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Discussiones Mathematicae Graph Theory, ISSN 1234-3099, 11/2018, Volume 38, Issue 4, pp. 991 - 1006
An eternal -secure set of a graph = ( ) is a set ⊆ that can defend against any sequence of single-vertex attacks by means of multiple guard shifts along the... 
eternal | secure set | security number | 05C69 | security bondage number | Eternal m-secure set | Eternal m-security number | Eternal m-security bondage number | MATHEMATICS | eternal m-secure set | eternal m-security number | eternal m-security bondage number
Journal Article
Computer methods in applied mechanics and engineering, ISSN 0045-7825, 02/2019, Volume 344, pp. 306 - 318
Journal Article
Computer methods in applied mechanics and engineering, ISSN 0045-7825, 2019, Volume 344, pp. 319 - 333
Journal Article
Journal of molecular liquids, ISSN 0167-7322, 2018, Volume 263, pp. 303 - 315
Finite element method is applied to simulate solidification of Nano-enhanced phase change material (NEPCM) in existence of magnetic field. Both active... 
Finite element method | Phase change material | Porous thermal energy storage | CuO nanoparticle | Lorentz forces | Solidification | HEAT-TRANSFER | PHYSICS, ATOMIC, MOLECULAR & CHEMICAL | CHEMISTRY, PHYSICAL | RADIATION | NANOFLUID | SURFACE | PCM | Nanoparticles | Usage | Heat storage | Analysis | Force and energy | Magnetic fields | Copper oxide | Mechanical engineering | Cuprite
Journal Article
International journal of hydrogen energy, ISSN 0360-3199, 2017, Volume 42, Issue 2, pp. 821 - 829
Influence of Coulomb forces on Fe3O4–H2O nanofluid thermal improvement in a cavity with moving wall is examined. The final formulas are solved via Control... 
Fe3O4–H2O nanofluid | Electrohydrodynamic | CVFEM | Lid driven | Joule heating | O nanofluid | ELECTROCHEMISTRY | NATURAL-CONVECTION | ENERGY & FUELS | CAVITY | NANOPARTICLE | CHEMISTRY, PHYSICAL | RADIATION | MIXED CONVECTION | FLOW | CUO-H2O NANOFLUID | ENHANCEMENT | CONVECTIVE HEAT-TRANSFER | Fe3O4-H2O nanofluid | WATER
Journal Article
Journal of molecular liquids, ISSN 0167-7322, 01/2018, Volume 249, pp. 739 - 746
CuO-H2O nanofluid flow inside a porous channel due to magnetic field is simulated by means of Lattice Boltzmann method. Brownian motion impact added in model... 
Forced convection | CuO-H2O nanofluid | LBM | Porous channel | Lorentz forces | CuO-H | O nanofluid | EXISTENCE | NATURAL-CONVECTION | HEAT-TRANSFER ENHANCEMENT | CYLINDER | SHAPES | PHYSICS, ATOMIC, MOLECULAR & CHEMICAL | CHEMISTRY, PHYSICAL | SIMULATION | ENCLOSURE | PERMEABLE CAVITY | THERMAL-RADIATION
Journal Article
Journal of molecular liquids, ISSN 0167-7322, 2017, Volume 234, pp. 364 - 374
In this paper, magnetohydrodynamic nanofluid hydrothermal analysis in an open porous cavity is presented by means of Lattice Boltzmann method. Brownian motion... 
Porous media | MHD | Natural convection | Lattice Boltzmann method | Nanofluid | Open cavity | LORENTZ FORCES | EXISTENCE | NATURAL-CONVECTION | HEAT-TRANSFER ENHANCEMENT | FORCED-CONVECTION | VERTICAL PLATE | PHYSICS, ATOMIC, MOLECULAR & CHEMICAL | CHEMISTRY, PHYSICAL | JEFFREY FLUID | FLOW | NANOPARTICLES | THERMAL-RADIATION | Magnetic fields | Analysis | Methods
Journal Article
Journal of molecular liquids, ISSN 0167-7322, 2018, Volume 265, pp. 347 - 355
Journal Article
Journal of molecular liquids, ISSN 0167-7322, 2018, Volume 259, pp. 424 - 438
Solidification process of nano enhanced phase change material (NEPCM) is simulated in existence of radiative heat transfer. H2O and CuO are utilized as PCM and... 
