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Enhanced thermal conductivity of palmitic acid/copper foam composites with carbon nanotube as thermal energy storage …
Palmitic acid/copper foam composites with carbon nanotubes as composite PCM were prepared. • The CPCM1 melting and solidifying latent heat is 199.30 kJ/kg and 197.70 kJ/kg. • Thermal conductivity of CPCM2 is …
Aerospace | Free Full-Text | Comparative Study of the Thermal …
The evaluation pointed out that 3% topologically optimized aluminum fins with 98% copper foam had the best comprehensive performance. This study guided the …
Effects of thermal conductive fillers on energy storage …
. 。, (TES), …
MXene-modified bio-based pitaya peel foam/polyethylene glycol composite phase change material with excellent photo-thermal …
This work provides the first example of MXene modified pitaya peel foam. • The addition of MXene greatly enhances the thermal conductivity of PEG/BPC@M. • PEG/BPC@M has excellent photo-thermal conversion efficiency up to 92.9 %. • …
Polyurethane foam based composite phase change microcapsules with reinforced thermal conductivity for cold energy storage …
These challenges have prompted the research on finding means of energy storage in cold chain transportation to greatly improve energy utilization and alleviate the energy crisis [7], [8]. Phase change materials (PCM) are widely accepted due to their large amount of latent heat, which absorb and release high-density heat with no temperature …
Supercooling suppression and thermal conductivity enhancement of erythritol using graphite foam with ultrahigh thermal conductivity for thermal ...
The application of erythritol to medium-temperature latent heat energy storage systems is limited by its low thermal conductivity and large supercooling. Three types of graphite foams (GFs) with different thermal conductivities were used as …
Application of multi-scale pore regulation for high thermal …
The multi-scale pore regulation was conducted to reduce the low-λ areas inside foam reinforcement. • Thermal conductivity of the composite was significantly …
Supercooling suppression and thermal conductivity enhancement …
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Investigation and optimal design of partially encapsulated metal …
Metal foam (MF) is considered an effective method to enhance thermal conductivity and uniformity of latent heat thermal energy storage (LHTES). However, the …
Melting and solidification of phase change materials in metal foam filled thermal energy storage …
Although nickel foam has a lower thermal conductivity than copper foam, the thermal conductivity is increased by 6.5 times and 32 times compared with pure PCM, respectively. Xu et al. [39], [40] and Poureslami et al.[39], [40] found that with the increase in the pore density of metal foam, the thermal conductivity was gradually …
Supercooling suppression and thermal conductivity enhancement …
Supercooling suppression and thermal conductivity enhancement of erythritol using graphite foam with ultrahigh thermal conductivity for thermal energy …
Supercooling suppression and thermal conductivity enhancement of erythritol using graphite foam with ultrahigh thermal conductivity …
The obtained results confirmed the feasibility of using erythritol–graphite foam as a new phase change composite for thermal energy storage (TES) applications, thus it can contribute to the ...
Thermal conductivity enhancement of phase change materials with 3D porous diamond foam for thermal energy storage …
Abstract: For thermal energy storage applications using phase change materials (PCMs), the power capacity is often limited by the low thermal conductivity (λPCM). Here, a three-dimensional (3D) diamond foam (DF) is proposed by template-directed chemical vapor deposition (CVD) on Cr-modified Cu foam as highly conductive filler for paraffin-based …
Enhanced thermal conductivity of phase change …
For thermophysical energy storage with phase change materials (PCMs), the power capacity is often limited by the low PCM thermal conductivity (κPCM). Though dispersing high-thermal conductivity nanotubes and …
Thermal conductivity enhancement of phase change materials …
Abstract: For thermal energy storage applications using phase change materials (PCMs), the power capacity is often limited by the low thermal conductivity (λPCM). Here, a …
Preparation and effective thermal conductivity of a Paraffin/ Metal Foam composite …
In [49], the thermal conductivity of paraffin/ nickel foam with porosity of 0.90 is 4.37 W/ (m.K). This brings out the great impact of porosity on the effective thermal conductivity of PCM/ metal foam. The two nickel foams used in this study have almost the same porosity but different pore diameters. The results found show the small impact of ...
Advances in thermal energy storage: Fundamentals and …
Low thermal conductivity, supercooling, leakage of the molten PCMs, thermal instability, phase segregation and corrosion of the energy storage containers are unavoidable challenges. All such limitations and challenges have been gone through a detailed discussion, and recommendations have been proposed concerning prospects.
Thermal conductivity and energy storage capacity enhancement …
The large thermal energy storage capacity, enhanced thermal conductivity and suitable phase change temperature make these composite PCMs …
Thermal behavior of Composite Material (nanoPCM/aluminum foam) used for thermal energy storage (TES) applications …
According to the effective graphite density and graphite orientation, it is found that the thermal conductivity of these composites is as high as 70W/(m • K) (2). On analytical and numerical ...
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