We carry out simulations of the melting process on the phase change material n-octadecane in squared geometries in the presence of natural convection and including thermocapillary effects. We show how the introduction of thermocapillary effects enhances the heat transfer rate, being the effect especially relevant for small Bond numbers. Thus induction of Marangoni flows results in a useful mechanism to enhance the typical slow heat transfer rate of paraffin waxes in applications of energy storage or passive control management
The paper reports experimental and numerical investigation of the melting front propagation in a par...
The present study is devoted to numerical investigation of heat and mass transfer inside finned heat...
For the numerical simulation of a heat storage based on phase change materials (PCMs) an enhanced mo...
We carry out simulations of the melting process on the phase change material n-octadecane in squared...
We carry out extensive numerical simulations on the melting of the Phase Change Material n-octadecan...
A heat transfer characteristic of paraffin wax by natural convection was studied experimentally. A s...
Phase Change Materials (PCMs) are able to store a large amount of heat due to their high latent heat...
Phase change materials are one of the potential resources to replace fossil fuels in regards of supp...
The Thermocapillary Effects in Phase Change Materials in Microgravity (TEPiM) experiment aims to ana...
The use of materials such as paraffin is widespread in modern energy industries. The ability to abso...
International audienceMetal foam embedded in phase change materials (PCM) has been shown to signific...
Latent heat storage could play an important role in bridging the gap between supply and demand of su...
Abstract: COMSOL Multiphysics can be used to model a latent heat energy storage system (LHESS). Howe...
Two mass-accommodation methods are proposed to describe the melting of paraffin wax used as a phase-...
Surface tension and buoyancy are two important convection mechanisms in the growth of crystal and al...
The paper reports experimental and numerical investigation of the melting front propagation in a par...
The present study is devoted to numerical investigation of heat and mass transfer inside finned heat...
For the numerical simulation of a heat storage based on phase change materials (PCMs) an enhanced mo...
We carry out simulations of the melting process on the phase change material n-octadecane in squared...
We carry out extensive numerical simulations on the melting of the Phase Change Material n-octadecan...
A heat transfer characteristic of paraffin wax by natural convection was studied experimentally. A s...
Phase Change Materials (PCMs) are able to store a large amount of heat due to their high latent heat...
Phase change materials are one of the potential resources to replace fossil fuels in regards of supp...
The Thermocapillary Effects in Phase Change Materials in Microgravity (TEPiM) experiment aims to ana...
The use of materials such as paraffin is widespread in modern energy industries. The ability to abso...
International audienceMetal foam embedded in phase change materials (PCM) has been shown to signific...
Latent heat storage could play an important role in bridging the gap between supply and demand of su...
Abstract: COMSOL Multiphysics can be used to model a latent heat energy storage system (LHESS). Howe...
Two mass-accommodation methods are proposed to describe the melting of paraffin wax used as a phase-...
Surface tension and buoyancy are two important convection mechanisms in the growth of crystal and al...
The paper reports experimental and numerical investigation of the melting front propagation in a par...
The present study is devoted to numerical investigation of heat and mass transfer inside finned heat...
For the numerical simulation of a heat storage based on phase change materials (PCMs) an enhanced mo...