Bulletin of the American Physical Society
65th Annual Meeting of the APS Division of Plasma Physics
Monday–Friday, October 30–November 3 2023; Denver, Colorado
Session NP11: Poster Session V:
MFE:DIII-D and conventional tokamaks I;Heating and energetic particles;ITER, HBT-EP, and tokamak control
HED: Measurements and analysis in HED plasmas
Fundamental: Fundamental processes in plasmas
Mini Conference:Experiments in Lab and Space
MFE: Measurement and diagnostics techniques
9:30 AM - 12:30 PM
Wednesday, November 1, 2023
Room: Plaza ABC
Abstract: NP11.00082 : Fueling modeling and control for ITER first plasma operation
Presenter:
David Weldon
(CEA)
Authors:
David Weldon
(CEA)
Rémy Nouailletas
(CEA)
Philippe Moreau
(CEA)
Luca Zabeo
(ITER)
Peter C de Vries
(ITER)
Collaborations:
ITER PCS Team, WEST PCS Team
The GIS consists of 10 Gas Valve Boxes (GVB) each containing six Mass Flow Control (MFC) valves. Each GVB is connected to the Vacuum Vessel (VV) by a separate pipe (~17 m to ~32 m long). The pipes are the main source of delay of the fueling response, which affects the system controllability.
To evaluate the GIS design with respect to the fueling control requirements, a model of the system based on a 1-D description of the gas flow diffusion in each pipe has been developed. The minimum gas flow of the MFCs is too large to reach the prefill pressure target. A PWM solution for the control is proposed.
The model also computes the gas balance in the VV, and thus, computes the required prefill gas to reach the breakdown pressure and initial plasma density. The control effort to fuel the plasma at low density can be predicted by coupling the 1-D model with the particle balance equation that describes the plasma-neutrals interactions.
A GIS failure event handling strategy based on MFC equivalence is also proposed. The simulation results and future work to optimize the ITER prefill & fueling phases are reported here.
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