and combustion performance of a low swirl burner. Applied Thermal Eng., 89: 609-617.
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  57. Esfahani, J.A., V. Hoseini and E. Barati, 2015. Three-dimensional analytical solution for transport problem during convection drying using Green's function method (GFM). Applied Thermal Eng., 85: 264-277.
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  58. Esfahani, J.A., H.R. Karbasian and E. Barati, 2015. Proposed kinematic model for fish-like swimming with two pitch motions. Ocean Eng., 104: 319-328.
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  59. Esfahani, J.A., E. Barati and H.R. Karbasian, 2015. Fluid structures of flapping airfoil with elliptical motion trajectory. Comput. Fluids, 108: 142-155.
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  60. Bovand, M., S. Rashidi, M. Dehghan, J.A. Esfahani and M.S. Valipour, 2015. Control of wake and vortex shedding behind a porous circular obstacle by exerting an external magnetic field. J. Magnet. Magnet. Mater., 385: 198-206.
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  61. Bovand, M., S. Rashidi, M. Dehesht and J.A. Esfahani, 2015. Effect of fluid-porous interface conditions on steady flow around and through a porous circular cylinder. Int. J. Numer. Methods Heat Fluid Flow, 25: 1658-1681.
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  62. Bovand, M., S. Rashidi and J.A. Esfahani, 2015. Enhancement of heat transfer by nanofluids and orientations of the equilateral triangular obstacle. Energy Convers. Manage., 97: 212-223.
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  63. Mousavi, S.M., J.A. Esfahani and M. Yazdimamaghani, 2014. Numerical study of entropy generation in the flameless oxidation using large eddy simulation model and OpenFOAM software. Int. J. Thermodynamics, 17: 202-208.
  64. Mousavi, S.M. and J.A. Esfahani, 2014. Numerical investigation of the flameless oxidation of natural gas in the IFRF furnace using large eddy simulation. Int. J. Spray Combustion Dynamics, 6: 387-410.
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  65. Mousavi, S.M. and J.A. Esfahani, 2014. Numerical investigation of replaced equations for irreversible otto cycle using pareto-based multi-objective genetic algorithm. J. Mech. Eng., 124: 189-197.
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  66. Moloudi, R. and J.A. Esfahani, 2014. Modeling of gas release following pipeline rupture: Proposing non-dimensional correlation. J. Loss Prev. Process Ind., 32: 207-217.
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  67. Moghadam, E.Y., E. Roohi and J.A. Esfahani, 2014. Heat transfer and fluid characteristics of rarefied flow in thermal cavities. Vacuum, 109: 333-340.
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  68. Feyz, M.E. and J.A. Esfahani, 2014. Exergetic performance of a cylindrical methane-air microcombustor under various inlet conditions. Int. J. Exergy, 15: 257-275.
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  69. Fanaee, S.A. and J.A. Esfahani, 2014. Two-dimensional analytical model of flame characteristic in catalytic micro-combustors for a hydrogen-air mixture. Int. J. Hydrogen Energy, 39: 4600-4610.
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  70. Fanaee, S.A. and J.A. Esfahani, 2014. The analytical modeling of propane-oxygen mixture at catalytic micro-channel. Heat Mass Transfer, 50: 1365-1373.
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  71. Esfahani, J.A., H. Majdi and E. Barati, 2014. Analytical two-dimensional analysis of the transport phenomena occurring during convective drying: Apple slices. J. Food Eng., 123: 87-93.
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  72. Esfahani, J.A., B. Jam, M. Noori and A. Mahmoodi, 2014. Numerical and parametric study of a centrifugal pump. Int. J. Fluid Mech. Mach., 1: 36-40.
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  73. Esfahani, J.A. and S.A. Fanaee, 2014. Analytical modeling of hydrogen-air mixture in a catalytic microchannel. J. Thermophys. Heat Transfer, 29: 274-280.
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  74. Esfahani, J.A. and A. Norouzi, 2014. Two relaxation time lattice Boltzmann model for rarefied gas flows. Phys. A: Stat. Mech. Applic., 393: 51-61.
