Since its inception in 2002, the International Tokamak Physics Activity topical group on Integrated Operational Scenarios (IOS) has coordinated experimental and modelling activity on the development of advanced inductive scenarios for applications in the ITER tokamak. The physics basis and the prospects for applications in ITER have been advanced significantly during that time, especially with respect to experimental results. The principal findings of this research activity are as follows. Inductive scenarios capable of higher normalized pressure (ßN 2.4) than the ITER baseline scenario (ßN = 1.8) with normalized confinement at or above the standard H-mode scaling are well established under stationary conditions on the four largest diverted...
The JET experimental campaign has focused on studies in support of the ITER physics basis. An overvi...
The values of Q = (fusion power)/(auxiliary heating power) predicted for ITER by three different met...
The values of Q = (fusion power)/(auxiliary heating power) predicted for ITER by three different met...
Since its inception in 2002, the International Tokamak Physics Activity topical group on Integrated ...
Since its inception in 2002, the International Tokamak Physics Activity topical group on Integrated ...
Since its inception in 2002, the International Tokamak Physics Activity topical group on Integrated ...
Since its inception in 2002, the International Tokamak Physics Activity topical group on Integrated ...
The International Tokamak Physics Activity topical group on integrated operational scenarios has com...
The International Tokamak Physics Activity topical group on integrated operational scenarios has com...
ITER will be the first magnetic confinement device with burning DT plasma and fusion power of about ...
ITER will be the first magnetic confinement device with burning DT plasma and fusion power of about ...
ITER will be the first magnetic confinement device with burning DT plasma and fusion power of about ...
Advanced tokamak regimes obtained in ASDEX Upgrade, DIII-D, FT-U, JET, JT-60U, TCV and Tore Supra ex...
Advanced tokamak regimes obtained in ASDEX Upgrade, DIII-D, FT-U, JET, JT-60U, TCV and Tore Supra ex...
Advanced tokamak regimes obtained in ASDEX Upgrade, DIII-D, FF-U, JET, JT-60U, TCV and Tore Supra ex...
The JET experimental campaign has focused on studies in support of the ITER physics basis. An overvi...
The values of Q = (fusion power)/(auxiliary heating power) predicted for ITER by three different met...
The values of Q = (fusion power)/(auxiliary heating power) predicted for ITER by three different met...
Since its inception in 2002, the International Tokamak Physics Activity topical group on Integrated ...
Since its inception in 2002, the International Tokamak Physics Activity topical group on Integrated ...
Since its inception in 2002, the International Tokamak Physics Activity topical group on Integrated ...
Since its inception in 2002, the International Tokamak Physics Activity topical group on Integrated ...
The International Tokamak Physics Activity topical group on integrated operational scenarios has com...
The International Tokamak Physics Activity topical group on integrated operational scenarios has com...
ITER will be the first magnetic confinement device with burning DT plasma and fusion power of about ...
ITER will be the first magnetic confinement device with burning DT plasma and fusion power of about ...
ITER will be the first magnetic confinement device with burning DT plasma and fusion power of about ...
Advanced tokamak regimes obtained in ASDEX Upgrade, DIII-D, FT-U, JET, JT-60U, TCV and Tore Supra ex...
Advanced tokamak regimes obtained in ASDEX Upgrade, DIII-D, FT-U, JET, JT-60U, TCV and Tore Supra ex...
Advanced tokamak regimes obtained in ASDEX Upgrade, DIII-D, FF-U, JET, JT-60U, TCV and Tore Supra ex...
The JET experimental campaign has focused on studies in support of the ITER physics basis. An overvi...
The values of Q = (fusion power)/(auxiliary heating power) predicted for ITER by three different met...
The values of Q = (fusion power)/(auxiliary heating power) predicted for ITER by three different met...