Nano enhanced PCM | Thermal radiation | Nanoparticle | FEM | Solidification | THERMAL-ENERGY STORAGE | HEAT-TRANSFER | CAVITY | PHYSICS, ATOMIC, MOLECULAR & CHEMICAL | CHEMISTRY, PHYSICAL | FERROFLUID | RADIATION | MIXED CONVECTION | NANOFLUID FLOW | NANOPARTICLES | FLUID | MAGNETIC-FIELD | Models | Copper oxide | Analysis | Cuprite | Radiation
Journal Article
Journal of molecular liquids, ISSN 0167-7322, 2018, Volume 263, pp. 472 - 488
In this research, nanofluid flow in a three dimensional porous cavity under the impact of magnetic field is simulated by means of Lattice Boltzmann Method. The... 
Forced convection | Lattice Boltzmann Method | Sphere obstacle | Nanofluid | Porous medium | Lorentz forces | PHYSICS, ATOMIC, MOLECULAR & CHEMICAL | CHEMISTRY, PHYSICAL | ENCLOSURE | MIXED CONVECTION | FLOW | FLAT-PLATE | NANOPARTICLES | FLUID | CHANNEL | DIFFUSION | MASS-TRANSFER | THERMAL-RADIATION
Journal Article
Journal of molecular liquids, ISSN 0167-7322, 2018, Volume 266, pp. 495 - 503
In order to simulate nanofluid MHD transportation in a permeable cavity, Darcy law is utilized. Impacts of radiation parameter, buoyancy and Lorentz forces on... 
Natural convection | Darcy law | Control volume based finite element method | Magnetohydrodynamic | Nanofluid | HEAT-TRANSFER | PHYSICS, ATOMIC, MOLECULAR & CHEMICAL | FREE-CONVECTION | MHD | CHEMISTRY, PHYSICAL | SIMULATION | ENCLOSURE | MIXED CONVECTION | CHANNEL | FLUID | MEDIA | MAGNETIC-FIELD | Magnetic fields | Laws, regulations and rules | Mechanical engineering
Journal Article
Journal of molecular liquids, ISSN 0167-7322, 2018, Volume 249, pp. 921 - 929
Homogeneous nanofluid flow and forced convection heat transfer inside a lid driven porous cavity is investigated in presence of Lorentz forces. Brownian motion... 
Porous media | Forced convection | Shape of nanoparticles | CVFEM | Nanofluid | Magnetic field | LORENTZ FORCES | EXISTENCE | HEAT-TRANSFER ENHANCEMENT | FORCED-CONVECTION | CAVITY | PHYSICS, ATOMIC, MOLECULAR & CHEMICAL | CHEMISTRY, PHYSICAL | ENCLOSURE | ENTROPY GENERATION | BOLTZMANN METHOD SIMULATION | MHD NATURAL-CONVECTION | THERMAL-RADIATION | Copper oxide | Magnetic fields | Cuprite
Journal Article
International journal of hydrogen energy, ISSN 0360-3199, 2017, Volume 42, Issue 31, pp. 19611 - 19621
In this paper, CuO–H2O nanofluid forced convection in a lid driven porous cavity is investigated under the impact of magnetic field. Shape effect of... 
Porous media | CuO–H2O nanofluid | MHD | Forced convection | CVFEM | CuO–H | O nanofluid | LORENTZ FORCES | EXISTENCE | ELECTROCHEMISTRY | NATURAL-CONVECTION | HEAT-TRANSFER ENHANCEMENT | FORCED-CONVECTION | ENERGY & FUELS | CHEMISTRY, PHYSICAL | CuO-H2O nanofluid | MESOSCOPIC SIMULATION | ENTROPY GENERATION | POROUS ENCLOSURE | THERMAL-RADIATION | NUMERICAL-SIMULATION
Journal Article
Physica. B, Condensed matter, ISSN 0921-4526, 2017, Volume 516, pp. 55 - 71
Magnetohydrodynamic nanofluid convective flow in cubic porous enclosure is reported. Lattice Boltzmann Method is selected as mesoscopic approach. Brownian... 
Porous media | Brownian motion | Natural convection | Lattice Boltzmann Method | Nanofluid | Lorentz forces | NATURAL-CONVECTION | PHYSICS, CONDENSED MATTER | HEAT-TRANSFER ENHANCEMENT | FORCED-CONVECTION | WATER-BASED NANOFLUID | ENTROPY GENERATION | POROUS ENCLOSURE | MAGNETIC-FIELD | THERMAL-RADIATION | NUMERICAL-SIMULATION | Analysis | Methods | Permeability
Journal Article
Journal Article
Journal of molecular liquids, ISSN 0167-7322, 2018, Volume 249, pp. 1212 - 1221
Journal Article