All Stories

  1. Optimization of MWCNTs (10%) – Al2O3 (90%)/5W50 nanofluid viscosity using experimental data and artificial neural network
  2. A novel experimental investigation on the effect of nanoparticles composition on the rheological behavior of nano-hybrids
  3. Modeling and prediction of rheological behavior of Al2O3-MWCNT/5W50 hybrid nano-lubricant by artificial neural network using experimental data
  4. Using artificial neural network for investigating of concurrent effects of multi-walled carbon nanotubes and alumina nanoparticles on the viscosity of 10W-40 engine oil
  5. Experimental study for developing an accurate model to predict viscosity of CuO–ethylene glycol nanofluid using genetic algorithm based neural network
  6. Optimization of thermophysical properties of Al2O3/water-EG (80:20) nanofluids by NSGA-II
  7. Rheological behavior characteristics of ZrO 2 -MWCNT/10w40 hybrid nano-lubricant affected by temperature, concentration, and shear rate: An experimental study and a neural network simulating
  8. Prediction and optimization of thermophysical properties of stabilized Al 2 O 3 /antifreeze nanofluids using response surface methodology
  9. A study on rheological characteristics of hybrid nano-lubricants containing MWCNT-TiO2 nanoparticles
  10. An experimental determination and accurate prediction of dynamic viscosity of MWCNT(%40)-SiO2(%60)/5W50 nano-lubricant
  11. Design of a heat exchanger working with organic nanofluids using multi-objective particle swarm optimization algorithm and response surface method
  12. A novel study on rheological behavior of ZnO-MWCNT/10w40 nanofluid for automotive engines
  13. Convective heat transfer and pressure drop of aqua based TiO 2 nanofluids at different diameters of nanoparticles: Data analysis and modeling with artificial neural network
  14. Experimental evaluation, new correlation proposing and ANN modeling of thermal properties of EG based hybrid nanofluid containing ZnO-DWCNT nanoparticles for internal combustion engines applications
  15. Development of a New Correlation and Post Processing of Heat Transfer Coefficient and Pressure Drop of Functionalized COOH MWCNT Nanofluid by Artificial Neural Network
  16. A comparison of performance of several artificial intelligence methods for predicting the dynamic viscosity of TiO2/SAE 50 nano-lubricant
  17. Investigation of rheological behavior of hybrid oil based nanolubricant-coolant applied in car engines and cooling equipments
  18. Price-performance evaluation of thermal conductivity enhancement of nanofluids with different particle sizes
  19. Experimental and theoretical investigation of thermal conductivity of ethylene glycol containing functionalized single walled carbon nanotubes
  20. Experimental investigation and model development of the non-Newtonian behavior of CuO-MWCNT-10w40 hybrid nano-lubricant for lubrication purposes
  21. Pareto Optimal Design of Thermal Conductivity and Viscosity of NDCo3O4 Nanofluids by MOPSO and NSGA II Using Response Surface Methodology
  22. Prediction of rheological behavior of MWCNTs–SiO2/EG–water non-Newtonian hybrid nanofluid by designing new correlations and optimal artificial neural networks
  23. Application of three-level general factorial design approach for thermal conductivity of MgO/water nanofluids
  24. ANN modeling, cost performance and sensitivity analyzing of thermal conductivity of DWCNT–SiO2/EG hybrid nanofluid for higher heat transfer
  25. Designing a neural network for predicting the heat transfer and pressure drop characteristics of Ag/water nanofluids in a heat exchanger
  26. Estimation of Heat Transfer Coefficient and Thermal Performance Factor of TiO2-water Nanofluid Using Different Thermal Conductivity Models
  27. Prediction of rheological behavior of SiO2-MWCNTs/10W40 hybrid nanolubricant by designing neural network
  28. Corrigendum to “Optimization, modeling and accurate prediction of thermal conductivity and dynamic viscosity of stabilized ethylene glycol and water mixture Al2O3 nanofluids by NSGA-II using ANN” [Int. Commun. Heat Mass Transfer 82 (2017) 154–160]
  29. Empirical study and model development of thermal conductivity improvement and assessment of cost and sensitivity of EG-water based SWCNT-ZnO (30%:70%) hybrid nanofluid
  30. Experimental evaluation, sensitivity analyzation and ANN modeling of thermal conductivity of ZnO-MWCNT/EG-water hybrid nanofluid for engineering applications
  31. Multi-objective optimization of nanofluid flow in double tube heat exchangers for applications in energy systems
  32. Rheological behavior characteristics of TiO2-MWCNT/10w40 hybrid nano-oil affected by temperature, concentration and shear rate: An experimental study and a neural network simulating
  33. Modeling of thermal conductivity of MWCNT-SiO2 (30:70%)/EG hybrid nanofluid, sensitivity analyzing and cost performance for industrial applications
  34. Experimental investigation of switchable behavior of CuO-MWCNT (85%–15%)/10W-40 hybrid nano-lubricants for applications in internal combustion engines
