Works matching IS 26884534 AND DT 2022 AND VI 51 AND IP 4
Results: 44
Emulsification of waste cooking oil biodiesel blend with hydrogen peroxide to assess tailpipe emissions and performance of a compression ignition engine.
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- Heat Transfer, 2022, v. 51, n. 4, p. 3721, doi. 10.1002/htj.22518
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Hall effects on MHD chemically reacting flow of second grade fluid past a vertical porous plate.
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- Heat Transfer, 2022, v. 51, n. 4, p. 3696, doi. 10.1002/htj.22471
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Effect of metal oxide nanofluids on the performance of passive solar still single slope for two different absorbent plates.
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- Heat Transfer, 2022, v. 51, n. 4, p. 3675, doi. 10.1002/htj.22470
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Numerical simulation of three‐phase‐lag bio‐heat transfer model for generalized coordinate system amidst thermal ablation.
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- Heat Transfer, 2022, v. 51, n. 4, p. 3656, doi. 10.1002/htj.22469
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Scrutinization of thermodynamic second law for the steady flow of couple stress nanofluid in an inclined microchannel by varying thermal conductivity.
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- Heat Transfer, 2022, v. 51, n. 4, p. 3636, doi. 10.1002/htj.22468
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Cubic B‐splines method for Hall and ion slip impacts on unsteady MHD rotating flow past a vertical moving porous plate.
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- Heat Transfer, 2022, v. 51, n. 4, p. 3620, doi. 10.1002/htj.22467
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Theoretical and experimental investigation of a heat pipe heat exchanger for energy recovery of exhaust air.
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- Heat Transfer, 2022, v. 51, n. 4, p. 3600, doi. 10.1002/htj.22466
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Characteristics of MHD three‐dimensional flow of nanofluid over a permeable stretching porous sheet.
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- Heat Transfer, 2022, v. 51, n. 4, p. 3586, doi. 10.1002/htj.22465
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Performance analysis of direct solar dryer driven by photovoltaic thermal energy recovery and solar air collector for drying materials and electricity generation.
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- Heat Transfer, 2022, v. 51, n. 4, p. 3573, doi. 10.1002/htj.22464
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Investigation of Jeffery–Hamel flow with high magnetic field and nanoparticle by DTM.
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- Heat Transfer, 2022, v. 51, n. 4, p. 3562, doi. 10.1002/htj.22463
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Mixed convection and entropy production of a hybrid nanofluid in a porous cylindrical enclosure with rotating top wall.
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- Heat Transfer, 2022, v. 51, n. 4, p. 3540, doi. 10.1002/htj.22462
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Buoyancy‐motivated dissipative free convection flow of Walters‐B fluid along a stretching sheet under the Soret effect and Lorentz force influence.
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- Heat Transfer, 2022, v. 51, n. 4, p. 3512, doi. 10.1002/htj.22461
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Influence of radiation and viscous dissipation on MHD heat transfer Casson nanofluid flow along a nonlinear stretching surface with chemical reaction.
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- Heat Transfer, 2022, v. 51, n. 4, p. 3495, doi. 10.1002/htj.22460
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Counterflow HE analysis of Cu and SiO<sub>2</sub> nanofluids in the developing flow region.
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- Heat Transfer, 2022, v. 51, n. 4, p. 3456, doi. 10.1002/htj.22459
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Insight into the dynamics of micropolar fluid about a vertical cone when nonlinear thermal radiation is significant: The case of triple mixed convection.
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- Heat Transfer, 2022, v. 51, n. 4, p. 3431, doi. 10.1002/htj.22458
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Numerical study on the parabolic flow of MHD fluid past a vertical plate in a porous medium.
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- Heat Transfer, 2022, v. 51, n. 4, p. 3418, doi. 10.1002/htj.22457
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Stability analysis on dual solutions of MHD Casson fluid flow with thermal and chemical reaction over a permeable elongating sheet.
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- Heat Transfer, 2022, v. 51, n. 4, p. 3401, doi. 10.1002/htj.22456
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Magnetohydrodynamic mixed convection in a non‐Newtonian third‐grade fluid flowing through vertical parallel plates: A semianalytical study of flow and heat transfer.
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- Heat Transfer, 2022, v. 51, n. 4, p. 3373, doi. 10.1002/htj.22455
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Numerical investigation of a convective hybrid nanofluids around a rotating sheet.
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- Heat Transfer, 2022, v. 51, n. 4, p. 3353, doi. 10.1002/htj.22454
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A critical review: Application of methanol as a fuel for internal combustion engines and effects of blending methanol with diesel/biodiesel/ethanol on performance, emission, and combustion characteristics of engines.
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- Heat Transfer, 2022, v. 51, n. 4, p. 3334, doi. 10.1002/htj.22453
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- Article
Effect of electromagnetic field on the thermal performance of longitudinal trapezoidal porous fin using DTM–Pade approximant.
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- Heat Transfer, 2022, v. 51, n. 4, p. 3313, doi. 10.1002/htj.22450
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Numerical study on combined convection heat transfer flow problem in a porous corrugated enclosure.
