Editor Profile

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Dr. Saeed Zeinali Heris, Ph.D.

Professor

2022 - Present

Xi’an University of Science and Technology

Shaanxi

China

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Dr. Saeed Zeinali Heris is a Professor, School of Safety Science and Engineering, Xi’an University of Science and Technology, Xi 'an, Shaanxi China (2022-Present). He is professor in the University of Tabriz. He was associate professor in the Ferdowsi university of Mashhad. Top 1% active scientist in Engineering 2016~2022 based on ISC reports.  Completed 10 research projects for Iran Natural Gas Company. He worked on heat transfer performance of nanofluid as Ph.D. thesis.  He has published, 1 book, 2 book chapter and more than 250 articles in well-recognized journals and proceedings. Editorial board member of 7 scientific journal. Has supervised 10 Ph.D. and more than 45 M.S. students. Head of the Faculty of Chemical and Petroleum Engineering in University of Tabriz for 4 years. Vice-Chancellor Faculty of Chemical and Petroleum Engineering University of Tabriz for 1 year. Reviewer in more than 200 international journals.h-index of 56 and more than 9800 citations (March 2021, Google Scholar). Publishing in Journal of “Nano Energy” with an impact factor of 17.6, “ RENEWABLE& SUSTAINABLE ENERGY REVIEWS”  with an impact factor of  15.9 and other top journals.

  • Thermodynamics
  • Engineering
  • Chemistry
  • Mechanics
  • Energy & Fuels
  • Journal of Thermal Analysis and Calorimetry ,Experimental investigation of thermophysical properties of synthesized Mg–Al bimetal oxide/water nanofluid, 2024, Accepted, https://doi.org/10.1007/s10973-024-13006-w
  • ACS, Omega, Heat Transfer Enhancement in Industrial Heat Exchangers Using Graphene Oxide Nanofluids, 2024, Vol 9, pp. 24025−24038, https://doi.org/10.1021/acsomega.4c02581
  • International Communications in Heat and Mass Transfer, High-temperature lubricity and physicochemical behaviors of synthesized Cu/TiO2/MnO2-doped GO nanocomposite in high-viscosity index synthetic biodegradable PAO oil, 2024, Vol. 156, 107642, https://doi.org/10.1016/j.icheatmasstransfer.2024.107642
  • Process Safety and Environmental Protection, Effects on environmental conditions and limiting parameters for spontaneous combustion of residual coal in underground goaf, 2024, Vol. 187, pp.1378–1389, https://doi.org/10.1016/j.psep.2024.05.081
  • Chemosphere, Recent remediation strategies for flame retardancy via nanoparticles, 2024, Vol. 354 , pp. 141323, https://doi.org/10.1016/j.chemosphere.2024.141323
  • Heliyon, Effects of chitosan and TiO2 nanoparticles on the antibacterial property and ability to self-healing of cracks and retrieve mechanical characteristics of dental composites, 2024, Vol. 10, e27734, https://doi.org/10.1016/j.heliyon.2024.e27734
  • The Canadian Journal of Chemical Engineering, Optimizing Nanofluid Additives for Enhanced Thermophysical Properties in Anionic Crude Oil for EOR Applications, 2024, Accepted, DOI: 10.1002/cjce.25208
  • Fuel, Pyrolysis and combustion characteristics of typical sealing materials for exterior building windows, 2024, Vol. 360, pp. 130546, https://doi.org/10.1016/j.fuel.2023.130546
  • Journal of Molecular Liquids, Thermal performance of novel ZnFe2O4 and TiO2-doped MWCNT nanocomposites in transformer oil, 2024, Vol. 394, pp. 123727, https://doi.org/10.1016/j.molliq.2023.123727
  • Case Studies in Thermal Engineering, Thermophysical characteristics and forced convective heat transfer of ternary doped magnetic nanofluids in a circular tube: An experimental study, 2023, Vol. 52, 103748, https://doi.org/10.1016/j.csite.2023.103748
  • Scientific Reports, The Influence of Nano Filter Elements on Pressure Drop and Pollutant Elimination Efficiency in Town Border Stations, 2023, Vol. 13, Article number: 18793, https://doi.org/10.1038/s41598-023-46129-5
  • Surfaces and Interfaces, An experimental study of the influence of Fe3O4, MWCNT-Fe3O4, and Fe3O4@MWCNT nanoparticles on the thermophysical characteristics and laminar convective heat transfer of nanofluids: A comparative study, 2023, Vol. 43, Part B, December 2023, 103506, https://doi.org/10.1016/j.surfin.2023.103506
  • Energy Conversion and Management, Design, thermodynamic and economic evaluation, and optimization of gasoline production from refinery furnaces flue gas, 2023, pp. 117492, Vol. 293 , https://doi.org/10.1016/j.enconman.2023.117492
  • Journal of Thermal Analysis and Calorimetry, A comprehensive review computational fluid dynamicssimulation studies in phase change materials: applications, materials, and geometries, 2023, Vol. 148, pp. 10595–10644, https://doi.org/10.1007/s10973-023-12438-0
  • Solar Energy, Comprehensive thermoeconomic study of a new solar thermosyphon-assisted multigeneration system, 2023, pp. 304-318, Vol. 258.
