Latent thermal energy storage systems use the heat absorbed during melting and released during solidification of phase change materials (PCMs). From an energy efficiency point of view, PCM storage systems have the advantage that they operate with a small temperature difference between charging and discharging of the storage. Also, these storage systems have high energy densities compared to sensible heat storages assuming such energy efficient operation. PCMs considered for temperatures between 100 and 300°C are mainly anhydrous salts. Applications include industrial process heat utilisation and solar power generation using direct steam technology. However, there are heat transfer limitations on the storage design due to the low thermal con...
Chloride molten salts are promising candidates for high temperature thermal storage applications, ow...
AbstractThis work focuses on developing a high performance phase change materials (PCMs) adding with...
Thermal energy storage (TES) has a crucial role to play in conserving and efficiently utilising ener...
Storage systems based on Phase Change Materials (PCMs) with solid-liquid phase transition are consid...
Increasing energy prices and shortage of fossil fuels lead to a growing interest in alternative ene...
This work concerns the development of a shape-stable molten salt based composite phase change materi...
Thermal energy storage (TES) has been one of the main research topics during the last decades. The ...
Phase change materials (PCMs) have the ability to store thermal energy as latent heat over a nearly ...
Latent heat storage (LHS) can theoretically provide large heat storage density and significantly red...
Thermal energy storage technology has received renewed attention in recent years for a variety of im...
This paper reports a form-stable molten salt based composite phase change material (CPCM) owning ext...
Phase change materials (PCMs) are valuable for their ability to store heat nearly isothermally aroun...
Melting heat transfer performance and measuring energy storage efficiency via total melting time of ...
Phase change materials (PCMs) can be used in latent heat storage systems to store or release heat by...
AbstractThis paper discusses composite materials based on inorganic salts for medium- and high-tempe...
Chloride molten salts are promising candidates for high temperature thermal storage applications, ow...
AbstractThis work focuses on developing a high performance phase change materials (PCMs) adding with...
Thermal energy storage (TES) has a crucial role to play in conserving and efficiently utilising ener...
Storage systems based on Phase Change Materials (PCMs) with solid-liquid phase transition are consid...
Increasing energy prices and shortage of fossil fuels lead to a growing interest in alternative ene...
This work concerns the development of a shape-stable molten salt based composite phase change materi...
Thermal energy storage (TES) has been one of the main research topics during the last decades. The ...
Phase change materials (PCMs) have the ability to store thermal energy as latent heat over a nearly ...
Latent heat storage (LHS) can theoretically provide large heat storage density and significantly red...
Thermal energy storage technology has received renewed attention in recent years for a variety of im...
This paper reports a form-stable molten salt based composite phase change material (CPCM) owning ext...
Phase change materials (PCMs) are valuable for their ability to store heat nearly isothermally aroun...
Melting heat transfer performance and measuring energy storage efficiency via total melting time of ...
Phase change materials (PCMs) can be used in latent heat storage systems to store or release heat by...
AbstractThis paper discusses composite materials based on inorganic salts for medium- and high-tempe...
Chloride molten salts are promising candidates for high temperature thermal storage applications, ow...
AbstractThis work focuses on developing a high performance phase change materials (PCMs) adding with...
Thermal energy storage (TES) has a crucial role to play in conserving and efficiently utilising ener...