In this paper, an investigation of a new innovation of heat storage properties of thermal conductivity enhancement via a newly formulated composite consists of paraffin wax incorporated with waste aluminum can from solid municipal waste as the potential PCM composite was studied. The samples composite was synthesized at different percentage of waste aluminum powder mass loading ranging from 0wt% until 100wt% into the paraffin wax and characterized. From differential scanning calorimetry (DSC) analysis, the rate of heat flow has been has found to be increased as more mass loading of waste aluminum was added. However, the latent heat during melting and freezing of DSC data has reduced. This is due to the high amount filler which has reduced t...
Experimental study was carried out to study the phase change heat transfer within a composite of pha...
In the present study, Paraffin wax and Myristic acid were chosen as PCM for the analysis. Further, n...
Latent heat energy storage systems using paraffin wax could have lower heat transfer rates during m...
In this paper, an investigation of a new innovation of heat storage properties of thermal conductivi...
Thermal energy storage plays a key role in the application of renewable energy sources and it thus c...
Thermal energy storage systems (TES) based on shape-stabilized phase change materials (SSPCM) design...
Implementation of organic materials in the thermal energy storage (TES) systems has been one of the ...
Passive thermal management with phase change materials (PCMs) has become the one of the most promisi...
In the last decade, the use of Phase Change Materials (PCMs) as passive thermal energy storage has b...
Thermo-physical property study of the Phase Change Material (PCM) is necessary to build an efficient...
The latent heat thermal storage using Phase Change Materials (PCMs) is one of the essential aspects ...
Phase Change Materials (PCMs) are able to store a large amount of heat due to their high latent heat...
An investigation of thermal conductivity enhancement, melting and solidification processes of Phase ...
The latent heat absorption phenomenon associated with melting of a suitable Phase Change Material ca...
The latent heat absorption phenomenon associated with melting of a suitable Phase Change Material (P...
Experimental study was carried out to study the phase change heat transfer within a composite of pha...
In the present study, Paraffin wax and Myristic acid were chosen as PCM for the analysis. Further, n...
Latent heat energy storage systems using paraffin wax could have lower heat transfer rates during m...
In this paper, an investigation of a new innovation of heat storage properties of thermal conductivi...
Thermal energy storage plays a key role in the application of renewable energy sources and it thus c...
Thermal energy storage systems (TES) based on shape-stabilized phase change materials (SSPCM) design...
Implementation of organic materials in the thermal energy storage (TES) systems has been one of the ...
Passive thermal management with phase change materials (PCMs) has become the one of the most promisi...
In the last decade, the use of Phase Change Materials (PCMs) as passive thermal energy storage has b...
Thermo-physical property study of the Phase Change Material (PCM) is necessary to build an efficient...
The latent heat thermal storage using Phase Change Materials (PCMs) is one of the essential aspects ...
Phase Change Materials (PCMs) are able to store a large amount of heat due to their high latent heat...
An investigation of thermal conductivity enhancement, melting and solidification processes of Phase ...
The latent heat absorption phenomenon associated with melting of a suitable Phase Change Material ca...
The latent heat absorption phenomenon associated with melting of a suitable Phase Change Material (P...
Experimental study was carried out to study the phase change heat transfer within a composite of pha...
In the present study, Paraffin wax and Myristic acid were chosen as PCM for the analysis. Further, n...
Latent heat energy storage systems using paraffin wax could have lower heat transfer rates during m...