In this work, an extensive parametric study of the molten salt thermocline storage concept with filler is presented. The parametric study is coupled with an optimization routine, allowing a better comparison, since it finds only those storage configurations, which can directly substitute the two-tank system in a given power plant. Results show that, compared to the two-tank molten salt system, the thermocline technology achieves high exergetic efficiency at only slightly increased storage volume size and a huge decrease in salt inventory
To date, two-tank molten salt systems mark the current state-of-the-art for large scale high-tempera...
AbstractThe two tank molten salt thermal storage system is widely used in the commercialized solar t...
High temperature thermal energy storage in liquid molten salts is a cost effective and proven techno...
In this work a brief introduction into the thermocline molten salt energy storage concept is given. ...
In this work the first experimental results of the world’s largest molten salt thermocline storage s...
The present paper gives an overview of a new test facility for molten salt thermocline storage syste...
For large scale thermal energy storage at temperatures above 300°C, two-tank molten salt systems mar...
For large scale high temperature thermal energy storage, two-tank molten salt systems mark the curre...
The cyclic operation of molten-salt thermal energy storage thermoclines for solar thermal power plan...
The cyclic operation of a molten-salt thermocline tank is simulated to investigate the influence of ...
Molten salt thermal energy storage (TES), originating from concentrating solar power (CSP), has gain...
At present, two-tank molten salt storage systems are the established commercially available concept ...
AbstractThe paper gives an overview of various high temperature thermal energy storage concepts such...
AbstractThis work deals with the assessment of thermocline heat storage performances when applied to...
In this work a fast numerical model for sizing calculations of thermocline with filler storage syst...
To date, two-tank molten salt systems mark the current state-of-the-art for large scale high-tempera...
AbstractThe two tank molten salt thermal storage system is widely used in the commercialized solar t...
High temperature thermal energy storage in liquid molten salts is a cost effective and proven techno...
In this work a brief introduction into the thermocline molten salt energy storage concept is given. ...
In this work the first experimental results of the world’s largest molten salt thermocline storage s...
The present paper gives an overview of a new test facility for molten salt thermocline storage syste...
For large scale thermal energy storage at temperatures above 300°C, two-tank molten salt systems mar...
For large scale high temperature thermal energy storage, two-tank molten salt systems mark the curre...
The cyclic operation of molten-salt thermal energy storage thermoclines for solar thermal power plan...
The cyclic operation of a molten-salt thermocline tank is simulated to investigate the influence of ...
Molten salt thermal energy storage (TES), originating from concentrating solar power (CSP), has gain...
At present, two-tank molten salt storage systems are the established commercially available concept ...
AbstractThe paper gives an overview of various high temperature thermal energy storage concepts such...
AbstractThis work deals with the assessment of thermocline heat storage performances when applied to...
In this work a fast numerical model for sizing calculations of thermocline with filler storage syst...
To date, two-tank molten salt systems mark the current state-of-the-art for large scale high-tempera...
AbstractThe two tank molten salt thermal storage system is widely used in the commercialized solar t...
High temperature thermal energy storage in liquid molten salts is a cost effective and proven techno...