  • Journal of Photochemistry & Photobiology, A: Chemistry, Preparation and characterizations of TiO2/ZnO nanohybrid and its application in photocatalytic degradation of tetracycline in wastewater, 2023, Vol. 443, No..114893, https://doi.org/10.1016/j.jphotochem.2023.114893
  • Energy Conversion and Management, Energy, exergy, exergoeconomic, and exergoenvironmental (4E) analysis of a new bio-waste driven multigeneration system for power, heating, hydrogen, and freshwater production: modeling and a case study in Izmir, 2023, pp. 117130, Vol. 288.
  • Scientific Reports, UV-shielding properties of a cost-effective hybrid PMMA-based thin film coatings using TiO2 and ZnO nanoparticles: a comprehensive evaluation, 2023, 13, 7116 (2023). https://doi.org/10.1038/s41598-023-34120-z
  • Case Studies in Thermal Engineering, Experimental investigation of indirect heat transfer through a novel designed lab-scale setup using functionalized MWCNTs nanofluids (MWCNTs-COOH/water and MWCNTs- OH/water), 2023 , Vol. 45, pp. 102951, https://doi.org/10.1016/j.csite.2023.102951
  • Journal of Thermal Engineering, Experimental study on heat transfer from rectangular fins in combined convection, 2023, Vol. 9, No. 6, pp. 1632−1642, November, 2023
  • Biomass Conversion and Biorefinery, Highly efficient treatment of petrochemical spent caustic effluent via electro‑Fenton process for COD and TOC removal: optimization and experimental, 2023, https://doi.org/10.1007/s13399-023-03772-2
  • International Journal of Energy Research, Experimental Investigation of the Effect of Graphene/Water Nanofluid on the Heat Transfer of a Shell-and-Tube Heat Exchanger, 2023, Volume 2023, Article ID 3477673, 16 pages, https://doi.org/10.1155/2023/3477673
  • The Canadian Journal of Chemical Engineering, The effect of heat transfer characteristics of macromolecule fouling on heat exchanger surface: A dynamic simulation study, 2023, pp 5802-5817, Vol.101, Iss. 10, DOI: 10.1002/cjce.24832
  • Case Studies in Thermal Engineering, The effect of TiO2 doped multi-walled carbon nanotubes synthesis on the thermophysical and heat transfer properties of transformer oil: A comprehensive experimental study, 2023, pp 102607 Vol.41.
  • Materials Today Chemistry, Development of a novel self-healing dental nanocomposite containing PUF nanocapsules and nanoclay, 2023, pp. 101302, Vol. 27.
  • Chemistry Select, The Synergistic Effect of Intumescent Fire-Resistive Paint Containing TiO2 Nanoparticles and Chlorinated Paraffin onto Atmospheric-Metallic Substrates, 2022, pp. e202203513, Vol. 7, Iss. 44.
  • Journal of CO2 Utilization, Optimization of the integrated ORC and carbon capture units coupled to the refinery furnace with the RSM-BBD method, 2022, pp. 102289, Vol. 66.
  • Thermal Science and Engineering Progress, An extensive review on the latest developments of using oscillating heat pipe on cooling of photovoltaic thermal system, 2022, pp. 101489, Vol. 36.
