Analysis of a phase change material-based unit and of an aluminum foam/phase change material composite-based unit for cold thermal energy storage by numerical simulation Appl. Energy, 256 ( 2019 ), Article 113921
Consult MoreReduced graphene oxide and zirconium carbide co-modified melamine sponge/paraffin wax composites as new form-stable phase change materials for photothermal energy conversion and storage Appl. Therm. Eng., 163 ( 2019 ), Article 114412, 10.1016/j.applthermaleng.2019.114412
Consult More1. Introduction. Recent developments in social industrialization, energy, and. environmental fields have gradually aroused a series of. problems, and thereby restrict the social advancement ...
Consult MorePhase change materials (PCMs) that are used as storage media in latent thermal energy storage can be classified into two major categories: inorganic compounds and organic compounds. Inorganic PCMs include salt hydrates, salts, metals and alloys, whereas organic PCMs are comprised of paraffin, fatty acids/esters and polyalcohols.
Consult MoreIn this paper, SiC nanowires were used to encapsulate composite phase change energy storage materials and resulted in better performance. In this method, …
Consult MoreLatent heat storage, also known as phase change heat storage, uses the phase change of PCMs to store large amounts of latent heat. Comparatively, PCMs are particularly attractive due to their high energy storage density and ability storing the latent heat enthalpy at a constant temperature, which is of great importance in those …
Consult MorePhase change materials (PCMs) offer great potential for realizing zero-energy thermal management due to superior thermal storage and stable phase-change …
Consult MoreFlame-Retardant and Form-Stable Delignified Wood-Based Phase Change Composites with Superior Energy Storage Density and Reversible Thermochromic Properties for Visual Thermoregulation. …
Consult MoreTherefore, such composite PCM can be functioned as the thermal energy storage material while being used as the structural configuration simultaneously. The GO sheets composite PCMs fabricated by Mehrali et al. [22], [23] improved the thermal conductivity of palmitic acid and paraffin from 0.21 W/(m K) and 0.287 W/(m K) to …
Consult MoreThis paper concerns mainly about TES materials challenges with a specific focus on using shape stable composite phase change materials (CPCMs) for medium and high temperature application.
Consult MoreAbstract. Thermal storage technology based on phase change material (PCM) holds significant potential for temperature regulation and energy storage application. However, solid–liquid PCMs are often limited by leakage issues during phase changes and are not sufficiently functional to meet the demands of diverse applications.
Consult More1-Octadecanol@hierarchical porous polymer composite as a novel shape-stability phase change material for latent heat thermal energy storage Appl Energy, 187 ( 2017 ), pp. 514 - 522 View PDF View article View in Scopus Google Scholar
Consult MoreBased on stearic acid as phase change energy storage material, Liu Feng et al established a test bench for the heat storage and discharge characteristics of phase …
Consult MoreHigh performance form-stable expanded graphite/stearic acid composite phase change material for modular thermal energy storage International Journal of Heat and Mass Transfer, 102 ( 2016 ), pp. 733 - 744
Consult MorePhase change material Energy storage Acknowledgements Conflict of interest: The authors declare no conflict of interest. Citation Li, P., Chen, Q., Peng, Q. and He, X. (2021), "Paraffin/graphene sponge composite as a shape-stabilized phase change material for
Consult MoreAt present, low heat storage capacity of organic phase change materials (PCMs) becomes a common problem, and the addition of matrix can contribute to its application in practical engineering. Mixing the porous expanded graphite (EG) with Co 3 O 4 via carbonation of ZIF-67 uniformly, the composite materials PVP@Co 3 O 4 /EG …
Consult MoreHigh-performance composite phase change materials (PCMs), as advanced energy storage materials, have been significantly developed …
Consult MoreThe development of high temperature phase change materials (PCMs) with great comprehensive performance is significant in the future thermal energy storage system. In this study, novel and durable Al-Si/Al 2 O 3-AlN composite PCMs with controllable melting temperature were successfully synthesized by using pristine Al …
Consult MoreAs opposed to sensible heat storage approach, by going through melting/solidification phase change processes, PCMs can store/release thermal energy in the form of latent heat [3]. That said, at the melting point of a PCM, the heat storage/release process occurs almost isothermally [ 4 ] which is claimed to be one of the most efficient …
Consult MoreThermal energy storage (TES) techniques are classified into thermochemical energy storage, sensible heat storage, and latent heat storage (LHS). [ 1 - 3 ] Comparatively, LHS using phase change …
Consult MoreNovel composite phase change materials supported by oriented carbon fibers are proposed • High vertical thermal conductivity of 5.84 W·K −1 ·m −1 and low horizontal thermal conductivity of 1.34 W·K −1 ·m −1 are obtained High solar-to-thermal efficiencies of 87.54 ...
