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Understanding Shock Waves and Fluid Dynamics Through Animation Techniques

This presentation showcases the complexities of fluid dynamics and shock wave phenomena using engaging animations. Explore key concepts such as the explosion of charges in the ground, crack development in materials, and the behavior of shock waves in both elastic-plastic rocks and gases. Additional topics include the impact of sintering and varied flow patterns in crystal growth, water droplets, and contaminant spreading in airflows. Animated visuals will enhance your understanding of these dynamic processes, making science accessible and fascinating.

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Understanding Shock Waves and Fluid Dynamics Through Animation Techniques

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Presentation Transcript


  1. Use slide-show mode to view animations! Explosion of charge in ground Problems for collided elastic plastic bodies

  2. Forming and forging Crack development in extended elastic plastic specimen Sintering of powder composite

  3. Shock wave in elastic plastic rock with cavity Shock wave in gas Solitary wave in a basin with variable depth Tidal wave in Onega Bay of White Sea

  4. Adapted moving grids for shock wave calculation, fictitious domain technique, overlapping grids

  5. Temperature distribution in thermo-gravitational incompressible flow Water Icing near the cooled wall Karman vortex street

  6. Variants of melt flow in some crystal growth production techniques

  7. Candle smoke spreading in a room Contaminant spreading by air and filtration flows

  8. Continuous marker function technique: water droplet falling into a water basin; water flow down through a hole; water column collapse.

  9. Discrete markers technique for free and open boundaries Fountain from vertical stream; Water streams falling into a water basin;

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