  • International Journal of Hydrogen Energy, Investigation of the effectual parameters of H2O2/UV advanced oxidation process on the removal rate of coliforms from the industrial effluent in the pilot-scale experiments, 2022, pp. 33530-33540, Vol. 47.
  • International Journal of Energy Research, Experimental investigation of Multiwall Carbon Nanotubes/Water Nanofluid Pool Boiling on Smooth and Groove Surfaces, 2022, pp. 19882–19893, Vol. 46.
  • Scientific Reports, Optimizing the heat transfer characteristics of MWCNTs and TiO2 water-based nanofluids through a novel designed pilot-scale setup, 2022, pp. 15154, Vol. 12.
  • Case Studies in Thermal Engineering, Improving the thermal characteristics of a cooling tower by replacing the operating fluid with functionalized and non-functionalized aqueous MWCNT nanofluids, 2022, pp. 102422, Vol. 39.
  • Energy Reports, Experimental study of the effect of filled bed type on the performance of a cross-flow cooling tower with the approach of using water-based nanofluids (MWCNTs and TiO2), 2022, pp. 8346-8360, Vol. 8.
  • Fuel, Numerical investigation of TiO2 and MWCNTs turbine meter oil nanofluids: Flow and hydrodynamic properties, 2022, pp. 123943, Vol.320.
  • Alexandria Engineering Journal Simulation of melting and solidification process of polyethylene glycol 1500 as a PCM in rectangular, triangular, and cylindrical enclosures, 2022, pp. 8431–8456, Vol. 61.
  • Case Studies in Thermal Engineering, Experimental investigation on thermal performance of covalently functionalized hydroxylated and non-covalently functionalized multi-walled carbon nanotubes/transformer oil nanofluid, 2022, pp. 101713, Vol. 31.
  • International Journal of Energy Research, Thermodynamic design, evaluation, and optimization of a novel quadruple generation system combined of a fuel cell, an absorption refrigeration cycle, and an electrolyzer, 2022, 46(6), pp. 7261–7276.
  • Energy Reports, Modeling and optimization the effective parameters of nanofluid heat transfer performance using artificial neural network and genetic algorithm method, 2021, pp. 8447-8467, Vol. 7.
  • International Communications in Heat and Mass Transfer , Effect of stabilization method on the natural convection in an inclined cavity filled with MWCNTs/water nanofluids, 2021, pp. 105645, Vol. 129.
  • International Journal of Hydrogen Energy, The impact of SiC. Al2O3, and B2O3 abrasive particles and temperature on wear characteristics of 18Ni (300) maraging steel in abrasive flow machining (AFM) , 2021, pp. 33991-34001, Vol. 46.
  • Scientific Reports, Comparison between multi-walled carbon nanotubes and titanium dioxide nanoparticles as additives on performance of turbine meter oil nano lubricant, , 2021, pp. 11064, Vol. 11(1).
  • Journal of Environmental Chemical Engineering, Improved CO2 adsorption capacity and fluidization behavior of silica-coated amine-functionalized multi-walled carbon nanotubes, 2021, pp. 105786, Vol. 9.
  • Journal of Energy Storage, Experimental Investigation of Stepped Solar Still with Phase Change Material and External Condenser, 2021, pp. 102681 , Vol. 40.
  • Fuel, Viscosity, tribological and physicochemical features of ZnO and MoS2 diesel oil-based nanofluids: An experimental study, 2021, pp. 120481, Vol. 293.
  • Energy, Optimizing the effect of concentration and flow rate of water/ MWCNTs nanofluid on the performance of a forced draft cross-flow cooling tower, 2021, pp. 119420, Vol. 217.
  • Journal of Molecular Liquids, Effect of nanoparticle shape on the performance of thermal systems utilizing nanofluids: A critical review, 2021, pp. 114430, Vol. 321.
  • Energy Conversion and Management, Thermodynamic and thermoeconomic analyses of a new dual-loop organic Rankine – Generator absorber heat exchanger power and cooling cogeneration system, 2020, pp. 113356, Vol. 224.
  • International Journal of Hydrogen Energy, Experimental investigation of ZnO nanoparticles effects on thermophysical and tribological properties of diesel oil, 2020, pp. 23603-23614, Vol.45 (43).