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  75. Alinejad, J. and J.A. Esfahani, 2014. Lattice Boltzmann simulation of forced convection over an electronic board with multiple obstacles. Heat Transfer Res., 45: 241-262.
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  76. Rahbar, N. and J.A. Esfahani, 2013. Productivity estimation of a single-slope solar still: Theoretical and numerical analysis. Energy, 49: 289-297.
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  77. Parizadlaein, R., J.A. Esfahani and S.P. Laein, 2013. Comparison of theoretical prediction and experimental values of nanofluids thermal conductivity filled by TiO2, SiO2 and Al2O3. Philippine Scientist, 49: 32-37.
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  78. Parizadlaein, R. and J.A. Esfahani, 2013. Experimental study of flow developing in adverse pressure gradient condition of open circuit suction-type wind tunnel by particle image velocimetry. Philippine Scientist, 49: 38-44.
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  79. Esfahani, M.A., H.R. Karbasian, J.A. Esfahani and E. Barati, 2013. Optimization of flapping-wing micro aircrafts based on the kinematic parameters using genetic algorithm method. INCAS Bull., 5: 3-12.
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  80. Esfahani, J.A., S.M.M. Khazeni and S. Mohammadi, 2013. Accuracy analysis of predicted velocity profiles of laminar duct flow with entropy generation method. Applied Math. Mech., 34: 971-985.
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  81. Esfahani, J.A., S.M. Mousavi and M.Y. Mamaghani, 2013. Alternative equations to compute the network and the thermal efficiency of the irreversible diesel cycle using genetic algorithm. Am. J. Mech. Eng., 1: 119-125.
  82. Esfahani, J.A., O. Ejtehadi and E. Roohi, 2013. Second law analysis of micro/nano Couette flow using direct simulation Monte Carlo method. Int. J. Exergy, 13: 320-342.
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  83. Esfahani, J.A., H.R. Karbasian, A.F. Kangarshahi and E. Barati, 2013. Protection of bend from erosion caused by gas-particle flows in Town Border Station. CFD Lett., 5: 185-192.
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  84. Esfahani, J.A., E. Barati and H.R. Karbasian, 2013. Effect of caudal on hydrodynamic performance of flapping foil in fish-like swimming. Applied Ocean Res., 42: 32-42.
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  85. Esfahani, J.A., E. Barati and H.R. Karbasian, 2013. Comparative investigations in the effect of angle of attack profile on hydrodynamic performance of bio-inspired foil. J. Naval Architecture Mar. Eng., 10: 99-108.
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  86. Esfahani, J.A. and J. Alinejad, 2013. Lattice Boltzmann simulation of viscous-fluid flow and conjugate heat transfer in a rectangular cavity with a heated moving wall. Thermophys. Aeromech., 20: 613-620.
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  87. Esfahani, J.A. and J. Alinejad, 2013. Entropy generation DUE to conjugate convection in an enclosure using the Lattice Boltzmann method. J. Thermophys. Heat Transfer, 27: 498-505.
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  88. Esfahani, J.A. and A.R. Vaselbehagh, 2013. A numerical study on shear layer behaviour in flow over a square unit of four cylinders at Reynolds number of 200 using the LB method. Prog. Comput. Fluid Dynamics, 13: 103-119.
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  89. Ejtehadi, O., E. Roohi and J.A. Esfahani, 2013. Detailed investigation of hydrodynamics and thermal behavior of nano/micro shear driven flow using DSMC. Sci. Iranica, 20: 1228-1240.
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  90. Barati, E. and J.A. Esfahani, 2013. A novel approach to evaluate the temperature during drying of food products with negligible external resistance to mass transfer. J. Food Eng., 114: 39-46.
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  91. Rahbar, N. and J.A. Esfahani, 2012. Experimental study of a novel portable solar still by utilizing the heatpipe and thermoelectric module. Desalination, 284: 55-61.
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  92. Rahbar, N. and J.A. Esfahani, 2012. Estimation of convective heat transfer coefficient in a single-slope solar still: A numerical study. Desalination Water Treat., 50: 387-396.
