The focus in the development of storage systems using phase change materials is on the implementation of heat transfer concepts compensating the limited heat conductivity of the storage materials. This paper introduces the PCM Flux concept as a new alternative for latent heat energy storage. Here, the storage material is separated mechanically by an intermediate fluid layer from the heat transfer surfaces. This approach avoids the formation of a growing layer of solidified storage material covering the heat transfer structure, which limits the heat flux. This paper outlines the PCM Flux concept and gives results of its theoretical analysis
Thermal storage technologies are a key component for increasing energy efficiency and assisting in t...
In recent years the thermal energy storage applications with phase change materials have attracted w...
AbstractThermal storage technologies are a key component for increasing energy efficiency and assist...
AbstractThe focus in the development of storage systems using phase change materials is on the imple...
Latent heat storage allows efficient energy storage in systems with isothermal processes. The low th...
In times of a rising share of fluctuating renewables in the worldwide energy mix, there is a great n...
AbstractThe state-of-the-art latent heat energy storage system is equipped with aluminum fins at the...
The state-of-the-art latent heat energy storage system is equipped with aluminum fins at the heat ex...
Efficient storage of thermal energy is a key element for the transition of the energy system to rene...
This paper deals with a latent heat storage system using Phase Change Materials (PCM) as an effecti...
This paper reviews the development of latent heat thermal energy storage systems studied detailing v...
The use of a latent heat storage system using Phase Change Materials (PCM) is an effective way of st...
Thermal storage technologies are a key component for increasing energy efficiency and assisting in t...
High-temperature PCM is a key component for storing latent heat. This is necessary for efficient ene...
Many renewable energy sources are not available at any time in nature and some energy sources is red...
Thermal storage technologies are a key component for increasing energy efficiency and assisting in t...
In recent years the thermal energy storage applications with phase change materials have attracted w...
AbstractThermal storage technologies are a key component for increasing energy efficiency and assist...
AbstractThe focus in the development of storage systems using phase change materials is on the imple...
Latent heat storage allows efficient energy storage in systems with isothermal processes. The low th...
In times of a rising share of fluctuating renewables in the worldwide energy mix, there is a great n...
AbstractThe state-of-the-art latent heat energy storage system is equipped with aluminum fins at the...
The state-of-the-art latent heat energy storage system is equipped with aluminum fins at the heat ex...
Efficient storage of thermal energy is a key element for the transition of the energy system to rene...
This paper deals with a latent heat storage system using Phase Change Materials (PCM) as an effecti...
This paper reviews the development of latent heat thermal energy storage systems studied detailing v...
The use of a latent heat storage system using Phase Change Materials (PCM) is an effective way of st...
Thermal storage technologies are a key component for increasing energy efficiency and assisting in t...
High-temperature PCM is a key component for storing latent heat. This is necessary for efficient ene...
Many renewable energy sources are not available at any time in nature and some energy sources is red...
Thermal storage technologies are a key component for increasing energy efficiency and assisting in t...
In recent years the thermal energy storage applications with phase change materials have attracted w...
AbstractThermal storage technologies are a key component for increasing energy efficiency and assist...