  • Chemical Engineering Research and Design, Ionic liquids: promising compounds for sustainable chemical processes and applications, 2020, pp. 264-300, Vol. 160.
  • International Communications in Heat and Mass Transfer, Application of M5 tree regression, MARS, and artificial neural network methods to predict the Nusselt number and output temperature of CuO based nanofluid flows in a car radiator, 2020, pp. 104667, Vol. 116.
  • Powder Technology, The effect of multi-wall carbon nanotubes/turbine meter oil nanofluid concentration on the thermophysical properties of lubricants, 2020, pp. 133-142, Vol. 367.
  • Scientific Reports, Experimental comparison between Zno and MoS2 nanoparticles as additives on performance of diesel oil-based nano lubricant, 2020, pp. 5813, Vol. 10.
  • Emission Control Science and Technology, Development of Reduction Scenarios Based on Urban Emission Estimation and Dispersion of Exhaust Pollutants from Light Duty Public Transport: Case of Tabriz, Iran, 2020, pp. 86-104, Vol. 6.
  • Physica A: Statistical Mechanics and its Applications, Prediction of the pressure drop for CuO/(Ethylene glycol-water) nanofluid flows in the car radiator by means of Artificial Neural Networks analysis integrated with genetic algorithm, 2020, pp. 124008, Vol. 546.
  • Tribology International, Experimental Investigation of Fe3O4/hydraulic oil magnetic nanofluids rheological properties and performance in the presence of magnetic field, 2020, pp. 105995, Vol. 142.
  • International Communications in Heat and Mass Transfer, An experimental investigation on natural convection of non-covalently functionalized MWCNTs nanofluids: Effects of aspect ratio and inclination angle, 2020, pp.104473 , Vol. 111.
  • International Communications in Heat and Mass Transfer, Experimental investigation of MoS2/diesel oil nanofluid thermophysical and rheological properties, 2019, pp. 104298, Vol. 108.
  • Journal of Thermal Analysis and Calorimetry, Influence of Al 2 O 3 nanoparticles on the stability and viscosity of nanofluids: Insights from molecular dynamics simulation, 2019, pp. 623-631, vol. 138.
  • Journal of Thermal Analysis and Calorimetry, Experimental investigation of nano-TiO2/turbine meter oil nanofluid, 2019, pp. 57-67, vol. 138.
  • Powder Technology, An experimental study on heat transfer performance and pressure drop of nanofluids using graphene and multi-walled carbon nanotubes based on diesel oil, 2019, pp. 369–380, Vol. 352.
  • Ultrasonics – Sonochemistry, Ultrasonic/sonochemical synthesis and evaluation of nanostructured oil in water emulsions for topical delivery of protein drugs, 2019, pp. 86–95, Vol. 55.
  • Journal of Thermal Analysis and Calorimetry, Influence of graphene oxide nanosheets on the stability and thermal conductivity of nanofluids: Insights from molecular dynamics simulations, 2019, pp. 581–595, Vol. 135.
  • Energy Conversion and Management, Experimental investigation of a novel type of two-phase closed thermosyphon filled with functionalized carbon nanotubes/water nanofluids for electronic cooling application, 2019, pp. 321-332, Vol. 188.
  • Journal of Thermal Analysis and Calorimetry, Density and rheological properties of different nanofluids based on diesel oil at different weight concentrations: an experimental study, 2019, pp.1229–1242, Vol. 135
  • Energy Conversion and Management, Numerical study on the effect of non-uniform magnetic fields on melting and solidification characteristics of NEPCMs in an annulus enclosure, 2018, pp. 879-889, Vol. 171.
  • International Communications in Heat and Mass Transfer, Experimental study on thermal conductivity and electrical conductivity of diesel oil-based nanofluids of graphene nanoplatelets and carbon nanotube,2018, pp. 116-122, Vol. 95.
  • Journal of Molecular Liquids, Experimental investigation of new photocatalytic continuous coaxial cylinder reactor for elimination of linear alkylbenzene sulfonic acid from waste water using nanotechnology, 2018, pp. 165–171, Vol. 264.
