All Stories

  1. Heat and mass transfer analysis of thermally radiative nano-encapsulated phase change materials inside a porous cavity with exothermic chemical reaction
  2. Unsteady entropy generation in nanofluid flow inside a square cavity with chemical reaction, radiation and Cattaneo–Christov heat flux
  3. Modified Fourier heat flux impact on heat transfer of magnetic nano-encapsulated phase change materials inside a chamber with microorganisms
  4. Heat Transfer Investigation of Nano‐Encapsulated Phase Change Materials (NEPCMs) in a Thermal Energy Storage Device With Heat Source
  5. Entropy generation analysis of radiative nanofluid flow inside a permeable chamber with heat generating source
  6. Heat transfer investigation of thermally radiative Nano – Encapsulated Phase Change Materials (NEPCMs) in a thermal energy storage device with heat source and microorganisms
  7. Impact of activation energy on heat transfer of thermally radiative nano-encapsulated phase change materials within a porous cavity with microorganisms
  8. Ternary magnetic nanofluid heat transfer analysis inside a closed chamber with thermal radiation
  9. Heat and mass transport features in latent heat thermal energy storage device filled with porous media and nano-encapsulated phase change materials
  10. Flow and heat transfer of thermally and chemically radiative Nano-Encapsulated Phase Change Materials (NEPCMs) inside a permeable latent heat thermal energy storage device
  11. Thermal radiation and Cattaneo–Christov heat flux effect on heat transfer inside a porous square enclosure by using LTNE model
  12. Hybrid nanofluid mass and heat transport characteristics over a swirling cylinder with modified Fourier heat flux and gyrotactic microorganisms
  13. Thermally radiative Nano – encapsulated phase change materials heat transport proficiencies in latent heat thermal energy storage device filled with permeable media and microorganisms
  14. ENTROPY AND HEAT-TRANSFER ANALYSIS OF MAGNETIC HYBRID NANOFLUID INSIDE A POROUS SQUARE CAVITY WITH THERMAL RADIATION
  15. Heat transfer analysis of ternary magnetic nanofluid flow inside a square cavity with thermal radiation
  16. Brownian motion and thermophoresis impact on heat and mass transfer analysis of thermally radiative magnetic nanofluid flow inside a cavity with gyrotactic microorganisms
  17. Thermally radiative nanofluid heat transfer analysis inside a closed chamber with gyrotactic microorganisms
  18. Heat transfer investigation of nano – Encapsulated phase change materials (NEPCMs) in a thermal energy storage device
  19. Comparative Study of Convective Oldroyd-B Nanofluid and Hybrid Nanofluid Flow, Heat and Mass Transfer Analysis Over Stretching Sheet with Cattaneo-Christov Heat Flux Model
  20. Enhanced entropy generation and heat transfer characteristics of magnetic nano-encapsulated phase change materials in latent heat thermal energy storage systems
  21. Unsteady gyrotactic microorganisms and magnetic nanofluid heat and mass transfer analysis inside a chamber with thermal radiation
  22. Thermal radiation impact on heat and mass transfer analysis of nanofluids inside a cavity with gyrotactic microorganisms
  23. Heat and Mass Transfer Analysis of Single Walled Carbon Nanotubes-Water and Multi Wall Carbon Nanotubes-Water Based Maxwell Nanofluid Flow Over Stretchable Rotating Disks
  24. Non-Newtonian Electrically Conducting Nano Fluid Heat and Mass Transfer Analysis Over a Vertical Cone with Convective Boundary Condition
  25. Hybrid Nanofluid Heat and Mass Transfer Characteristics Over a Stretching/Shrinking Sheet with Slip Effects
  26. MHD CONVECTIVE FLOW OF SWCNTS-WATER AND MWCNTS-WATER NANOFLUID OVER A VERTICAL CONE WITH THERMAL RADIATION AND CHEMICAL REACTION
  27. Brownian motion and thermophoresis effect on heat and mass transfer of the Reiner–Rivlin nanofluid flow over a rotating disk with thermal radiation
  28. Silver–ethylene glycol and copper–ethylene glycol based thermally radiative nanofluid characteristics between two rotating stretchable disks with modified Fourier heat flux