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  93. Fanaee, A. and J.A. Esfahani, 2012. The normalized analysis of a surface heterogeneous reaction of a propane/air mixture into a micro-channel. Chinese Phys. Lett., Vol. 29. 10.1088/0256-307X/29/12/124702.
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  94. Esfahani, J.A. and S. Kouhi-Fayegh, 2012. Laminar film condensation on a nanosphere. J. Nanotechnol. Eng. Med., Vol. 3. 10.1115/1.4005673.
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  95. Esfahani, J.A. and M. Modirkhazeni, 2012. Entropy generation of forced convection film condensation on a horizontal elliptical tube. Comptes Rendus Mecanique, 340: 543-551.
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  96. Esfahani, J.A. and H.R. Karbasian, 2012. Optimizing the shape of rotor blades for maximum power extraction in marine current turbines. Int. J. Automotive Mech. Eng., 6: 723-730.
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  97. Esfahani, J.A. and B. Bagherian, 2012. Similarity solution for unsteady free convection from a vertical plate at constant temperature to power law fluids. J. Heat Transfer, Vol. 134. 10.1115/1.4005750.
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  98. Esfahani, J.A. and A. Vasel-Be-Hagh, 2012. LB simulation of heat transfer in flow past a square unit of four isothermal cylinders. Comptes Rendus Mecanique, 340: 526-535.
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  99. Ejtehadi, O., E. Roohi and J.A. Esfahani, 2012. Investigation of basic molecular gas structural effects on hydrodynamics and thermal behaviors of rarefied shear driven micro/nano flow using DSMC. Int. Commun. Heat Mass Transfer, 39: 439-448.
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  100. Barati, E. and J.A. Esfahani, 2012. Mathematical simulation of convective drying: Spatially distributed temperature and moisture in carrot slab. Int. J. Thermal Sci., 56: 86-94.
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  101. Mohammadiun, M., J.A. Esfahani, O. Mahian and H. Mohammadiun, 2011. A numerical solution to modify the inverse heat conduction problem with noisy data during the heating a solid bar. Eur. J. Scient. Res., 57: 391-400.
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  102. Fanaee, A. and J.A. Esfahani, 2011. The investigation of semi-three-dimensional heat transfer modeling in microcombustors. J. Thermal Sci. Eng. Applic., Vol. 3. 10.1115/1.4003660.
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  103. Esfahani, J.A., N. Rahbar and M. Lavvaf, 2011. Utilization of thermoelectric cooling in a portable active solar still-an experimental study on winter days. Desalination, 269: 198-205.
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  104. Esfahani, J.A. and V. Bordbar, 2011. Double diffusive natural convection heat transfer enhancement in a square enclosure using nanofluids. J. Nanotechnol. Eng. Med., Vol. 2. 10.1115/1.4003794.
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  105. Barati, E. and J.A. Esfahani, 2011. Mathematical modeling of convective drying: Lumped temperature and spatially distributed moisture in slab. Energy, 36: 2294-2301.
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  106. Barati, E. and J.A. Esfahani, 2011. A new solution approach for simultaneous heat and mass transfer during convective drying of mango. J. Food Eng., 102: 302-309.
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  107. Esfahani, J.A. and P.B. Shahabi, 2010. Effect of non-uniform heating on entropy generation for the laminar developing pipe flow of a high Prandtl number fluid. Energy Convers. Manage., 51: 2087-2097.
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  108. Esfahani, J.A. and M. Malek-Jafarian, 2010. Heat transfer in open microchannel at constant heat flux. Int. Rev. Mech. Eng., 4: 150-158.
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  109. Teymourtash, A.R., J.A.Esfahani and S.A.M. Shaegh, 2009. The effects of rate of expansion and injection of water droplets on the entropy generation of nucleating steam flow in a Laval nozzle. Heat Mass Transfer, 45: 1185-1198.
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  110. Mamourian, M., J.A. Esfahani and M.B. Ayani, 2009. Experimental investigation of the effect of the solid fuel dimensions on the downward flame spread. Kuwait J. Sci. Eng., 36: 183-200.