  • Journal of Thermal Analysis and Calorimetry, Effect of magnetic field on thermo-physical and hydrodynamic properties of different metals-decorated multi-walled carbon nanotubes-based water coolants in a closed conduit, 2018, pp. 1089–1106, Vol. 131.
  • Energy Conversion and Management, Experimental investigation of the effect of different nanofluids on the thermal performance of a wet cooling tower using a new method for equalization of ambient conditions, 2018, pp. 23-35, Vol. 158.
  • Environmental Technology, The effect of titanium dioxide nanoparticles and UV irradiation on photocatalytic degradation of Imidaclopride, 2018, pp. 536-547, vol. 39(4).
  • Journal of Vinyl and Additive Technology, Effect of TiO2 Nanoparticles on Rheological Behaviour of Polyvinyl Alcohol Solution, 2017, pp. 234-240, Vol. 23(3).
  • Nano Energy, Nanofluids effects on the evaporation rate in a solar still equipped with a heat exchanger, 2017, pp. 134-155. vol. 36.
  • Tribology International, Influence of soluble oil-based TiO2 nanofluid on heat transfer performance of cutting fluid, 2017, pp. 147-154, vol. 112(8).
  • Powder Technology, Experimental investigation of thermal properties of cutting fluid using TiO2-based soluble oil nanofluid, 2017, pp. 213-220, vol. 310.
  • Energy Conversion and Management, Experimental investigation of filled bed effect on the thermal performance of a wet cooling tower by using ZnO/water nanofluid, 2016, pp. 199-207, Vol. 127/.
  • Journal of Applied Polymer Science, Rheological Behavior of Starch-Poly (vinyl alcohol)-TiO2 Nanofluids and their Main and Interactive Effects, 2016, pp. 440621-9, Vol. 133(41).
  • Research on Chemical Intermediates, Photo catalytic degradation of linear alkylbenzene sulfonic acid, 2016. pp. 6587–6606, Vol. 42.
  • Numerical Heat Transfer: part A, Hydrodynamic and Thermal Performance Prediction of Functionalized MWNT Based water Nanofluids under Laminar Flow Regime Using Adaptive Neuro-Fuzzy Inference System, 2016, pp. 103-116, Vol. 70 (1).
  • Chemical Engineering Research and Design, Investigation of different methods for cisplatin loading using single-walled carbon nanotube, 2016, pp. 56-63, Vol. 112.
  • International Journal of Heat and Mass Transfer, Natural Convection of Silica Nanofluids in Square and Triangular Enclosures: Theoretical and Experimental Study, 2016, pp. 792-804, Vol. 99.
  • Journal of Thermal Analysis and Calorimetry, Experimental investigation of pressure drop and heat transfer performance of amino acid-functionalized MWCNT in the circular tube, 2016, pp. 205-214, Vol. 124(1)
  • Journal of Dispersion Science and Technology, Determination of the Heat Transfer Coefficient of Metal Oxide Based Water Nanofluids in a Laminar Flow Regime Using an Adaptive Neuro-Fuzzy Inference System, 2016, pp. 1277-1286, Vol. 37(9).
  • Journal of Thermal Analysis and Calorimetry, Convective heat transfer and friction factor of aqueous Fe3O4 nanofluid flow under laminar regime: An experimental investigation, 2016, pp. 827-838, Vol. 124(2).
  • Journal of the Taiwan Institute of Chemical Engineers, Synthesis of water-soluble Fe-decorated multi-walled carbon nanotubes: A study on thermo-physical properties of ferromagnetic nanofluid, 2016, pp. 547-554, Vol. 60.
  • Journal of Molecular Liquids Photocatalytic activity performance of novel cross-linked PEBAX copolymer nanocomposite on azo dye degradation, 2016, pp. 275-283, Vol.216.
  • Renewable and Sustainable Energy reviews, The Study on Application of TiO2/water Nanofluid in Plate Heat Exchanger of Milk Pasteurization Industries, 2016, pp. 1318-1326, Vol. 58.
  • Progress in Organic Coatings, Is MWCNT a good synergistic candidate in APP–PER–MELintumescent coating for steel structure? 2016, pp. 252-257, vol. 90.
  • Heat and Mass Transfer, Heat Transfer Performance of Two-Phase Closed Thermosyphon with Oxidized CNT/Water Nanofluids, 2016, pp. 85-93, Vol. 52, Iss. 1.
