Oscillation characteristics and evolution process of large Prandtl number (Pr = 58) nanofluid thermocapillary convection is first reported in this work, and the variation of critical Marangoni number and flow instability under different nanoparticle concentrations is revealed. The results show that, nanofluid thermocapillary oscillatory convection consists of multiple vortices and these vortices migrate periodically from cold wall to hot wall, meanwhile, periodic temperature wave and stream function fluctuation cell exist in the oscillation process. As nanoparticle volume fraction increases, the critical Marangoni number decreases obviously, the oscillatory amplitude first increases and then decreases, and the oscillatory period almost incr...
Thermorheological effect on the onset of convection in a horizontal nanofluid layer heated from belo...
In the present paper the problem of natural convection of Al2O3-water nanofluid with consideration o...
Thermocapillary flow in a rectangular liquid pool of large Prandtl fluid (Pr = 105.6) is numerically...
Oscillation characteristics and evolution process of large Prandtl number (Pr = 58) nanofluid thermo...
Thermocapillary convection of moderate Prandtl number nanofluid in rectangular cavity is numerically...
To analyze the oscillation and evolution characteristics of nanofluid thermocapillary convection ins...
Natural convection in a differentially heated cubical cavity filled with a water-based nanofluid und...
Natural convection of alumina-water nanofluid inside a square cavity with time-sinusoidal temperatur...
Thermocapillary convection of nanofluid with evaporating phase change interface occurs in a variety ...
The linear stability of nanofluid convection in a horizontal porous layer is examined theoretically ...
A two-phase model based on the double-diffusive approach is used to perform a numerical study on the...
This paper examines the periodic natural convection in an enclosure filled with nanofluids. Whilst a...
In this paper, a numerical study of natural convection in a square enclosure with non-uniform temper...
This paper presents a linear stability analysis of natural convection in a horizontal layer of a vis...
The periodic mixed convection of a water-copper nanofluid inside a rectangular cavity with aspect ra...
Thermorheological effect on the onset of convection in a horizontal nanofluid layer heated from belo...
In the present paper the problem of natural convection of Al2O3-water nanofluid with consideration o...
Thermocapillary flow in a rectangular liquid pool of large Prandtl fluid (Pr = 105.6) is numerically...
Oscillation characteristics and evolution process of large Prandtl number (Pr = 58) nanofluid thermo...
Thermocapillary convection of moderate Prandtl number nanofluid in rectangular cavity is numerically...
To analyze the oscillation and evolution characteristics of nanofluid thermocapillary convection ins...
Natural convection in a differentially heated cubical cavity filled with a water-based nanofluid und...
Natural convection of alumina-water nanofluid inside a square cavity with time-sinusoidal temperatur...
Thermocapillary convection of nanofluid with evaporating phase change interface occurs in a variety ...
The linear stability of nanofluid convection in a horizontal porous layer is examined theoretically ...
A two-phase model based on the double-diffusive approach is used to perform a numerical study on the...
This paper examines the periodic natural convection in an enclosure filled with nanofluids. Whilst a...
In this paper, a numerical study of natural convection in a square enclosure with non-uniform temper...
This paper presents a linear stability analysis of natural convection in a horizontal layer of a vis...
The periodic mixed convection of a water-copper nanofluid inside a rectangular cavity with aspect ra...
Thermorheological effect on the onset of convection in a horizontal nanofluid layer heated from belo...
In the present paper the problem of natural convection of Al2O3-water nanofluid with consideration o...
Thermocapillary flow in a rectangular liquid pool of large Prandtl fluid (Pr = 105.6) is numerically...