A basic requirement for ITER equipment to meet is a high level of reliability, because ITER operation time is precious and radioactive operation leaves limited scope for repair. In order to reduce the risk of failure during ITER operation an effective risk mitigation strategy is necessary. This paper presents such strategy for the ITER electron cyclotron upper port launcher (ECUPL). A preliminary ECUPL risk analysis identifies possible failure modes. A probabilistic risk assessment quantifies the risk of failure using a 4 x 4 impact-likelihood matrix. Impact is quantified through technical, cost and schedule elements. Likelihood depends on the risk mitigation strategy adopted. A cost benefit analysis determines the most cost effective risk ...
The design of the ITER ECRH system provides 20 MW millimeter wave power for central plasma ...
Four electron cyclotron heating upper launchers (ECHULs) will be used at ITER to counteract magnetoh...
The Design Description Document for ITER calls for 50 MW of electron cyclotron power at a frequency ...
A basic requirement for ITER equipment to meet is a high level of reliability, because ITER operatio...
The International Thermonuclear Experimental Reactor (ITER) will use an electron cyclotron resonance...
Four ITER EC H&CD (Electron Cyclotron Heating and Current Drive) Upper Launchers will be install...
Computational results of the nuclear analyses for the ECRH launcher integrated into the ITER upper p...
International audienceAn exploratory risk analysis of ITER Cask et Plug Remote Handling System (CPRH...
Four EC H&CD (Electron Cyclotron Heating and Current Drive) launchers will be installed into the upp...
This paper describes the application of a Hazard and Operability Analysis (HAZOP) methodology in ass...
Already in the early phase of a design for ITER, the maintenance aspects should be taken into accoun...
This paper deals with Remote Handling activities foreseen on the Blanket Shield Module, the plasma f...
A design is presented for the electron cyclotron (EC) heating and current drive system of the ITER u...
Four EC H&CD (Electron Cyclotron Heating and Current Drive) launchers will be installed into the upp...
Electron cyclotron waves injected from an antenna located in the upper part of the vessel will be em...
The design of the ITER ECRH system provides 20 MW millimeter wave power for central plasma ...
Four electron cyclotron heating upper launchers (ECHULs) will be used at ITER to counteract magnetoh...
The Design Description Document for ITER calls for 50 MW of electron cyclotron power at a frequency ...
A basic requirement for ITER equipment to meet is a high level of reliability, because ITER operatio...
The International Thermonuclear Experimental Reactor (ITER) will use an electron cyclotron resonance...
Four ITER EC H&CD (Electron Cyclotron Heating and Current Drive) Upper Launchers will be install...
Computational results of the nuclear analyses for the ECRH launcher integrated into the ITER upper p...
International audienceAn exploratory risk analysis of ITER Cask et Plug Remote Handling System (CPRH...
Four EC H&CD (Electron Cyclotron Heating and Current Drive) launchers will be installed into the upp...
This paper describes the application of a Hazard and Operability Analysis (HAZOP) methodology in ass...
Already in the early phase of a design for ITER, the maintenance aspects should be taken into accoun...
This paper deals with Remote Handling activities foreseen on the Blanket Shield Module, the plasma f...
A design is presented for the electron cyclotron (EC) heating and current drive system of the ITER u...
Four EC H&CD (Electron Cyclotron Heating and Current Drive) launchers will be installed into the upp...
Electron cyclotron waves injected from an antenna located in the upper part of the vessel will be em...
The design of the ITER ECRH system provides 20 MW millimeter wave power for central plasma ...
Four electron cyclotron heating upper launchers (ECHULs) will be used at ITER to counteract magnetoh...
The Design Description Document for ITER calls for 50 MW of electron cyclotron power at a frequency ...