  • Brazilian Journal of Chemical Engineering, PREDICTION OF STABILITY AND THERMAL CONDUCTIVITY OF SnO2 NANOFLUID VIA STATISTICAL METHOD AND AN ARTIFICIAL NEURAL NETWORK ,2015, pp. 903-917, Vol. 32(4).
  • Bulgarian Chemical Communication, Numerical Analysis of Mass and Momentum Transfer in Co-Axial Cylinders with Rotating Inner Cylinder, 2015, pp. 491-496, Vol.47(2).
  • Energy Conversion and Management, Synthesis of aspartic acid-treated multi-walled carbon nanotubes based water coolant and experimental investigation of thermal and hydrodynamic properties in circular tube, 2015, pp.1366-1376, vol. 105.
  • Micro & Nano Letters, Experimental investigation on thermal conductivity of medical nanofluid based on functionalized single-wall carbon nanotube and conjugated cisplatin, 2015, pp. 241-247, Vol. 10(5).
  • Numerical Heat Transfer, Part A: Applications, Statistical Analysis of Laminar Convective Heat Transfer of MWCNT- Deionized Water Nanofluid by Using Response Surface Methodology, 2015, pp. 454-469, Vol. 68 (4).
  • International Journal of Thermophysics, Experimental Comparison between Thermal Characteristics of 3 Metal Oxide Nanoparticles/ Turbine Oil Based Nanofluids under Laminar Flow Regime, 2015, pp. 760-782, Vol. 36.
  • The Korean Journal of Chemical Engineering, Pressure Drop and Thermal Performance of CuO/Ethylene Glycol (60%)-Water (40%) Nanofluid in Car Radiator, 2015, pp. 609-616, Vol. 32(4).
  • Journal of Thermal Analysis and Calorimetry, Experimental investigation of stability and thermophysical properties of carbon nanotubes suspension in the presence of different surfactants, 2015, pp. 1193-1201, Vol. 120 (2).
  • Journal of Dispersion Science and Technology, Rheological behaviour of zinc-oxide nanolubricants, 2015, pp. 1073-1079, Vol. 36 (8).
  • Journal of Dispersion Science and Technology, Heat transfer performance of milk pasteurization plate heat exchangers using MWCNT/water nanofluid, 2015, pp. 196-204, vol. 36.
  • Heat Transfer Engineering, Thermal Performance Prediction of Two-Phase Closed Thermosyphon Using Adaptive Neuro-Fuzzy Inference System. 2015, pp. 315-324, Vol. 36 (3).
  • Powder Technology, Experimental investigation and characterization of an efficient nanopowder-based flame retardant coating for atmospheric-metallic substrates, 2015, pp. 22-29, Vol. 269.
  • Experimental Heat Transfer, Experimental study of two phase closed thermosyphon using CuO/Water nanofluid in the presence of electric field, 2015, pp. 328-343, vol. 28.
  • Experimental Heat Transfer, Experimental study of CuO/water nanofluid turbulent convective heat transfer in square cross-section duct, 2015, pp. 282-297, vol. 28.
  • Journal of Thermal Analysis and Calorimetry, Heat transfer and rheological properties of transformer oil-oxidized MWCNT nanofluid, 2014 pp. 1451-1460, Vol. 118 (3).
  • Journal of Thermophysics and Heat Transfer, Experimental investigation of pool boiling heat transfer of Al2O3/ethylene glycol-water (60/40) nanofluids, 2014. pp. 724-734. Vol. 28 (4).
  • Journal of Drug Delivery Science and Technology, Microwave functionalized single-walled carbon nanotube as nanocarrier for the delivery of anticancer drug cisplatin: in vitro and in vivo evaluation, 2014, pp. 572-578, vol. 24 (6).
  • Heat and Mass Transfer, Experimental Investigation of TiO2/Water Nanofluid Laminar Forced Convective Heat Transfer Through Helical Coiled Tube , 2014, pp. 1563-1573, vol. 50 (11).
  • Applied Thermal Engineering, Pool Boiling Heat Transfer of CNT/Water Nanofluids, 2014, pp. 450-459, vol. 71.
