Fluid Dynamics-Based VFX Design: Trade-Offs between Visual Realism, Computational Cost, and Production Timelines

Authors

  • Felipe Amaya Quintero

Keywords:

Fluid Simulation, Visual Realism, Computational Cost, Production Timeline, VFX Optimization, Canonical Correspondence Analysis, Simulation Performance Trade-Offs

Abstract

Fluid dynamics-based simulation techniques have become increasingly integral to modern visual effects (VFX) production, enabling the creation of physically accurate representations of natural phenomena such as smoke, fire, and liquid interactions. However, the implementation of high-fidelity simulation frameworks often introduces significant computational overhead that can adversely affect production timelines and resource allocation.

References

Abd Aziz, I. A. B., Brandt, I., Gunasekera, D., Hatveit, B., Havre, K., Weisz, G., ... & Song, S. (2015). Multiphase flow simulation-optimizing field productivity. Oilfield Review, 27(1).

Adewoyin, M. A., Ogunnowo, E. O., Fiemotongha, J. E., Igunma, T. O., & Adeleke, A. K. (2020). Advances in thermofluid simulation for heat transfer optimization in compact mechanical devices. IRE Journals, 4(6), 116-124

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Published

2023-11-28

How to Cite

Felipe Amaya Quintero. (2023). Fluid Dynamics-Based VFX Design: Trade-Offs between Visual Realism, Computational Cost, and Production Timelines. Journal of Computational Analysis and Applications (JoCAAA), 31(4), 2722–2736. Retrieved from https://eudoxuspress.com/index.php/pub/article/view/5148

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