collaborators

5 papers

physics.plasm-ph2026

NIMROD-to-IMAS workflow for extended-magnetohydrodynamic data with reusable datasets and implications for IMAS schema development

Alexei Y. Pankin, Fatima Ebrahimi, Qian Gong +5

Extended magnetohydrodynamic (MHD) simulations of tokamak plasmas regularly produce outputs in multi-dimensional, multiple-field formats; these code-specific formats make it diffic…

physics.plasm-ph2026

Predictive capabilities of the integrated modeling TRANSP code for tokamak plasmas

A. Y. Pankin, J. Breslau, M. V. Gorelenkova +7

This paper expands on the TRANSP description given in [Computer Physics Communications 312 (2025) 109611] by describing recent progress in TRANSP's predictive functionality and emp…

physics.plasm-ph2025

Sensitivities of time-dependent temperature profile predictions for NSTX with the Multi-Mode Model

J. B. Lestz, G. Avdeeva, S. M. Kaye +5

The Multi-Mode Model (MMM) for turbulent transport was applied to a large set of well-analyzed discharges from the National Spherical Torus Experiment (NSTX) in order to evaluate i…

physics.plasm-ph2025

Assessing time-dependent temperature profile predictions using reduced transport models for high performing NSTX plasmas

J. B. Lestz, G. Avdeeva, T. F. Neiser +6

Time-dependent, predictive simulations were performed with the 1.5D tokamak integrated modeling code TRANSP on a large set of well-analyzed, high performing discharges from the Nat…

physics.plasm-ph2025

TRANSP integrated modeling code for interpretive and predictive analysis of tokamak plasmas

A. Y Pankin, J. Breslau, M. Gorelenkova +5

This paper provides a comprehensive review of the TRANSP code, a sophisticated tool for interpretive and predictive analysis of tokamak plasmas, detailing its major capabilities an…