Nucleate pool boiling of distilled water on a plain copper surface has been investigated experimentally and modeled numerically. In the experimental study, bubble behavior on a single nucleation site was observed using high-speed photography and long-distance microscopy. Diameter for a single bubble growth was determined during the ebullition cycle via recordings. Numerical simulations have been carried out using CLSVOF method using ANSYS 18.2. To verify the simulation, the bubble growth period is compared with the results of the experimental study. Data from the numerical results compare reasonably well with the experimental study
The basic mechanisms of nucleate boiling are still not completely understood, in spite of the many n...
Multi-dimensional numerical simulation of the atmospheric saturated pool boiling is performed. The a...
Quantitative measurements are obtained from high-speed visualizations of pool boiling at atmospheric...
Quantitative measurements are obtained from high-speed visualizations of pool boiling at atmospheric...
Nucleate boiling is a very effective heat transfer cooling process, used in numerous industrial appl...
This paper reports progress on a project to develop a design tool for large arrays of nucleation sit...
When dealing with numerical simulations of boiling phenomena, the spontaneous appearance of vapor bu...
Quantitative measurements are obtained from high-speed visualizations of pool boiling at atmospheric...
The vapor bubble formation on the heating surface during pool boiling has been studied experimentall...
Multi-dimensional numerical simulation of the atmospheric saturated pool boiling is performed. The a...
Bubble dynamics of pool boiling of nanofluids has been experimentally investigated. The boiling surf...
Nucleate pool boiling experiments with constant wall temperature were performed using pure R113 for ...
The effect of surface roughness on nucleate boiling heat transfer is not clearly understood. This st...
Understanding nucleate pool boiling heat transfer and, in particular the accurate prediction of cond...
While much attention has been given to the phenomenon of boiling, the underlying physics and mechani...
The basic mechanisms of nucleate boiling are still not completely understood, in spite of the many n...
Multi-dimensional numerical simulation of the atmospheric saturated pool boiling is performed. The a...
Quantitative measurements are obtained from high-speed visualizations of pool boiling at atmospheric...
Quantitative measurements are obtained from high-speed visualizations of pool boiling at atmospheric...
Nucleate boiling is a very effective heat transfer cooling process, used in numerous industrial appl...
This paper reports progress on a project to develop a design tool for large arrays of nucleation sit...
When dealing with numerical simulations of boiling phenomena, the spontaneous appearance of vapor bu...
Quantitative measurements are obtained from high-speed visualizations of pool boiling at atmospheric...
The vapor bubble formation on the heating surface during pool boiling has been studied experimentall...
Multi-dimensional numerical simulation of the atmospheric saturated pool boiling is performed. The a...
Bubble dynamics of pool boiling of nanofluids has been experimentally investigated. The boiling surf...
Nucleate pool boiling experiments with constant wall temperature were performed using pure R113 for ...
The effect of surface roughness on nucleate boiling heat transfer is not clearly understood. This st...
Understanding nucleate pool boiling heat transfer and, in particular the accurate prediction of cond...
While much attention has been given to the phenomenon of boiling, the underlying physics and mechani...
The basic mechanisms of nucleate boiling are still not completely understood, in spite of the many n...
Multi-dimensional numerical simulation of the atmospheric saturated pool boiling is performed. The a...
Quantitative measurements are obtained from high-speed visualizations of pool boiling at atmospheric...