  29. Entropy generation and heat transfer analysis of magnetic nanofluid flow inside a square cavity filled with carbon nanotubes
  30. Impact of the Cattaneo–Christov heat flux on heat and mass transfer analysis of a hybrid nanofluid flow over a vertical cone
  31. Impact of modified Fourier’s heat flux on the heat transfer of MgO/Fe3O4–Eg-based hybrid nanofluid flow inside a square chamber
  32. Effect of magnetic field and thermal radiation on natural convection in a square cavity filled with TiO2 nanoparticles using Tiwari-Das nanofluid model
  33. Effect of thermal radiation on heat transfer and entropy generation analysis of MHD hybrid nanofluid inside a square cavity
  34. Maxwell nanofluid heat and mass transfer analysis over a stretching sheet
  35. Effect of Cattaneo – Christov heat flux on heat and mass transfer characteristics of Maxwell hybrid nanofluid flow over stretching/shrinking sheet
  36. Williamson hybrid nanofluid flow over swirling cylinder with Cattaneo–Christov heat flux and gyrotactic microorganism
  37. Buongiorno's model nanofluid natural convection inside a square cavity with thermal radiation
  38. Entropy generation and heat transfer analysis of alumina and carbon nanotubes based hybrid nanofluid inside a cavity
  39. Effect of magnetic field and radiation on heat transfer analysis of nanofluid inside a square cavity filled with silver nanoparticles: Tiwari–Das model
  40. Heat and mass transfer analysis of nanofluid flow over swirling cylinder with Cattaneo–Christov heat flux
  41. Flow and heat transfer analysis of carbon nanotubes based nanofluid flow inside a cavity with modified Fourier heat flux
  42. Effect of thermal radiation and volume fraction on carbon nanotubes based nanofluid flow inside a square chamber
  43. Effect of zero mass flux condition on heat and mass transfer analysis of nanofluid flow inside a cavity with magnetic field
  44. Entropy generation and heat transfer analysis of magnetic hybrid nanofluid inside a square cavity with thermal radiation
  45. Impact of heat generation/absorption on heat and mass transfer of nanofluid over rotating disk filled with carbon nanotubes
  46. Impact of Convective Boundary Condition on Heat and Mass Transfer of Nanofluid Flow Over a Thin Needle Filled with Carbon Nanotubes
  47. Heat and mass transfer characteristics of radiative hybrid nanofluid flow over a stretching sheet with chemical reaction
  48. Heat and mass transfer analysis of MWCNT‐kerosene nanofluid flow over a wedge with thermal radiation
  49. Maxwell hybrid nanoliquid flow over vertical cone with Cattaneo - Christov heat flux and convective boundary condition
  50. MHD boundary layer heat and mass transfer flow of nanofluid through porous media over inclined plate with chemical reaction
  51. A comparative analysis of unsteady and steady Buongiorno's Williamson nanoliquid flow over a wedge with slip effects
  52. Heat and mass transfer analysis of unsteady hybrid nanofluid flow over a stretching sheet with thermal radiation
  53. Impact of homogeneous–heterogeneous reactions on heat and mass transfer flow of Au–Eg and Ag–Eg Maxwell nanofluid past a horizontal stretched cylinder
  54. Impact of slip effects on unsteady Sisko nanoliquid heat and mass transfer characteristics over stretching sheet filled with gold nanoparticles
  55. Impact of chemical reaction and double stratification on heat and mass transfer characteristics of nanofluid flow over porous stretching sheet with thermal radiation
  56. COMBINED INFLUENCE OF BROWNIAN MOTION AND THERMOPHORESIS ON MAXWELL THREE-DIMENSIONAL NANOFLUID FLOW OVER STRETCHING SHEET WITH CHEMICAL REACTION AND THERMAL RADIATION
  57. Effect of SWCNTs and MWCNTs Maxwell MHD nanofluid flow between two stretchable rotating disks under convective boundary conditions
  58. A comparative study of Al2O3 and TiO2 nanofluid flow over a wedge with non-linear thermal radiation
