The growing demand for sustainable energy storage solutions has underscored the importance of phase change materials (PCMs) for thermal energy management. However,
Effective and reliable encapsulation of phase change materials (PCMs) is essential and critical to the high-performance solar-thermal energy harvesting and storage. However, challenges
近期,我院研究生宋子龙(一作),教师王蛟(通讯)等的研究成果"Dual-objective topology optimization design for latent heat storage systems using composite phase
Latent heat storage materials or called phase change materials (PCM) use the latent heat during the melting process to store energy, which have a large energy storage
Abstract:Thermal energy storage, management, and utilization with phase change materials have received increasing attention in industrial fields such as photo-thermal-electric conversion and
Abstract Latent heat thermal energy storage (LHTES) systems are integral for achieving a balanced energy supply and demand, particularly in the context of integrating
Phase change energy storage materials (PCESM) refer to compounds capable of efficiently storing and releasing a substantial quantity of thermal energy during the phase
A technology of phase change heat storage and bionics, applied in the field of energy storage applications, can solve problems such as low thermal efficiency and slow response speed
Bioinspired composites for thermal energy storage have gained much attention all over the world. Bioinspired structures have several advantages as the skeleton for preparing
An energy storage board, bionic phase technology, applied in heat storage equipment, lighting and heating equipment, indirect heat exchangers, etc. The effect of high utilization efficiency
Recently, the technology of mixing phase change materials with high thermal conductivity fillers was developed, which has allowed thermal energy storage to be implemented in a wide range
Herein, a novel composite phase change material (CPCM) with high-thermal conductivity and stability based on bionic porous SiC skeleton is proposed, which is oriented
This paper investigates the enhanced heat transfer performance of a phase change thermal energy storage system (TES) using alveolar vessel-inspired fins and nano-fluid.
Biomimetic structures have emerged as a novel source of inspiration for PTM applications. This review systematically summarizes the biomimetic structures, phase change
During the long spatiotemporal evolution, the fractal network follows the principle of minimum energy dissipation, becoming the characteristic structure of energy-mass transport
Multifunctional phase change composites are in great demand for all kinds of industrial technologies and applications, which have both superior latent heat capacity and
Energy storage experiments and solar-thermal conversion reflected that the efficiency of phase change of hierarchically bionic porous materials can be further improved by
Request PDF | On Jul 1, 2025, Yangkai Xia and others published Design and optimization of a novel phase change heat storage unit with a bionic nautilus-inspired structure | Find, read and
The latent heat storage (LHS) technique has been widely applied in various thermal energy conversion and management fields. However, LHS device suffers from very
Phase change materials (PCMs) in solid-liquid form have the benefits of minimal volume alteration, high energy storage capacity, and appropriate phase transition temperature.
Latent heat thermal energy storage (LHTES) systems are integral for achieving a balanced energy supply and demand, particularly in the context of integrating renewable energy sources.
Latent heat storage system utilizing a packed-bed setup with encapsulated phase change materials (EPCMs) can address the issues of mismatched energy supply and
Abstract Low thermal conductivity limits the application of phase change material (PCM) in a battery cooling system as a passive thermal management system. Leaf
Thermal energy storage, management, and utilization with phase change materials have received increasing attention in industrial fields such as photo-thermal-electric conversion and integrated
Increasing the number of fins can significantly increase the heat storage rate of bionic-conch phase change capsules. Decreasing the capsule wall thickness significantly increases the heat storage rate of phase change capsules. Adding a slightly off-center thermal conductive ring improves the slow heat transfer rate in the localized ring region.
Phase change thermal storage systems offer distinct advantages compared to sensible heat storage methods. An area that is now being extensively studied is the improvement of heat transmission in thermal storage systems that involve phase shift . Phase shift energy storage technology enhances energy efficiency by using RESs.
The reason for this is that the spiral fin structure inside the bionic-conch phase change capsule increases the heat transfer area and thus significantly improves the thermal energy storage efficiency.
1. Introduction Phase change energy storage materials (PCESM) refer to compounds capable of efficiently storing and releasing a substantial quantity of thermal energy during the phase transition process.
Building mixes with phase change composite fibers have better latent heat storage. Under artificial sunlight, the samples displayed enhanced heating and decreased cooling. Latent heat thermal energy storage (LHTES) is essential to the development of renewable energy.
Materials with phase changes effectively store energy. Solar energy is used for air-conditioning and cooking, among other things. Latent energy storage is dependent on the storage medium’s phase transition. Acetate of metal or nonmetal, melting point 150–500°C, is used as a storage medium.
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