  35. Investigation of rheological behavior of MWCNT (COOH-functionalized)/MgO - Engine oil hybrid nanofluids and modelling the results with artificial neural networks
  36. An Inspection of Viscosity Models for Numerical Simulation of Natural Convection of Al2O3-Water Nanofluid with Variable Properties
  37. Evaluation of rheological behavior of 10W40 lubricant containing hybrid nano-material by measuring dynamic viscosity
  38. Rheological characteristics of MgO/oil nanolubricants: Experimental study and neural network modeling
  39. Numerical Study of Mixed Convection Inside a Γ-Shaped Cavity with Mg(OH2)-EG Nanofluids
  40. Thermal conductivity and viscosity optimization of nanodiamond-Co 3 O 4 /EG (40:60) aqueous nanofluid using NSGA-II coupled with RSM
  41. An experimental evaluation of the effect of ZnO nanoparticles on the rheological behavior of engine oil
  42. Effects of functionalized single walled carbon nanotubes on thermal performance of antifreeze: An experimental study on thermal conductivity
  43. Experimental investigation, model development and sensitivity analysis of rheological behavior of ZnO/10W40 nano-lubricants for automotive applications
  44. Mixed Convection Flow and Heat Transfer in an Up-Driven, Inclined, Square Enclosure Subjected to DWCNT-Water Nanofluid Containing Three Circular Heat Sources
  45. Prediction of Thermal Conductivity of Carbon Nanotube-EG Nanofluid Using Experimental Data by ANN
  46. An inspection of thermal conductivity of CuO-SWCNTs hybrid nanofluid versus temperature and concentration using experimental data, ANN modeling and new correlation
  47. Non-Newtonian power-law behavior of TiO 2 /SAE 50 nano-lubricant: An experimental report and new correlation
  48. The Investigation of Effects of Temperature and Nanoparticles Volume Fraction on the Viscosity of Copper Oxide-ethylene Glycol Nanofluids
  49. Thermal Conductivity Modeling of Aqueous CuO Nanofluids by Adaptive Neuro-Fuzzy Inference System (ANFIS) Using Experimental Data
  50. Experimental investigation on non-Newtonian behavior of Al 2 O 3 -MWCNT/5W50 hybrid nano-lubricant affected by alterations of temperature, concentration and shear rate for engine applications
  51. Optimization, modeling and accurate prediction of thermal conductivity and dynamic viscosity of stabilized ethylene glycol and water mixture Al 2 O 3 nanofluids by NSGA-II using ANN
  52. Predicting the effects of magnesium oxide nanoparticles and temperature on the thermal conductivity of water using artificial neural network and experimental data
  53. Three dimensional simulation of natural convection and entropy generation in an air and MWCNT/water nanofluid filled cuboid as two immiscible fluids with emphasis on the nanofluid height ratio's effects
  54. Multi-objective optimization of cost and thermal performance of double walled carbon nanotubes/water nanofluids by NSGA-II using response surface method
  55. Natural convection in T-shaped cavities filled with water-based suspensions of COOH-functionalized multi walled carbon nanotubes
  56. Numerical study of laminar-forced convection of Al2O3-water nanofluids between two parallel plates
  57. Estimation of thermal conductivity of ethylene glycol-based nanofluid with hybrid suspensions of SWCNT–Al2O3 nanoparticles by correlation and ANN methods using experimental data
  58. An applicable study on the thermal conductivity of SWCNT-MgO hybrid nanofluid and price-performance analysis for energy management
  59. Examination of rheological behavior of MWCNTs/ZnO-SAE40 hybrid nano-lubricants under various temperatures and solid volume fractions
  60. Thermal conductivity enhancement of SiO2–MWCNT (85:15 %)–EG hybrid nanofluids
  61. Designing an artificial neural network using radial basis function (RBF-ANN) to model thermal conductivity of ethylene glycol–water-based TiO2 nanofluids
  62. An experimental study on viscosity of alumina-engine oil: Effects of temperature and nanoparticles concentration
  63. Effects of temperature and concentration on rheological behavior of MWCNTs/SiO 2 (20–80)-SAE40 hybrid nano-lubricant
  64. Estimation of thermal conductivity of CNTs-water in low temperature by artificial neural network and correlation
  65. Designing an artificial neural network to predict dynamic viscosity of aqueous nanofluid of TiO2 using experimental data
  66. Designing artificial neural network on thermal conductivity of Al2O3–water–EG (60–40 %) nanofluid using experimental data
  67. An experimental study on thermophysical properties and heat transfer characteristics of low volume concentrations of Ag-water nanofluid
  68. Estimation of thermal conductivity of Al2O3/water (40%)–ethylene glycol (60%) by artificial neural network and correlation using experimental data
  69. Erratum to: Study on thermal conductivity of water-based nanofluids with hybrid suspensions of CNTs/Al2O3 nanoparticles
  70. An experimental study on thermal conductivity of MgO nanoparticles suspended in a binary mixture of water and ethylene glycol
  71. An experimental study on the effect of diameter on thermal conductivity and dynamic viscosity of Fe/water nanofluids