The CellFlux storage system is a new concept for reducing the costs of medium to high temperature thermal energy storage. Initially designed for solar thermal power plants, the concept is suitable for industrial processes and power to heat applications as well. This paper gives first results of a new pilot scale plant set up at DLR in Stuttgart as a proof of concept. Experimental results are used for the validation of a simplified model. The model is apllied to calculate pareto optimal storage configurations in terms of necessary storage mass and exergetic efficiency, suitable for two types of solar thermal power plants. Particularly for applications having larger temperature differences, high exergetic efficiencies at low costs for t...
AbstractSystems using air at ambient pressure as a working fluid and solid media like natural stones...
Although facility scale thermal energy storage of sensible heat in the range of 200-550°C has achiev...
Packed beds using air at atmospheric pressure as heat transferring medium are the most cost effectiv...
The CellFlux storage system is a new concept for reducing the costs of medium to high temperature th...
The CellFlux storage system is a new concept for reducing the costs of medium to high temperature th...
The CellFlux concept is a new sensible storage system where thermal energy from a primary working fl...
AbstractSystems using air at ambient pressure as a working fluid and solid media like natural stones...
The CellFlux concept is a new sensible storage system where thermal energy from a primary working fl...
The CellFlux concept is a new sensible storage system where thermal energy from a primary working fl...
AbstractThe CellFlux concept is a new sensible storage system where thermal energy from a primary wo...
AbstractThe CellFlux concept is a new sensible storage system where thermal energy from a primary wo...
Packed beds using air at atmospheric pressure as heat transferring medium are the most cost effectiv...
AbstractPacked beds using air at atmospheric pressure as heat transferringmedium are the most cost e...
A storage system for parabolic trough power plants which is consisting of a low cost sensible storag...
Although facility scale thermal energy storage of sensible heat in the range of 200-600°C has achiev...
AbstractSystems using air at ambient pressure as a working fluid and solid media like natural stones...
Although facility scale thermal energy storage of sensible heat in the range of 200-550°C has achiev...
Packed beds using air at atmospheric pressure as heat transferring medium are the most cost effectiv...
The CellFlux storage system is a new concept for reducing the costs of medium to high temperature th...
The CellFlux storage system is a new concept for reducing the costs of medium to high temperature th...
The CellFlux concept is a new sensible storage system where thermal energy from a primary working fl...
AbstractSystems using air at ambient pressure as a working fluid and solid media like natural stones...
The CellFlux concept is a new sensible storage system where thermal energy from a primary working fl...
The CellFlux concept is a new sensible storage system where thermal energy from a primary working fl...
AbstractThe CellFlux concept is a new sensible storage system where thermal energy from a primary wo...
AbstractThe CellFlux concept is a new sensible storage system where thermal energy from a primary wo...
Packed beds using air at atmospheric pressure as heat transferring medium are the most cost effectiv...
AbstractPacked beds using air at atmospheric pressure as heat transferringmedium are the most cost e...
A storage system for parabolic trough power plants which is consisting of a low cost sensible storag...
Although facility scale thermal energy storage of sensible heat in the range of 200-600°C has achiev...
AbstractSystems using air at ambient pressure as a working fluid and solid media like natural stones...
Although facility scale thermal energy storage of sensible heat in the range of 200-550°C has achiev...
Packed beds using air at atmospheric pressure as heat transferring medium are the most cost effectiv...