Zobrazeno 1 - 10
of 97
pro vyhledávání: '"J.L. Hemmerich"'
Publikováno v:
Fusion Engineering and Design. :585-589
A water detritiation facility, based on a world-wide adopted combined electrolysis catalytic exchange (CECE) process, for the JET active gas handling plant is described. A research and development programme is presented. The programme includes the te
Autor:
J. Yorkshades, A.C. Bell, C. Gibbons, S. Knipe, A. Perevezentsev, P.D Brennan, P. Walsh, A. Miller, J.L. Hemmerich, M Stead
Publikováno v:
Fusion Science and Technology. 41:821-825
The facility dedicated to full tritium recovery from carbon flakes and dust generated in the JET fusion reactor during operation with tritium plasma has been designed and is being constructed at th...
Autor:
J.L. Hemmerich, A.C. Bell, A. Perevezentsev, S. Knipe, J. Yorkshades, C. Gibbons, P.D Brennan, R. Stagg
Publikováno v:
Fusion Science and Technology. 41:1014-1017
The Impurity Processing system of the JET Active Gas Handling System has been upgraded to implement a new catalytic reactor for hydrogen-containing gases, such as hydrocarbons and water, decomposition followed by removal of liberated molecular hydrog
Publikováno v:
Fusion Engineering and Design. 47:333-353
The analytical gas chromatographic system (AN-GC) was the main tool used to analyse gas mixtures from various subsystems of the Active Gas Handling System (AGHS) and to characterise the functioning of the different processes during the Deuterium–Tr
Autor:
J. Yorkshades, A. Perevezentsev, R. Stagg, J.L. Hemmerich, J Lupo, R. Lässer, D. Brennan, S. Knipe, N Bainbridge, B. Grieveson, A.C. Bell
Publikováno v:
Fusion Engineering and Design. 47:355-360
The hydrogen-containing gases generated during operation and maintenance of a fusion machine need to be detritiated prior their discharge to the environment. The amounts of gaseous impurities with their chemical and isotopic compositions which were d
Publikováno v:
Fusion Engineering and Design. 47:301-319
The preparative Gas Chromatographic (GC) system at JET was designed to produce deuterium and tritium of purity >98%. Displacement gas chromatography with Pd as the packing material is used. The paper explains briefly this batch method and explains in
Autor:
D. Brennan, N Green, J Lupo, N Skinner, A.C. Bell, D Kennedy, B. Grieveson, J. Yorkshades, M Stead, S. Knipe, J. Mart, K Wilson, G. Jones, G.V Atkins, L Dörr, R. Stagg, N Bainbridge, A. Perevezentsev, J.L. Hemmerich, R. Lässer
Publikováno v:
Fusion Engineering and Design. 46:307-312
During and after the Deuterium–Tritium Experiment (DTE1) the JET Active Gas Handling System fulfilled all expectations and requirements: it pumped, processed and purified the gases from the Torus and connected systems, isotopically separated hydrog
Publikováno v:
Review of Scientific Instruments. 67:3877-3884
Temperature stabilization by inertial feedback control has proven a powerful tool to create the ultrastable environment essential for high resolution calorimetry. A thermally insulated mass, connected to a base through Seebeck effect sensors (thermop
Publikováno v:
Fusion Technology. 28:681-686
The preparative Gas Chromatographic (GC) system for the JET Active Gas Handling System (AGHS) can separate a daily throughput of up to 20 moles of hydrogen isotope gas mixture into the pure products of T{sub 2}, D{sub 2}, and H{sub 2} with very small
Autor:
G Bishop, N Skinner, J.L. Hemmerich, B. Grieveson, J. Campbell, J. Yorkshades, C Caldwell-Nichols, R. Lässer, R. Stagg, A. Perevezentsev, A Dearden, G. Jones, N Bainbridge, J Lupo, A.C. Bell, D. Brennan, J. Mart, K. Walker, R. Warren
Publikováno v:
Fusion Technology. 28:1301-1306
The Joint European Torus (JET) carried out the first preliminary experiment with a deuterium-tritium plasma in 1991. This utilised an on-site inventory of 0.25g. The future experimental programme f...