  • International Journal of Heat and Mass Transfer, First and second laws analysis of a minichannel-based solar collector using boehmite alumina nanofluids: Effects of nanoparticle shape and tube materials, 2014, pp. 1166-1176, vol. 78.
  • Numerical Heat Transfer, Part A: Applications, Optimization of Thermal Efficiency of a Two-Phase Closed Thermosyphon using Active Learning on the Human Algorithm Interaction, 2014, pp. 947–962, vol. 66.
  • Heat Transfer Research, Experimental investigation effect of nanoparticles on heat transfer coefficient of Herschel Bulkley fluid, 2014, pp. 485-505, vol. 45, Iss. 6.
  • Journal of Dispersion Science and Technology, Improvement in Heat Transfer of a Two-Phased Closed Thermosyphon using Silver-Decorated MWCNT/Water, 2014, pp. 1086-1096, vol. 35.
  • Journal of Dispersion Science and Technology, Experimental Study of Heat Transfer of a Car Radiator with CuO/Ethylene Glycol-Water as a coolant, 2014, pp. 677-684, vol. 35.
  • Energy, Experimental Investigation of the Effects of Silica/Water Nanofluid on Photovoltaic Thermal Units (PV/T), 2014, pp. 264-272, Vol. 66.
  • International Journal of Heat and Mass Transfer, A comparative experimental study on the natural convection heat transfer of different metal oxide nanopowders suspended in turbine oil inside an inclined cavity, 2014, pp. 231-238, Vol. 73.
  • Arabian Journal of Science and Engineering, Modeling and Simulation of Erosion-Corrosion in Disturbed Two-Phase Flow through Fluid Transport Pipelines, 2014, pp. 1497-1505, Vol. 39, Iss. 32.
  • Material Research Bulletin, Effect of electric field on thermal performance of thermosyphon heat pipes using nanofluids, 2014, pp. 21-27, Vol. 53, Iss. 5.
  • Heat Transfer Engineering, Experimental investigation of Al2O3/water nanofluid through equilateral triangular duct with constant wall heat flux in laminar flow, 2014, pp. 1173-1182, Vol. 35, Iss. 13.
  • Chemical Engineering Communications, Experimental Investigation of Parameters Affecting Nanofluids Effective Thermal Conductivity, 2014, pp.593-611, Vol. 201, Iss. 5.
  • International Journal of Heat and Fluid Flow, Laminar convective heat transfer of Al2O3/water nanofluid through square cross-sectional duct , 2013, pp. 375-382, Vol. 44, No. 6.
  • Heat Transfer-Asian Research, Effects of a Nanofluid and Magnetic Field on the Thermal Efficiency of a Two-Phase Closed Thermosyphon, 2013, pp. 630-650, Vol. 42, No. 7.
  • Modern Applied Science, Experimental Study on Thermal Efficiency of Flat Plate Solar Collector Using TiO2/Water Nanofluid, 2013, pp. 60-69, Vol. 7, No. 10.
  • Industrial and Engineering Chemistry Research, MWCNT/Water nanofluid or helical coiling technique, which of them is more effective? , 2013, pp. 13183-13191, Vol. 52, No. 36.
  • Numerical Heat Transfer, Part B: : Fundamentals, Identification of the Key Variables on Thermal Conductivity of CuO Nanofluid by a Fractional Factorial Design Approach , 2013, pp. 480-495, Vol. 64, No.1.
  • Journal of Dispersion Science and Technology, Effects of Curvature Ratio and Coil Pitch Spacing on Heat Transfer Performance of Al2O3/Water Nanofluid Laminar Flow Through Helical Coils, 2013, pp. 1704-1712, Vol. 34, No.1 2.
  • Journal of Dispersion Science and Technology, Pressure Drop and Performance Characteristics of Water-Based Al2O3 and CuO Nanofluids in a Triangular Duct, 2013, pp. 1368-1375, Vol. 34, No. 10.
  • Heat and Mass Transfer, Nero-fuzzy modelling of the convection heat transfer coefficient for the nanofluid, 2013, pp. 575–583, Vol. 49.
  • Powder Technology, Comparative study between metal oxide nanopowders on thermal characteristics of nanofluid flow through helical coils, 2013, pp. 82–92, Vol. 246.
