AbstractWe measured the change in specific heat of nitrate salt–alumina nanoparticle nanofluids at low nanoparticle concentration (less than 2% by mass) to understand how adding small amounts of nanoparticles affected this property. Alumina nanoparticles were dispersed in a eutectic of sodium nitrate and potassium nitrate (60:40 mole fraction) to create nanofluids using a two-step method. Neutron activation analysis was used to measure the actual mass fraction of the alumina nanoparticles in the nanofluids. The nominal mass fraction was always larger than the actual mass fraction, with differences up to 41%. The specific heat was measured using a modulated differential scanning calorimeter (MDSC). The results showed that there exists a para...
This thesis is concerned with solar energy storage systems in terms of storage materials and storage...
An efficient storage system is crucial for the effective implementation of renewable energies in the...
Nowadays, the incorporation of nanoparticles into thermal fluids has become one of the most suitable...
The objective of this study was to determine how Al2O3 nanoparticle concentration affected the speci...
Molten salts can be used as heat transfer fluids or thermal storage materials in a concentrated sola...
The focus of this research was to create and characterize high temperature alumina and nitrate salt ...
In concentrating solar power plants, the heat capacity of thermal storage media is a key factor that...
Specific heat is a key thermal property in energy systems and is directly linked with heat storage a...
Nanoparticles have been used in thermal applications to increase the specific heat of the molten sal...
The Department of Energy funded a project to determine if the specific heat of thermal energy storag...
© 2015 Elsevier Ltd. All rights reserved. Enhancing the specific heat capacity of molten salts by na...
[eng] For the development of more compact and efficient thermal systems, nanofluids are presented as...
Thermal energy storage (TES) is extremely important in concentrated solar power (CSP) plants since i...
Molten salts have been used extensively as energy storing materials, however, their thermophysical p...
Nanofluids are suspensions of nanoparticles in base fluids, a new challenge for thermal sciences pro...
This thesis is concerned with solar energy storage systems in terms of storage materials and storage...
An efficient storage system is crucial for the effective implementation of renewable energies in the...
Nowadays, the incorporation of nanoparticles into thermal fluids has become one of the most suitable...
The objective of this study was to determine how Al2O3 nanoparticle concentration affected the speci...
Molten salts can be used as heat transfer fluids or thermal storage materials in a concentrated sola...
The focus of this research was to create and characterize high temperature alumina and nitrate salt ...
In concentrating solar power plants, the heat capacity of thermal storage media is a key factor that...
Specific heat is a key thermal property in energy systems and is directly linked with heat storage a...
Nanoparticles have been used in thermal applications to increase the specific heat of the molten sal...
The Department of Energy funded a project to determine if the specific heat of thermal energy storag...
© 2015 Elsevier Ltd. All rights reserved. Enhancing the specific heat capacity of molten salts by na...
[eng] For the development of more compact and efficient thermal systems, nanofluids are presented as...
Thermal energy storage (TES) is extremely important in concentrated solar power (CSP) plants since i...
Molten salts have been used extensively as energy storing materials, however, their thermophysical p...
Nanofluids are suspensions of nanoparticles in base fluids, a new challenge for thermal sciences pro...
This thesis is concerned with solar energy storage systems in terms of storage materials and storage...
An efficient storage system is crucial for the effective implementation of renewable energies in the...
Nowadays, the incorporation of nanoparticles into thermal fluids has become one of the most suitable...