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The ASDEX Upgrade fusion device in Garching (photo: IPP, Volker Steger) (6,4 MB) |
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The ASDEX Upgrade fusion device in Garching |
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The ASDEX Upgrade fusion device in Garching (photo: IPP, Volker Steger) (15 MB) |
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View into the plasma vessel of the ASDEX Upgrade fusion device.
(23,7 MB) |
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View into the plasma vessel of the ASDEX Upgrade fusion device. (photo: IPP, Volker Rohde) (1,6 MB) |
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Plasma discharge in the ASDEX Upgrade fusion device. (photographic resolution limited by performance of the CCD camera used). (2,3 MB) |
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Computer graphics: Magnet coils and plasma of the Wendelstein 7-X fusion device, which is being build at the Greifswald Branch of IPP. (5,39 MB) | |
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Computer graphics: Kryostat, magnet coils and plasma of the Wendelstein 7-X fusion device. (9,25 MB) |
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Computer graphics: Kryostat, magnet coils, support structure and plasma vessel of the Wendelstein 7-X fusion device. (900 kB) |
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A completed first half-module of Wendelstein 7-X on the way to the second pre-assembly rig. (3,7 MB) | |
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One of the five modules is placed in its final position on the machine foundation. (4,1 MB) |
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Three modules are placed in their final position, the next is being installed. (3 MB) |
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One of the 50 superconducting magnet coils of the Wendelstein 7-X fusion device during production. (photo: IPP, André Künzelmann). (6 MB) | |
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Final production of the magnet coils at Babcock Noell Magnettechnik GmbH in Zeitz. (photo: IPP, André Künzelmann). (37 MB) |
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The first of a total of 50 stellarator magnet coils has been delivered to Greifswald. (6,1 MB) |
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One of the 20 planar magnet coils during production. (1,2 MB) |
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Segment of the plasma vessel for Wendelstein 7-X during production. Twenty such are assembled to form the ring-shaped vessel. (photo: IPP, Wolfgang Filser). (17,6 MB) |
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Segment of the plasma vessel for Wendelstein 7-X during production. (photo: IPP, Wolfgang Filser). (17,6 MB) |
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Segment of the plasma vessel for Wendelstein 7-X during production. (photo: IPP, Wolfgang Filser). (17,6 MB) |
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Segment of the plasma vessel for Wendelstein 7-X during production. (photo: IPP, Wolfgang Filser). (17,6 MB) |
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Segment of the plasma vessel for Wendelstein 7-X during production. (photo: IPP, Wolfgang Filser). (17,6 MB) |
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One of the five sections of the outer vessel of Wendelstein 7-X during production. (photo: IPP, Wolfgang Filser). (35 MB) |
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One of the five sections of the outer vessel of Wendelstein 7-X during production. (photo: IPP, Wolfgang Filser). (35 MB) |
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The Wendelstein 7-AS fusion device in Garching (21,7 MB) |
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Plasma discharge in the Wendelstein 7-AS fusion device (photographic resolution limited by performance of the CCD camera used). (995 KB) |
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Magnet coils and plasma of the Wendelstein 7-AS fusion device (2,76 MB) |
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Magnet coils of the Wendelstein 7-AS fusion device (135 KB) |
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The heat test facility GLADIS (Garching Large Divertor Sample Test Facility) for materials research at IPP at Garching (Photo: IPP) (2,1 MB) |
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The open heat test facility GLADIS (Photo: IPP) (2,3 MB) |
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Scetch of the international experimental reactor ITER. From the outside: Kryostat, magnet coils, plasma vessel, blanket, transformer coil. (Illustration: ITER) (780 kB) |
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Full-size prototype of half a sector of the plasma vessel, built in Japan according to the ITER design of 1998 (Photo: ITER) (3,6 MB) |
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Photo-mounting: The research site in Cadarache together with the ITER buildings (Illustration: ITER) (4,9 MB) |
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Blue Gene/P at Rechenzentrum Garching (RZG), a massively parallel supercomputer with more than 4000 compute nodes (peak performance 55 Teraflop/s) (7,6 MB) |
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IBM Power6 at Rechenzentrum Garching (RZG), a parallel machine for High Performance Computing (peak performance 120 Teraflop/s) (11,4 MB) |
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Contact:regina.buchstab[at]ipp.mpg.de