Zestaw obrazów 2019
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Link do spotkania w aplikacji Microsoft Teams: https://bit.ly/3SMzgDd
Abstract
The SPARC tokamak is being designed to demonstrate significant fusion gain using a modestly sized device (major R = 1.85 m and minor, a = 057m radius) with high magnetic field enabled by recent advances in high-temperature superconductor technology. This talk present integrated numerical modelling applied to SPARC v2 H-mode scenario with tungsten wall and single null (SN) divertor configuration. Simulation are peformed with the COREDIV code, which self-consistently solves 1D radial transport equations for plasma and impurities in the core region and 2D multi-fluid transport in the SOL. The effect of the plasma density on fusion performance and SOL/divertor parameters is investigated for baseline scenario characterised by Ipl=8.7 MA, Btor=12.2 T, with different auxiliary heating: and neon seeding. The confinement in terms of the H-factor (IPB98(y,2) is equal to 1.0. The heating due to alpha power is calculated self-consistently considering the dilution effect due to helium and impurities accumulation.
| czwartek, 27 Lis 2025, godz. 13.00 Seminarium instytutowe: "Overview of the Activities of Space Electric Thruster Systems and the Institute of Technical Mechanics of the National Academy of Sciences of Ukraine and the State Space Agency of Ukraine", dr inż. Bohdan Yurkov |
Projekty badawcze realizowane przez IFPiLM są finansowane ze środków Ministerstwa Edukacji i Nauki i Narodowego Centrum Nauki oraz ze środków Komisji Europejskiej na podstawie umowy grantowej No 101052200, w ramach Konsorcjum EUROfusion. Wsparcia finansowego udzielają także: Międzynarodowa Agencja Energii Atomowej, Agencja Fusion for Energy, Europejska Agencja Kosmiczna i Konsorcjum LaserLab.