  59. Carreau nanofluid heat and mass transfer flow through wedge with slip conditions and nonlinear thermal radiation
  60. Three-Dimensional Heat and Mass Transfer Flow Over a Stretching Sheet Filled with Al2O3-Water Based Nanofluid with Heat Generation/Absorption
  61. HEAT AND MASS TRANSFER ANALYSIS OF STEADY AND UNSTEADY NANOFLUID FLOW OVER A STRETCHING SHEET WITH DOUBLE STRATIFICATION
  62. Heat and mass transfer characteristics of nanofluid over horizontal circular cylinder
  63. Magnetohydrodynamic (MHD) boundary layer heat and mass transfer characteristics of nanofluid over a vertical cone under convective boundary condition
  64. Heat and mass transfer enhancement of SWCNTs and MWCNTs based Maxwell nanofluid flow over a vertical cone with slip effects
  65. Flow and heat transfer analysis of carbon nanotubes-based Maxwell nanofluid flow driven by rotating stretchable disks with thermal radiation
  66. MHD boundary layer flow of SWCNT-water and MWCNT-water nanofluid over a vertical cone with heat generation/absorption
  67. Influence of magnetic field and thermal radiation on convective flow of SWCNTs-water and MWCNTs-water nanofluid between rotating stretchable disks with convective boundary conditions
  68. Heat and mass transfer characteristics of MHD three-dimensional flow over a stretching sheet filled with water-based alumina nanofluid
  69. HEAT AND MASS TRANSFER BOUNDARY-LAYER FLOW OVER A VERTICAL CONE THROUGH POROUS MEDIA FILLED WITH A Cu–WATER AND Ag–WATER NANOFLUID
  70. Magneto-hydrodynamics heat and mass transfer analysis of single and multi-wall carbon nanotubes over vertical cone with convective boundary condition
  71. MHD Boundary Layer Heat and Mass Transfer Flow Over a Vertical Cone Embedded in Porous Media Filled with Al2O3-Water and Cu-Water Nanofluid
  72. Effect of Brownian Motion and Thermophoresis on Heat and Mass Transfer Flow Over a Horizontal Circular Cylinder Filled with Nanofluid
  73. Heat and Mass Transfer Flow Over a Vertical Cone Through Nanofluid Saturated Porous Medium Under Convective Boundary Condition Suction/Injection
  74. Heat and mass transfer analysis of nanofluid over linear and non-linear stretching surfaces with thermal radiation and chemical reaction
  75. MHD heat and mass transfer flow of a nanofluid over an inclined vertical porous plate with radiation and heat generation/absorption
  76. MHD boundary layer flow, heat and mass transfer analysis over a rotating disk through porous medium saturated by Cu-water and Ag-water nanofluid with chemical reaction
  77. Heat and mass transfer analysis in natural convection flow of nanofluid over a vertical cone with chemical reaction
  78. Comparison of nanofluid heat transfer properties with theory using generalized property relations for EG-water mixture
  79. HEAT AND MASS TRANSFER CHARACTERISTICS OF Al2O3-WATER AND Ag-WATER NANOFLUID THROUGH POROUS MEDIA OVER A VERTICAL CONE WITH HEAT GENERATION/ABSORPTION
  80. MHD NATURAL CONVECTION BOUNDARY LAYER FLOW OF NANOFLUID OVER A VERTICAL CONE WITH CHEMICAL REACTION AND SUCTION/INJECTION
  81. THERMODIFFUSION AND DIFFUSION - THERMO EFFECTS ON MHD HEAT AND MASS TRANSFER OF MICROPOLAR FLUID OVER A STRETCHING SHEET
  82. Heat and Mass Transfer Flow of a Nanofluid over an Inclined Plate under Enhanced Boundary Conditions with Magnetic Field and Thermal Radiation
  83. Soret and Dufour Effects on Unsteady MHD Heat and Mass Transfer from a Permeable Stretching Sheet with Thermophoresis and Non-Uniform Heat Generation/Absorption
  84. Soret and Dufour effects on MHD convective flow of Al 2 O 3 –water and TiO 2 –water nanofluids past a stretching sheet in porous media with heat generation/absorption
  85. Soret and Dufour effects on MHD heat and mass transfer flow of a micropolar fluid with thermophoresis particle deposition
  86. Influence of size, shape, type of nanoparticles, type and temperature of the base fluid on natural convection MHD of nanofluids
  87. MHD Natural Convection Heat and Mass Transfer of Al2O3-Water and Ag-Water Nanofluids over a Vertical Cone with Chemical Reaction