TechnoFusión: Difference between revisions

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== Remote Handling Techniques ==  
== Remote Handling Techniques ==  
The conditions inside a fusion reactor are incompatible with the manual repair or replacement of parts, so that remote handling is indispensable. New robotic techniques need to be developed that are compatible with the hostile conditions, and existing techniques need to be certified for application at installations such as [[ITER]] or [[IFMIF]]. The size of the components that will be manipulated and the complications associated with their spatial location will require developing new remote handling techniques. Prototypes will be tested in an installation that is connected to the electron accelerator in order to simulate working conditions with gamma radiation, similar to those experienced during maintenance operations inside a reactor. Some prototypes considered for demonstrating remote handling capabilities are: the diagnostic Port Plugs (PP) and the Test Blanket Modules (TBM) for ITER, or the irradiation modules of IFMIF.
The conditions inside a fusion reactor are incompatible with the manual repair or replacement of parts, so that remote handling is indispensable. New robotic techniques need to be developed that are compatible with the hostile conditions, and existing techniques need to be certified for application at installations such as [[ITER]] or [[IFMIF]]. The size of the components that will be manipulated and the complications associated with their spatial location will require developing new remote handling techniques. Prototypes will be tested in an installation that is connected to the electron accelerator in order to simulate working conditions with gamma radiation, similar to those experienced during maintenance operations inside a reactor. Some prototypes considered for demonstrating remote handling capabilities are: the diagnostic Port Plugs (PP) and the Test [[Breeding blanket|Blanket]] Modules (TBM) for ITER, or the irradiation modules of IFMIF.


== Computer Simulation ==  
== Computer Simulation ==  
In order to study conditions that cannot be reached in experiment and to accelerate the development of novel systems for a future commercial fusion power plant, TechnoFusión will stimulate an ambitious programme of computer simulations, combining the existing experience in the fusion field with resources from the National Supercomputation Network. Its goals include the implementation of the global simulation of a commercial fusion reactor, the interpretation of results, the validation of numerical tools, and the development of new tools. Another indispensable goal is the creation of a data acquisition system and the visualisation of results.
In order to study conditions that cannot be reached in experiment and to accelerate the development of novel systems for a future commercial fusion power plant, TechnoFusión will stimulate an ambitious programme of computer simulations, combining the existing experience in the fusion field with resources from the National Supercomputation Network. Its goals include the implementation of the global simulation of a commercial fusion reactor, the interpretation of results, the validation of numerical tools, and the development of new tools. Another indispensable goal is the creation of a data acquisition system and the visualisation of results.

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