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A package to bridge experimental tokamak data to modelling workflows for heating and transport

G. Tardini, T. Odstrcil, E. Poli, M. Weiland, the ASDEX Upgrade Team2024年5月Nuclear FusionIF 3出版社

The comprehensive visual tool TRVIEW is presented, a software to read and fit experimental measurements and equilibrium reconstruction in the frame of nuclear fusion research. At the same time, TRVIEW provides a framework to setup physics workflows, especially those related to heating and transport. The TRVIEW package was originally created in order to provide file input to transport codes such as ASTRA and TRANSP. However, having a comprehensive set of python classes for the experimental plasma parameters, it allows direct coupling to several modules, such as the heating and current-drive codes RABBIT and TORBEAM and the equilibrium codes FEQIS and NEMEC. The direct coupling allows also direct visualisation of the input and output parameters and profiles in TRVIEW. The option of storing equilibrium files in the standard gEQDSK format is also enabled in TRVIEW. Special algorithms have been developed or adapted for TRVIEW: a class for fitting the plasma separatrix contour with Fourier moments, a recursive procedure for spline fits of the experimental kinetic profiles. Finally, TRVIEW includes the option to read, visualise and write integrated modelling and analysis system (IMAS) files with a comprehensive set of integrated data structures, covering most of the discharge and plasma parameters and several source profiles, calculated with the TORBEAM and RABBIT codes. This enables users to setup workflows for code validation and physics investigations using the world-wide established IMAS environment. TRVIEW can take the experimental input from the shotfile system of the ASDEX Upgrade tokamak or from IMAS files. Since the algorithms and the coupled codes are device-agnostic, TRVIEW is portable to any other fusion devices.

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asdex-upgrade中精度(概要文一致)

AIによる論文要約

プラズマ加熱とトランスポートのモデリングワークフローをつなぐパッケージ
JAこの論文は、核融合研究の実験データを数値シミュレーションにつなぐツールを開発した研究者や、実験データとモデリングの統合に興味のある研究者に有益です。特に、プラズマ加熱やトランスポートのメカニズムを理解したい学生にも適しています。#FusionResearch #DataAnalysis #ModelingWorkflows #PlasmaHeating #PlasmaTransport

この論文では、実験的なトカマクデータをモデリングワークフローにつなぐための包括的なツール「TRVIEW」を紹介しています。TRVIEW は、実験測定値や平衡再構成を読み込み、フィッティングできるだけでなく、加熱やトランスポートに関連するワークフローの設定も可能です。TRVIEW は、ASTRA や TRANSP などのトランスポートコードへのファイル入力を提供するだけでなく、RABBIT、TORBEAM、FEQIS、NEMEC などのモジュールとも直接連携できます。

A package to bridge experimental tokamak data to modelling workflows for heating and transport
ENThis paper is primarily targeted at fusion researchers, including physicists, engineers, and students, who work with experimental data from tokamak devices and need to integrate it into their modelling and simulation workflows. It provides a user-friendly and versatile tool to streamline the data analysis and workflow setup process.#FusionResearch #TokamakData #ModellingWorkflows #HeatingTransport #ExperimentalData

This paper presents TRVIEW, a comprehensive visual tool that allows researchers to read, fit, and visualize experimental data from tokamak fusion devices. TRVIEW provides a framework to set up physics workflows, particularly those related to heating and transport, enabling direct coupling to various simulation codes. It supports standard file formats and includes specialized algorithms for data processing, making it a valuable tool for fusion research.

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