Dissipative particle dynamics with energy conversion (DPDe) is a simulation technique that has been used to model thermal transport characteristics and heat transfer at mesoscale. This study shows further development of the DPDe method capturing solid/liquid phase-change phenomena and its application to water freezing in a parallel-plate straight channel. In this work, the weighting functions of the random and dissipative forces are modeled as functions of temperature in order to correctly predict the temperature dependent properties of the fluid in a two-dimensional domain. An equation of state is incorporated in the model in order to model the solidification of water. Careful consideration is taken to couple the latent heat of the system ...
Fluid flow is ubiquitous in nature and human life. In material processing, it plays an important rol...
Dissipative particle dynamics is a particle-based mesoscopic simulation method. Classic dissipative ...
A novel method for the treatment of solid-liquid interfaces in the framework of dissipative particle...
In this paper, energy conserving Dissipative Particle Dynamics (DPDe) is used to study liquid charac...
The effects of temperature-dependent thermophysical properties on droplet flow characteristics in a ...
The primary objective of this dissertation is to develop theoretical and computational tools to simu...
The primary objective of this dissertation is to develop theoretical and computational tools to simu...
Dissipative particle dynamics (DPD) have been widely used for the simulations of dynamics of both si...
In this work we investigate the transient solidification of a Lennard-Jones liquid using non-equilib...
The topic of this work is simulations of porous materials and transport phenomena at a mesoscopic le...
In this work we investigate the transient solidification of a Lennard-Jones liquid using non-equilib...
Simulations of nano- to micro-meter scale fluidic systems under thermal gradients require consistent...
Dissipative particle dynamics (DPD) is an emerging mesoscopic computational method in which the inte...
Dissipative particle dynamics (DPD) is a mesoscopic simulation method for studying hydrodynamic beha...
This study explores the potential of dissipative particle dynamics (DPD) for the sim-ulation of nano...
Fluid flow is ubiquitous in nature and human life. In material processing, it plays an important rol...
Dissipative particle dynamics is a particle-based mesoscopic simulation method. Classic dissipative ...
A novel method for the treatment of solid-liquid interfaces in the framework of dissipative particle...
In this paper, energy conserving Dissipative Particle Dynamics (DPDe) is used to study liquid charac...
The effects of temperature-dependent thermophysical properties on droplet flow characteristics in a ...
The primary objective of this dissertation is to develop theoretical and computational tools to simu...
The primary objective of this dissertation is to develop theoretical and computational tools to simu...
Dissipative particle dynamics (DPD) have been widely used for the simulations of dynamics of both si...
In this work we investigate the transient solidification of a Lennard-Jones liquid using non-equilib...
The topic of this work is simulations of porous materials and transport phenomena at a mesoscopic le...
In this work we investigate the transient solidification of a Lennard-Jones liquid using non-equilib...
Simulations of nano- to micro-meter scale fluidic systems under thermal gradients require consistent...
Dissipative particle dynamics (DPD) is an emerging mesoscopic computational method in which the inte...
Dissipative particle dynamics (DPD) is a mesoscopic simulation method for studying hydrodynamic beha...
This study explores the potential of dissipative particle dynamics (DPD) for the sim-ulation of nano...
Fluid flow is ubiquitous in nature and human life. In material processing, it plays an important rol...
Dissipative particle dynamics is a particle-based mesoscopic simulation method. Classic dissipative ...
A novel method for the treatment of solid-liquid interfaces in the framework of dissipative particle...