Divertor thermometers by using thermocouples (TCs) for divertor heat flux and temperature response analyses
Divertor thermometers by using thermocouples (TCs) for divertor heat flux and temperature response analyses
Divertor thermometers by using thermocouples (TCs) for divertor heat flux and temperature response analyses
Divertor thermometers by using thermocouples (TCs) for divertor heat flux and temperature response analyses
Divertor thermometers by using thermocouples (TCs) for divertor heat flux and temperature response analyses
Divertor thermometers by using thermocouples (TCs) for divertor heat flux and temperature response analyses
Divertor thermometers by using thermocouples (TCs) for divertor heat flux and temperature response analyses
Divertor thermometers by using thermocouples (TCs) for divertor heat flux and temperature response analyses
Divertor thermometers by using thermocouples (TCs) for divertor heat flux and temperature response analyses
Divertor thermometers by using thermocouples (TCs) for divertor heat flux and temperature response analyses
Neutral beam injector (NBI) power-PortThrough of beam line 1 (BL1). The effective power that actually reaches the plasma after the negative ion-based neutral particle beam emitted from the NBI system passes through BL1.
Neutral beam injector (NBI) power-PortThrough of beam line 1 (BL1). The effective power that actually reaches the plasma after the negative ion-based neutral particle beam emitted from the NBI system passes through BL1.
Neutral beam injector (NBI) power-PortThrough of beam line 1 (BL1). The effective power that actually reaches the plasma after the negative ion-based neutral particle beam emitted from the NBI system passes through BL1.
Neutral beam injector (NBI) power-PortThrough of beam line 1 (BL1). The effective power that actually reaches the plasma after the negative ion-based neutral particle beam emitted from the NBI system passes through BL1.
Neutral beam injector (NBI) power-PortThrough of beam line 1 (BL1). The effective power that actually reaches the plasma after the negative ion-based neutral particle beam emitted from the NBI system passes through BL1.
Neutral beam injector (NBI) power-PortThrough of beam line 1 (BL1). The effective power that actually reaches the plasma after the negative ion-based neutral particle beam emitted from the NBI system passes through BL1.
Neutral beam injector (NBI) power-PortThrough of beam line 1 (BL1). The effective power that actually reaches the plasma after the negative ion-based neutral particle beam emitted from the NBI system passes through BL1.
Neutral beam injector (NBI) power-PortThrough of beam line 1 (BL1). The effective power that actually reaches the plasma after the negative ion-based neutral particle beam emitted from the NBI system passes through BL1.
Neutral beam injector (NBI) power-PortThrough of beam line 1 (BL1). The effective power that actually reaches the plasma after the negative ion-based neutral particle beam emitted from the NBI system passes through BL1.
Neutral beam injector (NBI) power-PortThrough of beam line 1 (BL1). The effective power that actually reaches the plasma after the negative ion-based neutral particle beam emitted from the NBI system passes through BL1.
Tentative injection power values for BL#1 on NBI (Neutral Beam Injector) Unit 1.
Tentative injection power values for BL#1 on NBI (Neutral Beam Injector) Unit 1.
Tentative injection power values for BL#1 on NBI (Neutral Beam Injector) Unit 1.
Tentative injection power values for BL#1 on NBI (Neutral Beam Injector) Unit 1.
Tentative injection power values for BL#1 on NBI (Neutral Beam Injector) Unit 1.