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Extra resources for ITER Neutral Beam Design
Diameter, dome-shaped building capable of achieving vacuum at 10-6 torr. Even though this approach complicates the facility design, it could present an interesting alternative to the conventional design approaches. The beam line facilities also include the hot cell(s) used for repairing subassemblies, replacing eomponents_ and handling solid and liquid waste that is generated as a result of operaung and n_imlining the beam lin_. The hot cell size will depend on the design approach that is chosen for beam line maintenance.
A more refiable solution is to use the Cefilae coupling if coolant lines are not largerthan 5 to 8 centimeters in diameter. The beam line module vacuum vessel will have many circumferential joints if it is modularized by subsTstems. These joints mayhave a large diameter mechanicrAseal with many bolts, or few bolts with a welded lip seal. The former approach is time consuming, the latter requires developing a tool to remotely cut and weld lip seals. A design study is needed _ determinethe cost-effective approach.
0 No. of sources (segments) pcr array 3 ? 87 7,92 Figure 2-,ITER Beam Line Changes i , ,q_ rl, , , ,i ..... i_ p, , , ,q 'lr, ' ,t , F 60% 50% i 10%' 30% ,30% 10% 4t 5O% , _ _ / 50% 50%, 100% OPERATION Figure 4- Distribution ' Power from 50% 50% 100% COMMISSIONING of Beam the Two Source Arrays ! Swirl Coolant Header Plate Outlet Swirl Tube Coolant Header Inlet Coolant Inlet Tube Outlet ' t i i I I Swirl Tube i Venetian • Figure 7- BlindPlate o Trimetric View of Horizontal Blind Ion Dump with Coolant Configuration Venetian Header !
ITER Neutral Beam Design