Consult MoreThis research paper presents a novel method of preparing shaped composite phase change materials (CPCMs) with highly aligned honeycomb BN aerogel by freeze-vacuum drying under the control of a temperature gradient. The paper discusses the advantages of this method over conventional ones, such as enhanced thermal …
Consult MoreIn this paper, NaCl–CuO based composite phase change material (CPCM) was proposed based on the composite material design strategy, and the microstructure model was designed. The microscale solid–liquid interface behavior during phase transition was investigated by observing the dynamic evolution of microstructure at …
Consult MorePhoto-thermal conversion phase-change composite energy storage materials (PTCPCESMs) are widely used in various industries because of their high thermal conductivity, high photo-thermal conversion efficiency, high …
Consult MoreHere, we review the recent advances in thermal energy storage by MOF-based composite phase change materials (PCMs), including pristine MOFs, MOF composites, and their derivatives. At the same time, this review offers in-depth insights into the correlations between MOF structure and thermal performance of composite PCMs.
Consult MoreNovel strategies and supporting materials applied to shape-stabilize organic phase change materials for thermal energy storage–a review [J] Appl Energy, 235 ( 2019 ), pp. 846 - 873 View PDF View article View in Scopus Google Scholar
Consult MoreHowever, PEG is considered an excellent phase change energy storage material due to its stable melting behavior, high latent heat of fusion, safety, and non-corrosiveness. However, as a common solid-liquid PCM, PEG requires storage in hermetically sealed containers to prevent leakage during the melting process.
Consult MorePhase change materials (PCMs) provide passive storage of thermal energy in buildings to flatten heating and cooling load profiles and minimize peak energy demands. They are commonly microencapsulated in a protective shell to enhance thermal transfer due to their much larger surface-area-to-volume ratio.
Consult MoreResearch on phase change material (PCM) for thermal energy storage is playing a significant role in energy management industry. However, some hurdles during …
Consult MoreTo provide a higher heat dissipation rate over the electronics, metal foam/phase change material (PCM) composites with relatively low porosity have been experimented with in previous efforts. This study aimed to test the thermal performance of metal foam/PCM composite heat sink configurations under a constant heat load.
Consult MoreComposite phase change material (CPCM) with the advantages of high enthalpy and constant temperature phase change, has been widely used in many fields, …
Consult MoreCarbon fiber is a fibrous carbon material with carbon content of more than 90%. It has the characteristics of high temperature resistance, corrosion resistance, low density (less than 2.26 g/cm 3), low thermal expansion coefficient and high thermal conductivity (some more than 1000 W/(m k)), and can be compatible with most organic …
Consult MoreCarbonate salt based composite phase change materials for medium and high temperature thermal energy storage: From component to device level performance through modelling Renew. Energy, 140 ( 2019 ), pp. 140 - 151, 10.1016/j.renene.2019.03.005
Consult MoreThe thermal conductivity of PW/HGF composite phase change materials is 74.4% and 87% higher than that of pure paraffin wax and PW/GF composite phase change materials, respectively, and the energy storage density is 95% of that of pure PW.
Consult MoreHerein, we systematically summarize the optimization strategies and mechanisms of recently reported composite PCMs for thermal energy storage, thermal transfer, energy …
Consult More