  • Journal of Thermophysics and Heat Transfer, Laminar Convective Heat Transfer and Pressure Drop of TiO2/Turbine Oil Nanofluid, 2013, pp. 127-136, Vol. 27 , No. 1.
  • Heat and Mass Transfer, Prediction of temperature performance of a two-phase closed thermosyphon using Artificial Neural Network, 2013, pp. 65-73, Vol. 49.
  • Experimental Heat Transfer, The effect of multi-walled carbon nanotube (MWCNT)/water nanofluid on thermal performance of a two-phase closed thermosyphon, 2013, pp. 26-40, Vol. 26.
  • Energy, Analysis of Entropy Generation between Co-rotating Cylinders using Nanofluids, 2012, pp. 438-446, Vol. 44 , No. 1.
  • Energy, Thermal optimization of combined heat and power (CHP) systems using nanofluids, 2012, pp. 241-247, Vol. 44, No.1.
  • World Applied Science Journal, Fermentative Lactic Acid from Deproteinized Whey Using Lactobacillus bulgaricus in Batch Culture, 2012, pp. 1083-1086, Vol. 17, No. 9.
  • Journal of Heat Transfer (ASME) , Effect of Uncertainties in Physical Properties on Entropy Generation between Two Rotating Cylinders with Nanofluids, 2012, pp. 101704-1-101704-9, Vol. 134.
  • Heat Transfer- Asian Research, The study of laminar convective heat transfer of CuO/water nanofluid through equilateral triangular duct at constant wall heat flux, 2012, pp. 418-429, Vol. 41, No.5.
  • The Journal of Physical Chemistry C, High Dispersed MWCNT Decorated with Ag Nanoparticles in Water and Experimental Investigation of the Thermo-Physical Properties, 2012, pp. 3369−3375, Vol. 116.
  • Energy, Exergy and economic analysis of a pyramid-shaped solar water purification system: active and passive cases, 2012, pp. 31-36, Vol. 38.
  • Heat Transfer-Asian Research, Water‐silver nanofluid application in a TPCT under an external magnetic field, 2012, pp. 289-301, Vol. 41(4).
  • Industrial & Engineering Chemistry Research, Investigation of Heat Transfer Characterization of EDA-MWCNT/DI- water Nanofluid in a Two-Phase Closed Thermosyphon, 2012, pp. 1423-1428, Vol. 51.
  • Engineering Applications of Computational Fluid Mechanics, A numerical study on convective heat transfer of Al2O3/water, CuO/water and Cu/water nanofluids through square cross-section duct in laminar flow, 2012, pp. 1-14, Vol. 6, No.1.
  • International Communication in Heat and Mass Transfer, Experimental investigation of pool boiling characteristics of low- concentrated CuO/ ethylene glycol-water nanofluid, 2011, pp.1470-1473, Vol. 38.
  • Applied Surface Science, One-pot, efficient functionalization of multi-walled carbon nanotubes with diamines by microwave method, , 2011, pp. 10261-10266 , Vol. 257, Iss, 23.
  • Nanoscale Research Letters ,Numerical investigation of Al2O3/water nanofluid laminar convective heat transfer through triangular ducts, 2011, 6:179.
  • Brazilian Journal of Chemical Engineering, Designing a neural network for closed thermosyphon with nanofluid using genetic algorithm, 2011, pp. 157-168, Vol. 28, No. 01.
  • Journal of Enhanced Heat Transfer, Experimental study of two-Phase closed thermosyphon with nanofluid and magnetic field effect, 2011, pp. 261-269, Vol. 18. No .3.
  • International Communication in Heat and Mass Transfer, , A comparison of experimental heat transfer characteristics for Al2O3 /water and CuO/water nanofluids in square cross-section duct , 2010, pp. 924-928, Vol. 37.
  • International Journal of Microscale and Nanoscale Thermal and Fluid Transport Phenomena, Thermal Behaviour of Two Phase Closed Thermosyphon Using CuO/Water Nanofluid, 2010, pp. 195-209, Vol. 1 , Iss.2.
  • Journal of Nanoparticles Research, , Heat transfer enhancement by application of nano-powder , , 2010, pp. 2611–2619, Vol. 12.
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