Performance prediction of cold thermal energy storage (CTES) devices is an important step in guiding their design and application. However, related studies are limited, and some do not consider the influence of structural parameters. In this study, a CTES with metal foam–composite phase-change materials (PCMs) was built, and the influence mechanism of the physical parameters of PCMs and structural parameters of metal foam on the melting of composite PCMs was studied through experiments, theory, and numerical simulation. Results show that the porosity, the material of the metal foam, and the thickness of the metal foam are the main factors affecting the melting rate and heat transfer strength of PCMS, whereas the effect of pore density can b...
Phase change materials (PCMs) are drawing increasing attention of researchers nowadays, and they pla...
The heat transfer enhancement for phase change materials (PCMs) has received much attention nowadays...
In the last decade, the use of Phase Change Materials (PCMs) as passive thermal energy storage has b...
Performance prediction of cold thermal energy storage (CTES) devices is an important step in guiding...
The performance of phase change materials (PCM) as energy storage units are often limited by their l...
International audienceAs a kind of material with high thermal conductivity, metal foam embedded in p...
International audienceThe metal foam/phase change material (PCM) composite is a promising material i...
Phase Change Materials (PCMs) are suitable materials to be included in Latent Thermal Energy Storage...
International audiencePore-scale numerical simulation is conducted to study the thermal performance ...
A major challenge for the use of phase change materials (PCMs) in thermal energy storage (TES) is ov...
A numerical investigation on the effects of the metal foam into the Latent Heat Thermal Energy Stora...
In this paper, the feasibility of using metal foams to enhance the heat transfer capability of phase...
International audienceThree methods to further enhance thermal performance of the metal foam/phase c...
The thermal performance of latent heat thermal energy storage (LHTES) systems considerably depends ...
This study explores the effects of material types and structural parameters of metal foam, and heati...
Phase change materials (PCMs) are drawing increasing attention of researchers nowadays, and they pla...
The heat transfer enhancement for phase change materials (PCMs) has received much attention nowadays...
In the last decade, the use of Phase Change Materials (PCMs) as passive thermal energy storage has b...
Performance prediction of cold thermal energy storage (CTES) devices is an important step in guiding...
The performance of phase change materials (PCM) as energy storage units are often limited by their l...
International audienceAs a kind of material with high thermal conductivity, metal foam embedded in p...
International audienceThe metal foam/phase change material (PCM) composite is a promising material i...
Phase Change Materials (PCMs) are suitable materials to be included in Latent Thermal Energy Storage...
International audiencePore-scale numerical simulation is conducted to study the thermal performance ...
A major challenge for the use of phase change materials (PCMs) in thermal energy storage (TES) is ov...
A numerical investigation on the effects of the metal foam into the Latent Heat Thermal Energy Stora...
In this paper, the feasibility of using metal foams to enhance the heat transfer capability of phase...
International audienceThree methods to further enhance thermal performance of the metal foam/phase c...
The thermal performance of latent heat thermal energy storage (LHTES) systems considerably depends ...
This study explores the effects of material types and structural parameters of metal foam, and heati...
Phase change materials (PCMs) are drawing increasing attention of researchers nowadays, and they pla...
The heat transfer enhancement for phase change materials (PCMs) has received much attention nowadays...
In the last decade, the use of Phase Change Materials (PCMs) as passive thermal energy storage has b...