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- Heat Transfer, 2022, v. 51, n. 4, p. 3279, doi. 10.1002/htj.22449
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Experimental investigation of dryout phenomena under oscillatory flow conditions.
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- Heat Transfer, 2022, v. 51, n. 4, p. 3257, doi. 10.1002/htj.22447
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Numerical simulation of MHD mixed convection flow of Al<sub>2</sub>O<sub>3</sub>–water nanofluid over two hot obstacles.
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- Heat Transfer, 2022, v. 51, n. 4, p. 3237, doi. 10.1002/htj.22446
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Energetic and exergetic investigation of single slope solar still with sponge and circular hollow fins at different water depths.
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- Heat Transfer, 2022, v. 51, n. 4, p. 3219, doi. 10.1002/htj.22445
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MHD slip flow and heat transfer of UCM fluid with the effect of suction/injection due to stretching sheet: OHAM solution.
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- Heat Transfer, 2022, v. 51, n. 4, p. 3201, doi. 10.1002/htj.22444
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Thermal radiation and diffusion effects in MHD Williamson and Casson fluid flows past a slendering stretching surface.
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- Heat Transfer, 2022, v. 51, n. 4, p. 3187, doi. 10.1002/htj.22443
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Inclined magnetic dipole and nanoscale energy exchange with infinite shear rate viscosity of 3D radiative cross nanofluid.
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- Heat Transfer, 2022, v. 51, n. 4, p. 3166, doi. 10.1002/htj.22442
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Thermodiffusion and chemical reaction on MHD free convective flow past a rotating vertical porous plate with constant heat and mass discharge.
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- Heat Transfer, 2022, v. 51, n. 4, p. 3142, doi. 10.1002/htj.22441
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Convective nanofluid flow over a vertical cone with a rough surface.
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- Heat Transfer, 2022, v. 51, n. 4, p. 3126, doi. 10.1002/htj.22440
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Artificial intelligence‐based correlation: Process side heat transfer coefficient for helical coils in stirred tank reactors.
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- Heat Transfer, 2022, v. 51, n. 4, p. 3099, doi. 10.1002/htj.22439
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Thermophoretic particle deposition and heat generation analysis of Newtonian nanofluid flow through magnetized Riga plate.
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- Heat Transfer, 2022, v. 51, n. 4, p. 3082, doi. 10.1002/htj.22438
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Lie group analysis of hyperbolic tangent fluid flow in the presence of thermal radiation.
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- Heat Transfer, 2022, v. 51, n. 4, p. 3067, doi. 10.1002/htj.22437
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Influence of ramped pressure gradient on transient flow formation in a horizontal porous channel.
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- Heat Transfer, 2022, v. 51, n. 4, p. 3057, doi. 10.1002/htj.22436
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Experimental analysis to study the effect of perforated louvered strip‐coiled spring insert on heat transfer performance in a double pipe heat exchanger.
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- Heat Transfer, 2022, v. 51, n. 4, p. 3035, doi. 10.1002/htj.22435
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Radiation and slip effects on MHD point flow of nanofluid towards a stretching sheet with melting heat transfer.
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- Heat Transfer, 2022, v. 51, n. 4, p. 3018, doi. 10.1002/htj.22434
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Flow of mixed convection for radiative and magnetic hybrid nanofluid in a porous material with Joule heating.
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- Heat Transfer, 2022, v. 51, n. 4, p. 2995, doi. 10.1002/htj.22433
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The effect of computational processing of temperature‐ and concentration‐dependent parameters on non‐Newtonian fluid MHD: Applications of numerical methods.
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- Heat Transfer, 2022, v. 51, n. 4, p. 2977, doi. 10.1002/htj.22432
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Scaling laws for natural convection boundary layer of a Pr > 1 fluid on a vertical solid surface subject to a sinusoidal heating flux in a linearly stratified ambient.
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- Heat Transfer, 2022, v. 51, n. 4, p. 2956, doi. 10.1002/htj.22431
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Nanofluid influenced convective heat transfer and nanoparticles dispersion in porous media with a two‐phase lattice Boltzmann analysis.
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- Heat Transfer, 2022, v. 51, n. 4, p. 2932, doi. 10.1002/htj.22430
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Maxwell nanofluid heat and mass transfer analysis over a stretching sheet.
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- Heat Transfer, 2022, v. 51, n. 4, p. 2905, doi. 10.1002/htj.22429
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- Article
Significance of heat source/sink on the radiative flow of Cross nanofluid across an exponentially stretching surface towards a stagnation point with chemical reaction.
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- Heat Transfer, 2022, v. 51, n. 4, p. 2885, doi. 10.1002/htj.22428
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Numerical study of hybrid nanofluid flow and heat transfer on a stretching sheet with MHD and heat generation effects.
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- Heat Transfer, 2022, v. 51, n. 4, p. 2867, doi. 10.1002/htj.22427
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- Article
Issue Information.
- Published in:
- Heat Transfer, 2022, v. 51, n. 4, p. 2863, doi. 10.1002/htj.22183
- Publication type:
- Article