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Lina Velarde Gallardo

PAIDI Predoctoral
lvelarde@us.es
Área de conocimiento: Máquinas y Motores Térmicos
Departamento: Ingeniería Energética
Grupo: Ciencias y Tecnologías del Plasma y el Espacio - FQM-402 (Universidad de Sevilla)

Investiga en

Tipo Año Título Fuente
Artículo2025 Analysis of fast-ion losses measured in MAST-U via infrared thermography and a Fast Ion Loss Detector FUSION ENGINEERING AND DESIGN
Artículo2025 Divertor shaping with neutral baffling as a solution to the tokamak power exhaust challenge COMMUNICATIONS PHYSICS
Artículo2025 Experimental observations of fast-ion losses induced by neoclassical tearing modes in the MAST-U spherical tokamak PLASMA PHYSICS AND CONTROLLED FUSION
Artículo2025 Velocity-space analysis of fast-ion losses measured in MAST-U using a high-speed camera in the FILD detector PLASMA PHYSICS AND CONTROLLED FUSION
Artículo2024 Initial Operation of the Scintillator-Based Fast-Ion Loss Detector Rotary and Reciprocating System in MAST-U IEEE TRANSACTIONS ON PLASMA SCIENCE
Artículo2024 Measurement of toroidal Alfvén eigenmode-driven fast-ion flows using an imaging neutral particle analyzer at ASDEX Upgrade NUCLEAR FUSION
Artículo2024 NBI optimization on SMART and implications for scenario development PLASMA PHYSICS AND CONTROLLED FUSION
Artículo2024 Overview of fast particle experiments in the first MAST Upgrade experimental campaigns NUCLEAR FUSION
Artículo2024 Overview of the EUROfusion Tokamak Exploitation programme in support of ITER and DEMO NUCLEAR FUSION
Artículo2023 Analysis and design of the central stack for the SMART tokamak FUSION ENGINEERING AND DESIGN
Artículo2023 Predictive simulations for plasma scenarios in the SMART tokamak FUSION ENGINEERING AND DESIGN
Artículo2023 Transport and acceleration mechanism of fast ions during edge localized modes in ASDEX Upgrade NUCLEAR FUSION
Este investigador no ha dirigido/tutorizado tesis

Proyectos de Investigación

Fecha de inicio Fecha de fin Rol Denominación Agencia financiadora
01/01/2014 31/12/2025 Investigador/a Implementation of activities described in the Roadmap to Fusion during Horizon 2020 through a Joint programme of the members ot the EUROfusion consortium (EUROfusion) (CCREF6410) Comisión Europea (Europeo)
01/05/2019 30/04/2024 Contratado Taming the particle transport in magnetized plasmas via perturbative fields (3D-FIREFLUC) (3569/0978) Comisión Europea (Europeo)
01/09/2024 31/08/2029 Investigador/a Waves for energy in magnetized plasmas - SMARTWAVES (GA-101142810) European Commission (Europeo)
El investigador no tiene ningún proyecto Erasmus+ asociado.
El investigador no tiene ningún resultado de investigación asociado