The first divertor was installed in the JET machine between 1992 and 1994 and was operated with carbon tiles and then beryllium tiles in 1994–5. Post-mortem studies after these first experiments demonstrated that most of the impurities deposited in the divertor originate in the main chamber, and that asymmetric deposition patterns generally favouring the inner divertor region result from drift in the scrape-off layer. A new monolithic divertor structure was installed in 1996 which produced heavy deposition at shadowed areas in the inner divertor corner, which is where the majority of the tritium was trapped by co-deposition during the deuterium-tritium experiment in 1997. Different divertor geometries have been tested since such as the Gas-...
In the period 1998—2001 the JET tokamak was operated with the MkII Gas Box divertor. On two occasion...
JET has operated with divertors of differing geometries since 1994. Impurities accumulated in the in...
Since the installation of an ITER-like wall, the JET programme has focused on the consolidation of I...
The first divertor was installed in the JET machine between 1992 and 1994 and was operated with carb...
Following the first JET ITER-like wall operations a detailed in situ photographic survey of the main...
Erosion and deposition were studied in the JET divertor during the first JET ITER-like wall campaign...
The main focus of this work is fuel retention in plasma components of the JET water-cooled Mk-I dive...
To close the JET tritium material balance a comprehensive programme to determine the tritium invento...
The JET ITER-Like Wall experiment, with its all-metal plasma-facing components, provides a unique en...
The International Thermonuclear Experimental Reactor (ITER) will use a mixture of deuterium (D) and ...
Erosion of plasma-facing materials and successive transport and redeposition of eroded material are ...
In the period 1998—2001 the JET tokamak was operated with the MkII Gas Box divertor. On two occasion...
JET has operated with divertors of differing geometries since 1994. Impurities accumulated in the in...
Since the installation of an ITER-like wall, the JET programme has focused on the consolidation of I...
The first divertor was installed in the JET machine between 1992 and 1994 and was operated with carb...
Following the first JET ITER-like wall operations a detailed in situ photographic survey of the main...
Erosion and deposition were studied in the JET divertor during the first JET ITER-like wall campaign...
The main focus of this work is fuel retention in plasma components of the JET water-cooled Mk-I dive...
To close the JET tritium material balance a comprehensive programme to determine the tritium invento...
The JET ITER-Like Wall experiment, with its all-metal plasma-facing components, provides a unique en...
The International Thermonuclear Experimental Reactor (ITER) will use a mixture of deuterium (D) and ...
Erosion of plasma-facing materials and successive transport and redeposition of eroded material are ...
In the period 1998—2001 the JET tokamak was operated with the MkII Gas Box divertor. On two occasion...
JET has operated with divertors of differing geometries since 1994. Impurities accumulated in the in...
Since the installation of an ITER-like wall, the JET programme has focused on the consolidation of I...