Movie:Driftwood Simulation: Difference between revisions
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|Movie domain = terrestrial, coastal | |Movie domain=terrestrial, coastal | ||
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|One-line movie description = Driftwood affecting flow velocity | |One-line movie description=Driftwood affecting flow velocity | ||
|Extended movie description=This is a simulation of driftwood in flow, and investigates how the 3-D velocity field is impacted by the objects traveling in it (and bumping into each other). | |Extended movie description=This is a simulation of driftwood in flow, and investigates how the 3-D velocity field is impacted by the objects traveling in it (and bumping into each other). | ||
The colors represent the different vector components of the 3D flow field and show how complex the flow field becomes with large trees traveling at the surface. The animation was made with the 1RICNaysCUBE 3D solver. | The colors represent the different vector components of the 3D flow field and show how complex the flow field becomes with large trees traveling at the surface. The animation was made with the 1RICNaysCUBE 3D solver. |
Latest revision as of 16:21, 21 June 2017
Information Page: Driftwood Simulation
Play Animation
Driftwood affects water velocity field
Key Attributes
Domain: | terrestrial, coastal |
Keywords: | driftwood, water velocity 3D fieldYasuyuki |
Model name: | Animation model name |
Name: | Yasuyuki, Shimiza |
Where: | theoretical simulation |
When: | not known |
Short Description
Grade level: Graduate / Professional
Statement: Driftwood affecting flow velocity
Abstract: This is a simulation of driftwood in flow, and investigates how the 3-D velocity field is impacted by the objects traveling in it (and bumping into each other). The colors represent the different vector components of the 3D flow field and show how complex the flow field becomes with large trees traveling at the surface. The animation was made with the 1RICNaysCUBE 3D solver.
Theory
Links
http://ws3-er.eng.hokudai.ac.jp/dpr/dpr eng/
References
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