The central solenoid is a critical component of the spherical tokamak Globus-M (plasma major radius R = 0.36 m, plasma minor radius a = 0.24 m, aspect ratio R/a = 1.5, toroidal magnetic field BT ≤ 0.62 T, plasma current Ip ≤ 0.5 MA). The two-layer solenoid, 1312 mm long with a 200-mm outer diameter, is located between the 112-mm-diam inner rod of the toroidal field coils and the 217-mm-diam inner cylinder of the vacuum vessel. Strong magnetic and thermal cyclic loads acting on the solenoid require that it be manufactured from a high-strength hollow conductor. The conductor material selected for the solenoid winding is CuAg0,1(OF). Advanced manufacturing technology has made it possible to increase the continuous length of conductor (with an ...
The beam dynamics of superconducting (SC) heavy-ion linacs operating in the velocity range below 0.4...
China fusion engineering test reactor (CFETR) is a new tokamak device, whose magnet system includes ...
The solenoid design follows closely the considerations qiven in {bar p} note 116. In particular we t...
The central solenoid is a critical component of the spherical tokamak Globus-M (plasma major radius ...
The present study aims to reduce the outer radius of the central solenoid (CS) with respect to its n...
The construction of magnet system for the tokamak device of JT-60 super advanced (JT-60SA) was compl...
If the ohmic heating solenoid for the TNS or other large tokamak is an ungraded cryostable supercond...
The ITER Central Solenoid (CS), positioned in the center of the ITER tokamak, will provide a magneti...
The central solenoid (CS) is a key component of the ITER magnet system to provide the magnetic flux ...
Here a more detailed publication is summarized which presents analytical methods with solutions that...
This brief report summarizes work done which addressed the issue of sizing the USTX Ohmic heating so...
Un solénoïde compensé refroidi à l'eau a été étudié et construit dans le but de produire un champ ma...
The ITER central solenoid (CS) is a highly stressed magnet that must provide 30 000 plasma cycles un...
The ATLAS detector at the CERN LHC is equipped with a superconducting magnet system consisting of th...
International audienceAn aggressive low-mass and high-stress design of a very large detector magnet ...
The beam dynamics of superconducting (SC) heavy-ion linacs operating in the velocity range below 0.4...
China fusion engineering test reactor (CFETR) is a new tokamak device, whose magnet system includes ...
The solenoid design follows closely the considerations qiven in {bar p} note 116. In particular we t...
The central solenoid is a critical component of the spherical tokamak Globus-M (plasma major radius ...
The present study aims to reduce the outer radius of the central solenoid (CS) with respect to its n...
The construction of magnet system for the tokamak device of JT-60 super advanced (JT-60SA) was compl...
If the ohmic heating solenoid for the TNS or other large tokamak is an ungraded cryostable supercond...
The ITER Central Solenoid (CS), positioned in the center of the ITER tokamak, will provide a magneti...
The central solenoid (CS) is a key component of the ITER magnet system to provide the magnetic flux ...
Here a more detailed publication is summarized which presents analytical methods with solutions that...
This brief report summarizes work done which addressed the issue of sizing the USTX Ohmic heating so...
Un solénoïde compensé refroidi à l'eau a été étudié et construit dans le but de produire un champ ma...
The ITER central solenoid (CS) is a highly stressed magnet that must provide 30 000 plasma cycles un...
The ATLAS detector at the CERN LHC is equipped with a superconducting magnet system consisting of th...
International audienceAn aggressive low-mass and high-stress design of a very large detector magnet ...
The beam dynamics of superconducting (SC) heavy-ion linacs operating in the velocity range below 0.4...
China fusion engineering test reactor (CFETR) is a new tokamak device, whose magnet system includes ...
The solenoid design follows closely the considerations qiven in {bar p} note 116. In particular we t...