Javascript must be enabled to continue!
Explosive Boiling of Water on a Hot Copper Plate: A Molecular Dynamics Simulation Study
View through CrossRef
Non-equilibrium molecular dynamics simulations have been employed to study the explosive boiling phenomena of water over a hot copper plate. The molecular system was comprised of three sections: solid copper wall, liquid water, and water vapor. A few layers of the liquid water were placed on the solid Cu surface. The rest of the simulation box was filled with water vapor. Initially, the water molecules were equilibrated by using Berendsen thermostat at 298 K. Then heat was given to the copper plate at different temperatures so that explosive boiling occurs. After achieving the equilibrium by performing the previous two steps, the liquid water at 298 K is suddenly dropped on the hot plate. NVE ensemble was used in the simulation and the temperature of the copper plate was controlled to different temperatures with phantom atom thermostat. Four temperatures (400K, 500K, 650 K and 1000K) were taken to study the explosive boiling. The simulation results show that, the explosive boiling temperature of water on Cu plate is 500 K temperature. At this point, the energy flux was found 1.79x108 J/m3 which is very promising with the experimental results. Moreover, if the temperature of the surface was increased the explosive boiling occurred at a faster rate. The simulation results also show that explosive boiling occurs earlier for the hydrophilic surface than hydrophobic surface as for the hydrophilic surface the water attracted the Cu plate more than the hydrophobic surface and so the amount of energy transfer is more for the hydrophilic surface.
Trans Tech Publications, Ltd.
Title: Explosive Boiling of Water on a Hot Copper Plate: A Molecular Dynamics Simulation Study
Description:
Non-equilibrium molecular dynamics simulations have been employed to study the explosive boiling phenomena of water over a hot copper plate.
The molecular system was comprised of three sections: solid copper wall, liquid water, and water vapor.
A few layers of the liquid water were placed on the solid Cu surface.
The rest of the simulation box was filled with water vapor.
Initially, the water molecules were equilibrated by using Berendsen thermostat at 298 K.
Then heat was given to the copper plate at different temperatures so that explosive boiling occurs.
After achieving the equilibrium by performing the previous two steps, the liquid water at 298 K is suddenly dropped on the hot plate.
NVE ensemble was used in the simulation and the temperature of the copper plate was controlled to different temperatures with phantom atom thermostat.
Four temperatures (400K, 500K, 650 K and 1000K) were taken to study the explosive boiling.
The simulation results show that, the explosive boiling temperature of water on Cu plate is 500 K temperature.
At this point, the energy flux was found 1.
79x108 J/m3 which is very promising with the experimental results.
Moreover, if the temperature of the surface was increased the explosive boiling occurred at a faster rate.
The simulation results also show that explosive boiling occurs earlier for the hydrophilic surface than hydrophobic surface as for the hydrophilic surface the water attracted the Cu plate more than the hydrophobic surface and so the amount of energy transfer is more for the hydrophilic surface.
Related Results
Potable Water Sources, Household Hygiene, and Sanitation Practices in Ikpoba Okha LGA, Edo State: Implications for Public Health and Sustainable Water Management
Omoregie, Andrew Edosa.1 Omoregie Abieyuwa Peace2 Okoro, Enyinnaya Okoro.3
1 College of Medi
Potable Water Sources, Household Hygiene, and Sanitation Practices in Ikpoba Okha LGA, Edo State: Implications for Public Health and Sustainable Water Management
Omoregie, Andrew Edosa.1 Omoregie Abieyuwa Peace2 Okoro, Enyinnaya Okoro.3
1 College of Medi
BACKGROUND
Access to potable drinking water and sufficient sanitation continues to be an urgent global concern, particularly in developing regions where con...
Environmental Surveillance Protocols for Highly Pathogenic Avian Influenza (HPAI) v2
Environmental Surveillance Protocols for Highly Pathogenic Avian Influenza (HPAI) v2
EnvironmentalSurveillance Protocols for Highly Pathogenic Avian Influenza (HPAI) This comprehensive protocol suite enables systematic environmental surveillance for avian influenza...
Optimization of boiling heat transfer by visualization and boiling sound in a boiling bubble resonator
Optimization of boiling heat transfer by visualization and boiling sound in a boiling bubble resonator
Abstract
The boiling bubble resonator (BBR) is a heat transfer enhancement technique that uses boiling bubbles. Boiling heat transfer enhancement by a BBR is passive, usi...
Use of Formation Water and Associated Gases and their Simultaneous Utilization for Obtaining Microelement Concentrates Fresh Water and Drinking Water
Use of Formation Water and Associated Gases and their Simultaneous Utilization for Obtaining Microelement Concentrates Fresh Water and Drinking Water
Abstract Purpose: The invention relates to the oil industry, inorganic chemistry, in particular, to the methods of complex processing of formation water, using flare gas of oil and...
Molecular Dynamics Simulation of Ultra-Fast Phase Transition in Water Nanofilms
Molecular Dynamics Simulation of Ultra-Fast Phase Transition in Water Nanofilms
Abstract
Molecular dynamics simulations are used to explore explosive boiling of thin water films on a gold substrate. In particular, water films of 2.5, 1.6 and 0.7...
Boiling performance on nanostructure coated tubes with water and FC-72
Boiling performance on nanostructure coated tubes with water and FC-72
Boiling heat transfer is used in many applications, such as power generation and refrigeration, because of the ability to transfer a large amount of heat energy due to the phase ch...
Isolation And Characterization Of Biosurfactant Producing Bacteria From Different Environmental Soil Samples
Isolation And Characterization Of Biosurfactant Producing Bacteria From Different Environmental Soil Samples
Biosurfactants are natural substances produced by several bacterial and fungal organisms that are amphiphilic and are extracellular (a part of the cell membrane). Biosurfactants ca...
Integrated hydrological modelling for sustainable water allocation planning : Mkomazi Basin, South Africa case study
Integrated hydrological modelling for sustainable water allocation planning : Mkomazi Basin, South Africa case study
Allocation of freshwater resources between societal needs and natural ecological systems is of great concern for water managers. This development has challenged decision-makers reg...

