The main drawbacks faced by researchers to successfully implement organic-PCM as materials to improve the thermal performance of building systems are their low thermal conductivity, their high flammability, and their low thermal cycling stability. T In the present work, authors present a new enhanced PCM formulations aimed to solve the stated disadvantages in organic bulk-PCM. The new enhanced PCM were prepared by adding high thermal conductivity particles and two kinds of flame retardants into organic PCM (paraffin and fatty acid eutectic mixtures). In the first stage, the effective thermal conductivity of organic-PCM was increased by using two different methods: directly dispersion of powder graphite (PG) bulk-PCM and vacuum impregnation ...
Phase change materials (PCMs) have the ability to store thermal energy as latent heat over a nearly ...
Currently, there is an expanded utilisation of lightweight construction structures in buildings, whi...
Graphite (Grp) powder, nano-silicon (Si) powder, nano-copper (Cu) powder, nano-tungsten (Wu) powder,...
The main drawbacks faced by researchers to successfully implement organic-PCM as materials to improv...
The implementation of organic phase change materials (PCMs) in several applications such as heating ...
The implementation of organic phase change materials (PCMs) in several applications such as heating ...
Organic PCM stands for an alternative to the enhancement of thermal inertia inside buildings. In con...
Phase change materials (PCM) have been proved to be an effective tool to regulate indoor temperature...
Energy storage using organic phase change materials (PCMs) has attracted significant attention in r...
Thermal energy storage as sensible or latent heat is an efficient way to conserve the waste heat and...
The building sector is one of the highest energy consumers representing around 30% of total energy u...
Efficient and sustainable thermal management of buildings is critical since the building sector is c...
This research aimed to evaluate the thermal properties of new formulations of phase change materials...
AbstractThis work focuses on developing a high performance phase change materials (PCMs) adding with...
The review contains information o; n the properties of phase-change materials (PCM) and the possibil...
Phase change materials (PCMs) have the ability to store thermal energy as latent heat over a nearly ...
Currently, there is an expanded utilisation of lightweight construction structures in buildings, whi...
Graphite (Grp) powder, nano-silicon (Si) powder, nano-copper (Cu) powder, nano-tungsten (Wu) powder,...
The main drawbacks faced by researchers to successfully implement organic-PCM as materials to improv...
The implementation of organic phase change materials (PCMs) in several applications such as heating ...
The implementation of organic phase change materials (PCMs) in several applications such as heating ...
Organic PCM stands for an alternative to the enhancement of thermal inertia inside buildings. In con...
Phase change materials (PCM) have been proved to be an effective tool to regulate indoor temperature...
Energy storage using organic phase change materials (PCMs) has attracted significant attention in r...
Thermal energy storage as sensible or latent heat is an efficient way to conserve the waste heat and...
The building sector is one of the highest energy consumers representing around 30% of total energy u...
Efficient and sustainable thermal management of buildings is critical since the building sector is c...
This research aimed to evaluate the thermal properties of new formulations of phase change materials...
AbstractThis work focuses on developing a high performance phase change materials (PCMs) adding with...
The review contains information o; n the properties of phase-change materials (PCM) and the possibil...
Phase change materials (PCMs) have the ability to store thermal energy as latent heat over a nearly ...
Currently, there is an expanded utilisation of lightweight construction structures in buildings, whi...
Graphite (Grp) powder, nano-silicon (Si) powder, nano-copper (Cu) powder, nano-tungsten (Wu) powder,...