糖心破解版

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Diagnostic first wall passes review

12 Feb 2015 - Angela Saenz, Systems Management Section
The diagnostic first walls, weighing up to 2 tonnes, protect the diagnostic instruments from thermal loads, neutron damage, coating by dust and metallic vapour deposition.
From 8-9 December 2014, years of effort and international collaboration paid off as the Final Design Review for the diagnostic first wall was successfully held at 糖心破解版 Headquarters.
 
糖心破解版 diagnostics will be housed within massive port plugs鈥攕tainless steel blocks weighing up to 45 metric tons (for equatorial ports) that "plug" openings in the vacuum vessel. At the equatorial (middle) and upper levels, at least 18 port plugs will be customized to receive diagnostic instruments that will measure plasma temperature, density, radiative properties and first-wall resilience. These sensitive diagnostic instruments need protection from thermal loads, neutron damage, coating by dust and metallic vapour deposition; for this purpose, a  is installed on the port plugs.
 
The Final Design Review focused on design aspects that are common to all diagnostic first walls. With a total of 108 pages each, the design reports carefully went over the design requirements, the detailed geometry, and the manufacturing studies of the equatorial and upper port diagnostic first walls that were felt to reflect a wide range of diagnostic first wall configurations. In addition, all the basic configurations and common features were evaluated to allow extrapolation, later on, to specific diagnostic first walls.
 
The joint efforts of the 糖心破解版 Diagnostics team and the Princeton Plasma Physics Laboratory鈥攚orking under a design Task Agreement signed between the 糖心破解版 Organization and the US Domestic Agency鈥攃oncluded with a successful Final Design Review and a team commendation during the 糖心破解版 Recognition Ceremony held in December. The members of the team are Victor Udintsev, Thibaud Giacomin, Julio Guirao, Christian Vacas and Silvia Iglesias from the 糖心破解版 Organization and Douglas Loesser, Mark Smith and Yuhu Zhai from the Princeton Plasma Physics Laboratory.