Validation of the analytic radiation load model used in the methodology for Initial STEP first wall contour designs
POSTER
Abstract
*This work has been funded by STEP, a major technology and infrastructure programme led by UK Industrial Fusion Solutions Ltd (UKIFS), which aims to deliver the UK’s pilot fusion powerplant and a path to the commercial viability of fusion.This work has been supported by the Integrated Engineering Division (IED) within the UK Atomic Energy Authority (UKAEA), a multidisciplinary group that delivers end-to-end engineering services associated with the full lifecycle of central machine and ancillary fusion systems, covering concept design, in-vessel plasma-facing structures, process engineering, configuration management, and plant operations.
Publication: 1) Vaccaro, Dario, et al. "Models implemented in the methodological approach to design the initial STEP first wall contour." Fusion Engineering and Design 204 (2024): 114479.
2) Coleman, M., and S. McIntosh. "BLUEPRINT: a novel approach to fusion reactor design." Fusion Engineering and Design 139 (2019): 26-38.
3) Osawa, R. T., et al. "SOLPS-ITER analysis of a proposed STEP double null geometry: impact of the degree of disconnection on power-sharing." Nuclear Fusion 63.7 (2023): 076032.
4) Henderson, Stuart Scott, et al. "An overview of the STEP divertor design and the simple models driving the plasma exhaust scenario." Nuclear Fusion (2024).
Presenters
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Dario Vaccaro
- United Kingdom Atomic Energy Authority