1 - 13 |
MHD flow and heat transfer behind a square cylinder in a duct under strong axial magnetic field Chatterjee D, Gupta SK |
14 - 19 |
Transient Joule heating of graphene, nanowires and filaments: Analytical model for current-induced temperature evolution including substrate and end effects Chandran KSR |
20 - 27 |
Numerical study on the phase change heat transfer of LNG in glass wool based on the VOF method Byon C |
28 - 41 |
Vaporization characteristics of suspended droplets of biodiesel fuels of Indian origin and their diesel blends - An experimental study Manjunath M, Raghavan V, Mehta PS |
42 - 54 |
A thermo-mechanical model for flows in superposed porous and fluid layers with interphasial heat and mass exchange Papalexandris MV, Antoniadis PD |
55 - 72 |
Modeling of the non-isothermal liquid droplet impact on a heated solid substrate with heterogeneous wettability Ganesan S, Venkatesan J, Rajasekaran S |
73 - 81 |
Experimental investigation on effect of ultrasonication duration on colloidal dispersion and thermophysical properties of alumina-water nanofluid Mahbubul IM, Shahrul IM, Khaleduzzaman SS, Saidur R, Amalina MA, Turgut A |
82 - 90 |
A novel control of jet impingement heat transfer in cross-flow by a vortex generator pair Wang CL, Wang L, Sunden B |
91 - 100 |
The physical model and validation study of ceiling-jet flow in near-field of corridor fires Zhao WF, Zong RW, Wei T, Zhao XJ, Liao GX |
101 - 101 |
A parametric investigation of heat transfer and friction characteristics in cylindrical oblique fin minichannel heat sink (vol 68, pg 567, 2014) Fan Y, Lee PS, Jin LW, Chua BW, Zhang DC |
102 - 110 |
Direct comparison of LES and experiment of a single-pulse impinging jet Bovo M, Davidson L |
111 - 121 |
Microscale study of mechanisms of heat transfer during flow boiling in a microchannel Bigham S, Moghaddam S |
122 - 132 |
Using MRT lattice Boltzmann method to simulate gas flow in simplified catalyst layer for different inlet-outlet pressure ratio Gao Y |
133 - 137 |
Volumetric optical heating of carbon nanotube nanofluids Hordy N, Aristizabal F, Coulombe S |
138 - 148 |
A one-dimensional unsteady wall film evaporation model Yan YA, Liu H, Jia M, Xie MZ, Yin HC |
149 - 164 |
Unsteady heat transfer and flow structure of a row of laminar impingement jets, including vortex development Yang L, Li Y, Ligrani PM, Ren J, Jiang H |
165 - 180 |
Influence of turbulence modelling on non-equilibrium condensing flows in nozzle and turbine cascade Patel Y, Patel G, Turunen-Saaresti T |
181 - 202 |
MHD mixed convection in a lid-driven cavity filled by a nanofluid with sinusoidal temperature distribution on the both vertical walls using Buongiorno's nanofluid model Elshehabey HM, Ahmed SE |
203 - 209 |
Evaporation of a highly superheated liquid Pavlov PA |
210 - 217 |
Investigation on the liquid contact angle and its influence for liquid desiccant dehumidification system Qi RH, Lu L, Jiang Y |
218 - 223 |
Heat transfer with fully developed slot jets impinging on confined concave and convex surfaces Lee DH, Kim SJ, Kim YH, Park HJ |
224 - 235 |
Comparative analysis of the cross-flow indirect evaporative air coolers Bolotin S, Vager B, Vasilijev V |
236 - 246 |
Effects of oxide layer on Leidenfrost temperature during spray cooling of steel at high temperatures Chabicovsky M, Hnizdil M, Tseng AA, Raudensky M |
247 - 255 |
Experimental investigation during condensation of R-600a vapor over single horizontal integral-fin tubes Sajjan SK, Kumar R, Gupta A |
256 - 260 |
Effect of the droplet size of an emulsion dispersion phase in nucleate boiling and emulsion boiling crisis Gasanov BM, Bulanov NV |
261 - 275 |
Condensation heat transfer of R245fa in tubes with and without lyophilic porous-membrane-tube insert Xie J, Xu JL, Cheng Y, Xing F, He XT |
276 - 283 |
Thermocapillary effect on bubble sweeping and circling during subcooled nucleate pool boiling of water over microwire Zhou LP, Du XZ, Yang YP, Jiang PX, Wang BX |
284 - 296 |
Optimisation of an air film cooled CFRP panel with an embedded vascular network McElroy MW, Lawrie A, Bond IP |
297 - 305 |
Effect of bend on premixed flame dynamics in a closed duct Xiao HH, Duan QL, Jiang L, He XC, Sun JH |
306 - 322 |
Lattice Boltzmann method for conjugate heat and mass transfer with interfacial jump conditions Guo KK, Li LK, Xiao G, AuYeung N, Mei RW |
323 - 329 |
Use of a fictitious Marangoni number for natural convection simulation Arias FJ, Parks GT |
330 - 337 |
