Keywords: حفره تراپزی; Solar cooker; Trapezoidal cavity; Combined heat loss; Computational approach; Flow pattern; Nusselt number; Correlation;
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Keywords: حفره تراپزی; Natural convection; Micropolar fluid; Trapezoidal cavity; Local heater; Numerical results;
Keywords: حفره تراپزی; Natural convection; Finite element method; Porous medium; Thermal boundary; Conditions; Trapezoidal cavity;
Keywords: حفره تراپزی; Transient natural convection; Trapezoidal cavity; Finite element method; Non-Newtonian nanofluid; Sinusoidal boundary conditions;
Keywords: حفره تراپزی; Transient natural convection; Trapezoidal cavity; Three-dimensional flow; Entropy generation; Second law analysis
Keywords: حفره تراپزی; Natural convection; Heatline; Porous media; Analytical solution; Nanofluid; Power-law; Trapezoidal cavity
Keywords: حفره تراپزی; Solidification; Phase change materials (PCM); Nanofluid; Trapezoidal cavity; Computational fluid dynamics (CFD)
Keywords: حفره تراپزی; Natural convection; Porous medium; Trapezoidal cavity; Heatlines; Entropy generation; Thermal management;
Keywords: حفره تراپزی; Free convection; Micropolar fluid; Trapezoidal cavity; Numerical results
Water functionalized CuO nanoparticles filled in a partially heated trapezoidal cavity with inner heated obstacle: FEM approach
Keywords: حفره تراپزی; Trapezoidal cavity; Nanoparticles; Inner heated obstacle; Nanofluid; KKL model;
Heat loss analysis from a trapezoidal cavity receiver in LFR system using conduction-radiation model
Keywords: حفره تراپزی; Linear Fresnel reflector; Trapezoidal cavity; Heat losses; Correlations;
Modeling and optimization of MHD mixed convection in a lid-driven trapezoidal cavity filled with alumina-water nanofluid: Effects of electrical conductivity models
Keywords: حفره تراپزی; Electrical conductivity; Nanofluids; Trapezoidal cavity; MHD flow; Finite element; Optimization;
Numerical analysis of convective and radiative heat losses from trapezoidal cavity receiver in LFR systems
Keywords: حفره تراپزی; Linear Fresnel reflector; Trapezoidal cavity; Heat losses; Correlations
Analysis of entropy production vs. energy efficiencies during natural convection in porous trapezoidal cavities exposed to various thermal ambience
Keywords: حفره تراپزی; Energy efficiency; Thermal management; Entropy generation; Trapezoidal cavity; Porous media; Nusselt number;
Steady-state free convection in right-angle porous trapezoidal cavity filled by a nanofluid: Buongiorno's mathematical model
Keywords: حفره تراپزی; Nanofluid; Porous medium; Trapezoidal cavity; Brownian motion; Thermophoresis; Numerical results;
MHD free convection within trapezoidal cavity with non-uniformly heated bottom wall
Keywords: حفره تراپزی; Free convection; Finite element method; Trapezoidal cavity; Non-uniform heating
Analysis of heatlines and entropy generation during free convection within trapezoidal cavities
Keywords: حفره تراپزی; Natural convection; Trapezoidal cavity; Streamlines; Heatlines; Entropy generation; Penalty finite element method;
Investigation of buoyancy-driven flow and heat transfer in a trapezoidal cavity filled with water–Cu nanofluid
Keywords: حفره تراپزی; Water–Cu nanofluid; Free convection; Trapezoidal cavity
Heat loss of a trapezoidal cavity absorber for a linear Fresnel reflecting solar concentrator
Keywords: حفره تراپزی; Linear absorber; Fresnel; Trapezoidal cavity; Numerical simulation; Solar thermal
Entropy generation vs energy flow due to natural convection in a trapezoidal cavity with isothermal and non-isothermal hot bottom wall
Keywords: حفره تراپزی; Entropy generation; Natural convection; Trapezoidal cavity; Isothermal heating; Non-isothermal heating; Bejan number
A comprehensive heatline based approach for natural convection flows in trapezoidal enclosures: Effect of various walls heating
Keywords: حفره تراپزی; Penalty finite element method; Natural convection; Trapezoidal cavity; Various angles; Linear heating; Heatlines;
Natural convection in divided trapezoidal cavities filled with fluid saturated porous media
Keywords: حفره تراپزی; Trapezoidal cavity; Natural convection; Conjugate;
Analysis of heatlines for natural convection within porous trapezoidal enclosures: Effect of uniform and non-uniform heating of bottom wall
Keywords: حفره تراپزی; Penalty finite element method; Natural convection; Porous medium; Trapezoidal cavity; Various angles; Heatlines;
Finite element simulation of natural convection flow in a trapezoidal enclosure filled with porous medium due to uniform and non-uniform heating
Keywords: حفره تراپزی; Penalty finite element method; Natural convection; Porous medium; Trapezoidal cavity; Uniform and non-uniform heating;
Natural convection flows in porous trapezoidal enclosures with various inclination angles
Keywords: حفره تراپزی; Penalty finite element method; Natural convection; Porous medium; Trapezoidal cavity; Various angles; Uniform and non-uniform heating
Natural convection flow simulation for various angles in a trapezoidal enclosure with linearly heated side wall(s)
Keywords: حفره تراپزی; Penalty finite element method; Natural convection; Trapezoidal cavity; Linearly heating;
Finite element simulation of natural convection within porous trapezoidal enclosures for various inclination angles: Effect of various wall heating
Keywords: حفره تراپزی; Penalty finite element method; Natural convection; Porous medium; Trapezoidal cavity; Various angles; Linear heating;
Numerical investigation on mixed convection flow in a trapezoidal cavity heated from below
Keywords: حفره تراپزی; Numerical study; Trapezoidal cavity; Opening site; Tilted wall; Mixed convection
Natural convection flows in a trapezoidal enclosure with uniform and non-uniform heating of bottom wall
Keywords: حفره تراپزی; Penalty finite element method; Natural convection; Trapezoidal cavity; Uniform and non-uniform heating