The "numerical materials" approach, developed at CEA Le Ripaut, consists to numerically optimize a structure, by using calculation codes that allow to realize numerical experiments, in order to answer, as precisely as possible, to a set of specifications. The manufacturing of these optimized structures, whose shapes can be complex, is sometimes not feasible with current manufacturing processes. However, the rapid progress of 3D printing now seems to be able to concretize this approach. The aim of this thesis is to study this manufacturing feasibility, through a concrete application: the optimization of the volumetric receivers of Concentrated Solar Power Plants (CSP). Currently, the design of these silicon carbide (SiC) receptors is restric...
The aim is to design and create efficient cellular architectures for volumetric solar receivers used...
The aim is to design and create efficient cellular architectures for volumetric solar receivers used...
The aim is to design and create efficient cellular architectures for volumetric solar receivers used...
The "numerical materials" approach, developed at CEA Le Ripaut, consists to numerically optimize a s...
The "numerical materials" approach, developed at CEA Le Ripaut, consists to numerically optimize a s...
The "numerical materials" approach, developed at CEA Le Ripaut, consists to numerically optimize a s...
La démarche « matériaux numériques », développée au CEA Le Ripaut, consiste à optimiser numériquemen...
International audienceIn order to demonstrate that digital material engineering methodology is able ...
International audienceIn order to demonstrate that digital material engineering methodology is able ...
International audienceIn order to demonstrate that digital material engineering methodology is able ...
International audienceIn order to demonstrate that digital material engineering methodology is able ...
International audienceIn order to demonstrate that digital material engineering methodology is able ...
International audienceIn order to demonstrate that digital material engineering methodology is able ...
For the future, using thermodynamical solar power plant seems to be a good solution to ensure electr...
The aim is to design and create efficient cellular architectures for volumetric solar receivers used...
The aim is to design and create efficient cellular architectures for volumetric solar receivers used...
The aim is to design and create efficient cellular architectures for volumetric solar receivers used...
The aim is to design and create efficient cellular architectures for volumetric solar receivers used...
The "numerical materials" approach, developed at CEA Le Ripaut, consists to numerically optimize a s...
The "numerical materials" approach, developed at CEA Le Ripaut, consists to numerically optimize a s...
The "numerical materials" approach, developed at CEA Le Ripaut, consists to numerically optimize a s...
La démarche « matériaux numériques », développée au CEA Le Ripaut, consiste à optimiser numériquemen...
International audienceIn order to demonstrate that digital material engineering methodology is able ...
International audienceIn order to demonstrate that digital material engineering methodology is able ...
International audienceIn order to demonstrate that digital material engineering methodology is able ...
International audienceIn order to demonstrate that digital material engineering methodology is able ...
International audienceIn order to demonstrate that digital material engineering methodology is able ...
International audienceIn order to demonstrate that digital material engineering methodology is able ...
For the future, using thermodynamical solar power plant seems to be a good solution to ensure electr...
The aim is to design and create efficient cellular architectures for volumetric solar receivers used...
The aim is to design and create efficient cellular architectures for volumetric solar receivers used...
The aim is to design and create efficient cellular architectures for volumetric solar receivers used...
The aim is to design and create efficient cellular architectures for volumetric solar receivers used...