Beyond ExaBricks: GPU Volume Path Tracing of AMR Data

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Date
2024
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Volume Title
Publisher
The Eurographics Association and John Wiley & Sons Ltd.
Abstract
Adaptive Mesh Refinement (AMR) is becoming a prevalent data representation for HPC, and thus also for scientific visualization. AMR data is usually cell centric (which imposes numerous challenges), complex, and generally hard to render. Recent work on GPU-accelerated AMR rendering has made much progress towards real-time volume and isosurface rendering of such data, but so far this work has focused exclusively on ray marching, with simple lighting models and without scattering events or global illumination. True high-quality rendering requires a modified approach that is able to trace arbitrary incoherent paths; but this may not be a perfect fit for the types of data structures recently developed for ray marching. In this paper, we describe a novel approach to high-quality path tracing of complex AMR data, with a specific focus on analyzing and comparing different data structures and algorithms to achieve this goal.
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@article{
10.1111:cgf.15095
, journal = {Computer Graphics Forum}, title = {{
Beyond ExaBricks: GPU Volume Path Tracing of AMR Data
}}, author = {
Zellmann, Stefan
and
Wu, Qi
and
Sahistan, Alper
and
Ma, Kwan-Liu
and
Wald, Ingo
}, year = {
2024
}, publisher = {
The Eurographics Association and John Wiley & Sons Ltd.
}, ISSN = {
1467-8659
}, DOI = {
10.1111/cgf.15095
} }
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