Three salt compositions for potential use in trough-based solar collectors were tested to determine their mechanical properties as a function of temperature. The mechanical properties determined were unconfined compressive strength, Young's modulus, Poisson's ratio, and indirect tensile strength. Seventeen uniaxial compression and indirect tension tests were completed. It was found that as test temperature increases, unconfined compressive strength and Young's modulus decreased for all salt types. Empirical relationships were developed quantifying the aforementioned behaviors. Poisson's ratio tends to increase with increasing temperature except for one salt type where there is no obvious trend. The variability in measured indirect tensile s...
AbstractA detailed analysis on the thermal degradation of nitrate based molten salts evaluating the ...
The demand for energy around the world is ever increasing with the global warming increasing with th...
Future trends push TES towards higher temperatures to increase solar-to-electricity conversion effic...
For sensible thermal energy storage (TES) in liquids in the temperature range from 250 C to 550 C, a...
Molten nitrate salts play a crucial role as storage and heat transfer media in Thermal Energy Storag...
Thermal energy storage (TES) in molten salts is the storage dominating technology in solar power app...
By using thermodynamic modeling, new eutectic multi-component salt systems have been developed. On t...
Molten salts have been used in solar thermal energy storage due to their high energy storage density...
The mechanical behavior of rock salt has been studied for many decades. Early engineering studies we...
Parabolic trough power systems that utilize concentrated solar energy to generate electricity are a ...
Molten nitrate salts are state-of-the-art heat transfer fluids (HTF) and thermal energy storage (TES...
Thermal Energy Storage (TES) based on molten nitrate salts has a chance of being a key player in now...
The implementation of inexpensive scalable thermal energy storage will play a crucial role in the su...
Experimental results of compatibility screening studies of 100 salt/containment/thermal conductivity...
Thermal Energy Storage (TES) based on molten salts is thought to play a major role for the transitio...
AbstractA detailed analysis on the thermal degradation of nitrate based molten salts evaluating the ...
The demand for energy around the world is ever increasing with the global warming increasing with th...
Future trends push TES towards higher temperatures to increase solar-to-electricity conversion effic...
For sensible thermal energy storage (TES) in liquids in the temperature range from 250 C to 550 C, a...
Molten nitrate salts play a crucial role as storage and heat transfer media in Thermal Energy Storag...
Thermal energy storage (TES) in molten salts is the storage dominating technology in solar power app...
By using thermodynamic modeling, new eutectic multi-component salt systems have been developed. On t...
Molten salts have been used in solar thermal energy storage due to their high energy storage density...
The mechanical behavior of rock salt has been studied for many decades. Early engineering studies we...
Parabolic trough power systems that utilize concentrated solar energy to generate electricity are a ...
Molten nitrate salts are state-of-the-art heat transfer fluids (HTF) and thermal energy storage (TES...
Thermal Energy Storage (TES) based on molten nitrate salts has a chance of being a key player in now...
The implementation of inexpensive scalable thermal energy storage will play a crucial role in the su...
Experimental results of compatibility screening studies of 100 salt/containment/thermal conductivity...
Thermal Energy Storage (TES) based on molten salts is thought to play a major role for the transitio...
AbstractA detailed analysis on the thermal degradation of nitrate based molten salts evaluating the ...
The demand for energy around the world is ever increasing with the global warming increasing with th...
Future trends push TES towards higher temperatures to increase solar-to-electricity conversion effic...