Performance comparison of particle swarm optimization and genetic algorithm for inverse surface radiation problem Lee KH, Kim KW |
338 - 345 |
Time-averaged droplet size distribution in steady-state dropwise condensation Mei MF, Hu F, Han C, Cheng YH |
346 - 356 |
On the development of a thin evaporating liquid film at a receding liquid/vapour-interface Fischer S, Gambaryan-Roisman T, Stephan P |
357 - 367 |
Augmented heat transfer with intersecting rib in rectangular channels having different aspect ratios Chung H, Park JS, Park S, Choi SM, Rhee DH, Cho HH |
368 - 378 |
Experimental and theoretical studies of critical heat flux of flow boiling in microchannels with microbubble-excited high-frequency two-phase oscillations Li WM, Yang FH, Alam T, Khan J, Li C |
379 - 387 |
Experimental investigation on the performance of improving jet pump cavitation with air suction Lu XX, Wang DM, Shen W, Zhu CB, Chen MJ |
388 - 397 |
Chebyshev collocation spectral method for solving radiative transfer with the modified discrete ordinates formulations Chen SS, Li BW, Sun YS |
398 - 405 |
Onset and departure of flow boiling heat transfer characteristics of cyclohexane in a horizontal minichannel Liu ZH, Bi QC |
406 - 410 |
Effects of surfactant on capillary evaporation process with thick films He F, Wang ZJ, Wang LL, Li JJ, Wang JC |
411 - 423 |
Thermal behavior analyses of stacked prismatic LiCoO2 lithium-ion batteries during oven tests Peng P, Jiang FM |
424 - 432 |
Experimental study on the direct contact condensation of the steam-air mixture in subcooled water flow in a rectangular channel Yang XP, Chong DT, Liu JP, Zong X, Yan JJ |
433 - 444 |
Numerical models for heat conduction and natural convection with symmetry boundary condition based on particle method Hang YY, Sun ZG, Xi G, Liu L |
445 - 455 |
Investigation of coalescence-induced droplet jumping on superhydrophobic surfaces and liquid condensate adhesion on slit and plain fins Shi Y, Tang GH, Xia HH |
456 - 469 |
Application of Bayesian Inference Technique for the reconstruction of an isothermal hot spot inside a circular disc from peripheral temperature measurement - A critical assessment Chakraborty S, Das PK |
470 - 480 |
The effect of jet location and duty cycle on the fluid mechanics of an unconfined free jet and its heat transfer on an impinging plate Marcum WR, Cadell SR, Ward C |
481 - 491 |
Numerical study on heat transfer enhancement characteristics of tube inserted with centrally hollow narrow twisted tapes Li PX, Liu ZC, Liu W, Chen G |
492 - 507 |
Chaotic natural convection in a toroidal thermosyphon with heat flux boundaries Louisos WF, Hitt DL, Danforth CM |
508 - 515 |
Numerical investigation of pressure drop and heat transfer through reconstructed metal foams and comparison against experiments Diani A, Bodla KK, Rossetto L, Garimella SV |
516 - 526 |
A numerical study on upstream maximum temperature in inclined urban road tunnel fires Ji J, Wan HX, Li KY, Han JY, Sun JH |
527 - 537 |
Self-cleaning filtration with spark discharge in produced water Kim HS, Wright K, Cho DJ, Cho YI |
538 - 543 |
A new explicit approximation to Colebrook's friction factor in rough pipes under highly turbulent cases Shaikh MM, Massan SUR, Wagan AI |
544 - 551 |
Bubble dynamics and heat transfer on a wettability patterned surface Chen XD, Qiu HH |
552 - 557 |
Irreversibility and available energy loss in a heat exchanger Xu ZM, Liu ZD, Zhang YL |
558 - 564 |
Determining hydraulic radii of construction wall materials in capillary moisture transfer Nikitsin VI, Backiel-Brzozowska B |
565 - 571 |
Numerical analysis of ignition and flame stabilization in an n-heptane spray flame Zhou L, Lu Z, Ren ZY, Lu TF, Luo KH |
572 - 578 |
Thermal conductivity of Si/Ge nanocomposites with fractal tree-shaped networks by considering the phonon interface scattering Chen YP, Deng ZL, Cheng QK |
579 - 590 |
Thermal response factors to a 2nd order shaping function for the calculation of the 1D heat conduction in a multi-layered slab Ojer JMP, Frances VMS, Escriva ES, Frances LS |
591 - 596 |
Heat and mass transfer through water saturated ceramics with inclusions of ice Kolunin VS, Kolunin AV, Pisarev AD |
597 - 608 |
A study visualizing the collapse of vapor bubbles in a subcooled pool Tang JG, Yan CQ, Sun LC |
609 - 616 |
Experimental study on the thermal conductivity enhancement of water based nanofluids using different types of carbon nanotubes Xing MB, Yu JL, Wang RX |
617 - 626 |
Numerical modeling of heat transfer in open-cell micro-foam with phase change material Hu X, Wan H, Patnaik SS |
627 - 635 |
