The heat storage and release characteristics of the traditional electric heating floor can be improved by introducing phase change material (PCM), which can help to use the solar photovoltaic system (PV), shift peaks and valleys of electric power and improve indoor thermal.
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In this paper, a novel model of double-layer phase-change radiant floor for energy storage was established considering the phase change characteristics of PCM in the process
This system incorporates two layers of phase change materials (PCMs) with distinct phase change temperatures as the thermal energy storage medium. A coupled heat
This paper reviewed the current thermal storage technology and phase⁃change floor radiant heating technology and briefly discussed the influence of physical and chemical properties of
已完结 文献求助详情 标题 Simulation and optimization research of double energy storage floor based on heat transfer characteristic of phase change materials 基于相变材料传热特性的双层
Through the use of phase⁃change energy⁃storage floor, a large amount of latent heat can be stored and released to reach the purpose of cutting down the peak load of the heating
In this study, the effects of thermal comfort and energy savings were analyzed after applying a phase change material (PCM) to floor heating, which can be used to reduce the peak
The phase change greenhouse, relative to its ordinary counterpart, demonstrated superior insulation effects, creating a warm environment conducive to plant growth. This
The integration of Phase Change Materials (PCMs) into solar thermal energy storage systems represents a pivotal advancement in the pursuit of sustainable urban energy solutions,
Phase change floor (PCF) integrated with phase change materials (PCMs) can achieve latent heat storage, reduce system energy consumption, and improve indoor thermal
The floor heating system with phase change materials (PCMs) for thermal storage is an effective approach to increase the floor thermal capacity and reduce indoor temperature
At present, buildings constitute over 30 % of the overall energy consumption, while CO 2 emissions stemming from building-related industries and equipment comprise
This study aims to investigate the performance differences of various phase change energy storage materials (PCMs) in radiant floor heating systems through numerical
According to statistics, the construction industry accounts for more than 40% of the global energy consumption, and the form of building energy conservation is urgent and has great potential.
Compared with sensible heat storage, the latent heat storage method represented by phase change materials (PCMs) has the advantages of high energy storage
Abstract Greenhouses represent one of the largest energy-demanding sectors, requiring energy for indoor environment control for plant growth and crop yield. Thermal energy
Lower thermal conductivity of the decoration layer is helpful in application. Application of phase change material (PCM) floor in a solar water heating system can greatly
In particular, the melting point, thermal energy storage density and thermal conductivity of the organic, inorganic and eutectic phase change materials are the major
Organic Phase change materials (PCMs) have emerged as pivotal components in advanced thermal management systems due to their exceptional energy storage capacity
Phase change energy storage technology using PCM has shown good results in the field of energy conservation in buildings (Soares et al., 2013). The use of PCM in building
This paper reviews previous work on latent heat storage and provides an insight to recent efforts to develop new classes of phase change materials (PCMs) for use in energy
Then the heat storage and heat release of phase change energy storage floor under different working conditions in winter and summer were simulated to decide the phase
1. Introduction Building energy consumption accounts for a significant portion of global energy usage, particularly in heating and cooling systems. As global demand for energy
Chen et al. [14] studied a phase change energy storage SASHP system that integrates phase change materials into the side of a heat pump evaporator. The COP was
Abstract Application of phase change material (PCM) floor in a solar water heating system can greatly enhance the floor''s energy storage capacity, and thus space for water tank
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