IsoTrotter: Visually Guided Empirical Modelling of Atmospheric Convection
Juraj Pálenik, Thomas Spengler, Helwig Hauser
Abstract
The convection analysis is enabled by two main views. In the left view we provide a tool for analysing the parameter-space of the model, as well as for comparing the model results to data from observations. We allow adjustment of the model parameters on the far left; the greyed-out parameter is under automatic control by the anchor point. A gallery of segmented thermals is at the bottom. On the right, a 3D view showing tracks of paragliding flights presents an instance of a thermal in its environment.
Abstract-Empirical models, fitted to data from observations, are often used in natural sciences to describe physical behaviour and support discoveries. However, with more complex models, the regression of parameters quickly becomes insufficient, requiring a visual parameter space analysis to understand and optimize the models. In this work, we present a design study for building a model describing atmospheric convection. We present a mixed-initiative approach to visually guided modelling, integrating an interactive visual parameter space analysis with partial automatic parameter optimization. Our approach includes a new, semi-automatic technique called IsoTrotting, where we optimize the procedure by navigating along isocontours of the model. We evaluate the model with unique observational data of atmospheric convection based on flight trajectories of paragliders.
Ask about this paper
Your agent reads all of it.
Lune indexed this paper to the last equation, along with the top-tier papers that cite it. Ask a question and the answer quotes them.
Your agent calls
Luneget_paper_fulltext
Free to start. No credit card required.
Terminal
Install the CLIlune papers fulltext 5a2e6bf4-1a8c-4fcb-acd3-aff19a8be69aCited by top-tier papers1
Ask how each one uses itRelated papers
- Visual Analysis and Detection of Contrails in Aircraft Engine SimulationsNafiul Nipu, Carla Floricel, Negar Naghashzadeh, Roberto Paoli et al.IEEE VIS 2022 · 2 citations
- A Framework for Multiclass Contour VisualizationSihang Li, Jiacheng Yu, Mingxuan Li, Le Liu et al.IEEE VIS 2022 · 4 citations
- PW: A Visual Approach for Building, Managing, and Analyzing Weather Simulation Ensembles at RuntimeCarolina Veiga, Suzanna Maria Bonnet, Daniel de Oliveira, Márcio Cataldi et al.IEEE VIS 2023 · 10 citations
- Exploring 3D Unsteady Flow using 6D Observer Space InteractionsXingdi Zhang, Amani Ageeli, Thomas Theußl, Markus Hadwiger et al.IEEE VIS 2025 · 2 citations
- Preference-Guided Multi-Objective UI AdaptationYao Song, Christoph Gebhardt, Yi-Chi Liao, Christian HolzUIST 2025 · 3 citations