Enhancement of the performance of a double layered microchannel heatsink using PCM slurry and nanofluid coolants Rajabifar B |
636 - 651 |
Conductive heat transfer in rarefied polyatomic gases confined between parallel plates via various kinetic models and the DSMC method Tantos C, Valougeorgis D, Frezzotti A |
652 - 661 |
Enhanced pool boiling heat transfer mechanisms for selectively sintered open microchannels Jaikumar A, Kandlikar SG |
662 - 673 |
Comparison of cryogenic flow boiling in liquid nitrogen and liquid hydrogen chilldown experiments Hartwig J, Hu H, Styborski J, Chung JN |
674 - 683 |
Pair interactions in induced charge electrophoresis of conducting cylinders Feng HC, Wong TN, Marcos |
684 - 694 |
A novel method of energy efficient hotspot-targeted embedded liquid cooling for electronics: An experimental study Sharma CS, Schlottig G, Brunschwiler T, Tiwari MK, Michel B, Poulikakos D |
695 - 712 |
Evaporation and condensation of water mist/cloud droplets with thermal radiation Brewster MQ |
713 - 727 |
Interferometric study of heat transfer characteristics of Al2O3 and SiO2-based dilute nanofluids under simultaneously developing flow regime in compact channels Haridas D, Rajput NS, Srivastava A |
728 - 734 |
Experimental study on thermal conductivity of ethylene glycol based nanofluids containing Al2O3 nanoparticles Esfe MH, Karimipour A, Yan WM, Akbari M, Safaei MR, Dahari M |
735 - 754 |
Summary and evaluation on single-phase heat transfer enhancement techniques of liquid laminar and turbulent pipe flow Ji WT, Jacobi AM, He YL, Tao WQ |
755 - 765 |
Irreversibility analysis of falling film absorption over a cooled horizontal tube Giannetti N, Rocchetti A, Saito K, Yamaguchi S |
766 - 774 |
A new method to measure the thermal slip coefficient Rojas-Cardenas M, Graur I, Perrier P, Meolans JG |
775 - 789 |
An anisotropic turbulent mass transfer model for simulation of pilot-scale and industrial-scale packed columns for chemical absorption Li WB, Yu KT, Yuan XG, Liu BT |
790 - 802 |
Numerical and experimental investigation of heat transfer and fluid flow characteristics in a micro-scale serpentine channel Abed WM, Whalley RD, Dennis DJC, Poole RJ |
803 - 813 |
CFD modelling of heat transfer and pressure drops for nanofluids through vertical tubes in laminar flow by Lagrangian and Eulerian approaches Mandavi M, Sharifpur M, Meyer JP |
814 - 821 |
Fractal analysis of permeability of dual-porosity media embedded with random fractures Miao TJ, Yang SS, Long ZC, Yu BM |
822 - 835 |
Modeling two-phase flow in a micro-model with local thermal non-equilibrium on the Darcy scale Nuske P, Ronneberger O, Karadimitriou NK, Helmig R, Hassanizadeh SM |
836 - 843 |
Further considerations on anisotropic thermal efficiency of symmetric composites Corasaniti S, Gori F |
844 - 861 |
Analytical model for solidification and melting in a finite PCM in steady periodic regime Mazzeo D, Oliveti G, De Simone M, Arcuri N |
862 - 871 |
Comparison of thermal performances of water-filled, SiC nanofluid-filled and SiC nanoparticles-coated heat pipes Kim KM, Jeong YS, Kim IG, Bang IC |
872 - 879 |
Specific heat of metal oxide nanofluids at high concentrations for heat transfer Cabaleiro D, Gracia-Fernandez C, Legido JL, Lugo L |
880 - 890 |
Design of radiative enclosures by using topology optimization Castro DA, Kiyono CY, Silva ECN |
891 - 901 |
A finite element method for prediction of unknown boundary conditions in two-dimensional steady-state heat conduction problems Kanjanakijkasem W |
902 - 913 |
Enhanced natural convection heat transfer of nanofluids in enclosures with two adjacent walls heated and the two opposite walls cooled Corcione M, Cianfrini M, Quintino A |
914 - 925 |
Heat transfer distribution for three interacting methane-air premixed impinging flame jets Hindasageri V, Vedula RP, Prabhu SV |
926 - 944 |
Heat and mass transfer in melting porous media: Stable miscible displacements Sajjadi M, Azaiez J |
945 - 956 |
Molten pool behaviors for second pass V-groove GMAW Cho DW, Na SJ |
957 - 964 |
On the optimization of 3D-flow and heat transfer by using the Ice Formation Method: Vane endwall heat transfer Winkler S, Haase K, Lyulinetskyy R, Neumann SO, Weigand B |
965 - 973 |
Heat/mass transfer over the plane tip equipped with a full coverage winglet in a turbine cascade: Part 1-Winglet bottom surface data Kang DB, Lee SW |
974 - 981 |
Heat/mass transfer over the plane tip equipped with a full coverage winglet in a turbine cascade: Part 2-Tip surface data Seo YC, Lee SW |