Despite their importance for solar thermal power applications, phase-diagrams of molten salt mixture heat transfer fluids (HTFs) are not readily accessible from first principles. We present a molecular dynamics scheme general enough to identify eutectics of any HTF candidate mixture. The eutectic mixture and temperature are located using the liquid mixture free energy and the pure component solid-liquid free energy differences. The liquid mixture free energy is obtained using thermodynamic integration over particle identity transmutations sampled with molecular dynamics at a single temperature. Drawbacks of conventional phase diagram mapping methodologies are avoided by not considering solid mixtures, thereby evading expensive computations ...
By using thermodynamic modeling, new eutectic multi-component salt systems have been developed. On t...
The design of latent heat thermal energy storage systems is critically dependent on the properties o...
According to the SunShot initiative, one sixth of the levelized cost of electricity for Concentrated...
The production of electric energy from solar radiation is nowadays one of the most investigated “car...
Molten salt (MS) mixtures are used for the transport (HTF-heat transfer fluid) and storage of heat (...
Molten salts have been used in solar thermal energy storage due to their high energy storage density...
Nitrate molten salts are extensively used for sensible heat storage in Concentrated Solar Power (CSP...
Molten salts as heat transfer fluids (HTF) for concentrated solar power (CSP) plant application are ...
International audienceWe use molecular dynamics simulations to study the thermodynamics, structure, ...
Eutectic molten salts have desirable features for nuclear applications such as pyroprocessing spent ...
Molten salts are currently being proposed as a heat carrier medium in the nuclear and the solar conc...
AbstractNon-linear phase diagrams for binary compositions are coupled with Thétis, a finite-volume s...
There are various methods available to predict the eutectic composition of binary salt systems; howe...
By using thermodynamic modeling, new eutectic multi-component salt systems have been developed. On t...
The design of latent heat thermal energy storage systems is critically dependent on the properties o...
According to the SunShot initiative, one sixth of the levelized cost of electricity for Concentrated...
The production of electric energy from solar radiation is nowadays one of the most investigated “car...
Molten salt (MS) mixtures are used for the transport (HTF-heat transfer fluid) and storage of heat (...
Molten salts have been used in solar thermal energy storage due to their high energy storage density...
Nitrate molten salts are extensively used for sensible heat storage in Concentrated Solar Power (CSP...
Molten salts as heat transfer fluids (HTF) for concentrated solar power (CSP) plant application are ...
International audienceWe use molecular dynamics simulations to study the thermodynamics, structure, ...
Eutectic molten salts have desirable features for nuclear applications such as pyroprocessing spent ...
Molten salts are currently being proposed as a heat carrier medium in the nuclear and the solar conc...
AbstractNon-linear phase diagrams for binary compositions are coupled with Thétis, a finite-volume s...
There are various methods available to predict the eutectic composition of binary salt systems; howe...
By using thermodynamic modeling, new eutectic multi-component salt systems have been developed. On t...
The design of latent heat thermal energy storage systems is critically dependent on the properties o...
According to the SunShot initiative, one sixth of the levelized cost of electricity for Concentrated...