[go: up one dir, main page]
More Web Proxy on the site http://driver.im/ skip to main content
article

A Deformable Surface Model for Real-Time Water Drop Animation

Published: 01 August 2012 Publication History

Abstract

A water drop behaves differently from a large water body because of its strong viscosity and surface tension under the small scale. Surface tension causes the motion of a water drop to be largely determined by its boundary surface. Meanwhile, viscosity makes the interior of a water drop less relevant to its motion, as the smooth velocity field can be well approximated by an interpolation of the velocity on the boundary. Consequently, we propose a fast deformable surface model to realistically animate water drops and their flowing behaviors on solid surfaces. Our system efficiently simulates water drop motions in a Lagrangian fashion, by reducing 3D fluid dynamics over the whole liquid volume to a deformable surface model. In each time step, the model uses an implicit mean curvature flow operator to produce surface tension effects, a contact angle operator to change droplet shapes on solid surfaces, and a set of mesh connectivity updates to handle topological changes and improve mesh quality over time. Our numerical experiments demonstrate a variety of physically plausible water drop phenomena at a real-time rate, including capillary waves when water drops collide, pinch-off of water jets, and droplets flowing over solid materials. The whole system performs orders-of-magnitude faster than existing simulation approaches that generate comparable water drop effects.

Cited By

View all
  • (2024)Unified Pressure, Surface Tension and Friction for SPH FluidsACM Transactions on Graphics10.1145/370803444:1(1-28)Online publication date: 10-Dec-2024
  • (2024)Controllable Neural Style Transfer for Dynamic MeshesACM SIGGRAPH 2024 Conference Papers10.1145/3641519.3657474(1-11)Online publication date: 13-Jul-2024
  • (2024)Dual-mechanism surface tension model for SPH-based simulationThe Visual Computer: International Journal of Computer Graphics10.1007/s00371-024-03474-440:7(4765-4776)Online publication date: 1-Jul-2024
  • Show More Cited By
  1. A Deformable Surface Model for Real-Time Water Drop Animation

    Recommendations

    Comments

    Please enable JavaScript to view thecomments powered by Disqus.

    Information & Contributors

    Information

    Published In

    cover image IEEE Transactions on Visualization and Computer Graphics
    IEEE Transactions on Visualization and Computer Graphics  Volume 18, Issue 8
    August 2012
    192 pages

    Publisher

    IEEE Educational Activities Department

    United States

    Publication History

    Published: 01 August 2012

    Author Tags

    1. Deformable surface model
    2. mean curvature flow
    3. surface tension
    4. water drop simulation.

    Qualifiers

    • Article

    Contributors

    Other Metrics

    Bibliometrics & Citations

    Bibliometrics

    Article Metrics

    • Downloads (Last 12 months)0
    • Downloads (Last 6 weeks)0
    Reflects downloads up to 01 Jan 2025

    Other Metrics

    Citations

    Cited By

    View all
    • (2024)Unified Pressure, Surface Tension and Friction for SPH FluidsACM Transactions on Graphics10.1145/370803444:1(1-28)Online publication date: 10-Dec-2024
    • (2024)Controllable Neural Style Transfer for Dynamic MeshesACM SIGGRAPH 2024 Conference Papers10.1145/3641519.3657474(1-11)Online publication date: 13-Jul-2024
    • (2024)Dual-mechanism surface tension model for SPH-based simulationThe Visual Computer: International Journal of Computer Graphics10.1007/s00371-024-03474-440:7(4765-4776)Online publication date: 1-Jul-2024
    • (2022)Position-Based Surface Tension FlowACM Transactions on Graphics10.1145/3550454.355547641:6(1-12)Online publication date: 30-Nov-2022
    • (2022)Efficient kinetic simulation of two-phase flowsACM Transactions on Graphics10.1145/3528223.353013241:4(1-17)Online publication date: 22-Jul-2022
    • (2021)Keypoint-driven line drawing vectorization via PolyVector flowACM Transactions on Graphics10.1145/3478513.348052940:6(1-17)Online publication date: 10-Dec-2021
    • (2021)Solid-fluid interaction with surface-tension-dominant contactACM Transactions on Graphics10.1145/3450626.345986240:4(1-12)Online publication date: 19-Jul-2021
    • (2020)Codimensional surface tension flow using moving-least-squares particlesACM Transactions on Graphics10.1145/3386569.339248739:4(42:1-42:14)Online publication date: 12-Aug-2020
    • (2020)A model for soap film dynamics with evolving thicknessACM Transactions on Graphics10.1145/3386569.339240539:4(31:1-31:11)Online publication date: 12-Aug-2020
    • (2017)A hyperbolic geometric flow for evolving films and foamsACM Transactions on Graphics10.1145/3130800.313083536:6(1-11)Online publication date: 20-Nov-2017
    • Show More Cited By

    View Options

    View options

    Media

    Figures

    Other

    Tables

    Share

    Share

    Share this Publication link

    Share on social media