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  111. Mamourian, M., J.A. Esfahani and M.B. Ayani, 2009. Experimental and scale up study of the flame spread over the PMMA sheets. Thermal Sci., 13: 79-88.
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  112. Esfahani, J.A. and S.K.F. Dehkordi, 2009. Entropy generation analysis in error estimation of an approximate solution: A constant surface temperature semi-infinite conductive problem. Thermal Sci., 13: 133-140.
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  113. Esfahani, J.A. and S. Koohi-Fayegh, 2009. Film condensation on a flat plate with assisted interfacial shear stress. Int. Rev. Chem. Eng., 1: 263-271.
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  114. Kashani, A. and J.A. Esfahani, 2008. Interactive effect of oxygen diffusion and volatiles advection on transient thermal degradation of Poly Methyl Methacrylate (PMMA). Heat Mass Transfer, 44: 641-650.
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  115. Farhadinia, B., M.H. Farahi and J.A. Esfahani, 2008. Shape optimization of a nozzle with specified flow field including viscosity effect. Acta Applic. Math., 104: 243-256.
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  116. Zehtabeyazdi, A., S.M. Zebarjad, S.A. Sajjadi and J.A. Esfahani, 2007. On the sensitivity of dimensional stability of high density polyethylene on heating rate. Express Polymer Lett., 1: 92-97.
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  117. Mehne, H.H., M.H. Farahi and J.A. Esfahani, 2007. On an optimal shape design problem to control a thermoelastic deformation under a prescribed thermal treatment. Applied Math. Model., 31: 663-675.
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  118. Esfahani, J.A. and A.G. Abdolabadi, 2007. Effect of char layer on transient thermal oxidative degradation of polyethylene. Thermal Sci., 11: 23-36.
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  119. Ayani, M.B., J.A. Esfahani and A.C.M. Sousa, 2007. The effect of surface regression on the downward flame spread over a solid fuel in a quiescent ambient. Thermal Sci., 11: 67-86.
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  120. Esfahani, J.A. and A. Kashani, 2006. One-dimensional numerical model for degradation and combustion of polymethyl methacrylate. Heat Mass Transfer, 42: 569-576.
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  121. Ayani, M.B., J.A. Esfahani and R. Mehrabian, 2006. Downward flame spread over PMMA sheets in quiescent air: Experimental and theoretical studies. Fire Saf. J., 41: 164-169.
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  122. Ayani, M.B., J.A. Esfahani and A.C. Sousa, 2006. The effect of radiation on the laminar natural convection induced by a line heat source. Int. J. Numer. Methods Heat Fluid Flow, 16: 28-45.
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  123. Mehne, H.H., M.H. Farahi and J.A. Esfahani, 2005. Slot nozzle design with specified pressure in a given subregion by using embedding method. Applied Math. Comput., 168: 1258-1272.
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  124. Esfahani, J.A., M.B. Ayani and M.B. Shirin, 2005. A transient two-dimensional model of thermal and oxidative degradation of PMMA. Iran. J. Sci. Technol. Trans. B Eng., 29: 207-218.
  125. Esfahani, J.A. and M. Ziaeirad, 2005. Analysis of laminar film condensation on a vertical plate. J. Aerospace Sci. Technol., 2: 37-42.
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  126. Esfahani, J A. and J.M. Malek, 2005. Entropy generation analysis of a flat plate boundary layer with various solution methods. Sci. Iranica, 12: 233-240 Sci. Iranica, 12: 233-240.
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  127. Ayani, M.B., J.A. Esfahani, H. Niazmand and A.C.M. Sousa, 2005. Transient laminar convection induced by a line heat source a numerical study with primitive variables. Sci. Iranica, 12: 247-254.
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  128. Motlagh, O.R., J.A. Esfahani and Z.A. Nejad, 2004. Existence of turbulent behavior for non-chaotic two dimensional jets. J. Math. Anal. Applic., 293: 329-344.
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  129. Esfahani, J.A. and A.C. Sousa, 1999. Ignition of epoxy by a high radiation source. A numerical study. Int. J. Thermal Sci., 38: 315-323.
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