Overview Brief: I have corrected the pressure equation I previously used in my solver, so that now it handles correctly density ratios. Problem domain: Lx = Ly = 0.25 m Square side length = 0.1 m * Simulated time : 1 s * Equal densities and viscosities.
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I have corrected the pressure equation I previously used in my solver, so that now it handles correctly density ratios. [unpublished work] Physically accurate simulation of the oscillation of a liquid droplet in zero gravity due to
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Problem domain: Lx = Ly = 0.25 m Square side length = 0.1 m * Simulated time : 1 s * Equal densities and viscosities. Explicit curvature model is the most popular method for the calculus of VIDEO LOG ~~~~~~~~~~~~~ Number of particles : 137178 Speed rate : 0.25x Simulated time : 15.0s Simulation time : 5h 3m ...
Context What to Know
VIDEO LOG ~~~~~~~~~~~~~ Number of particles : 137178 Speed rate : 0.25x Simulated time : 15.0s Simulation time : 5h 3m ...
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- I have corrected the pressure equation I previously used in my solver, so that now it handles correctly density ratios.
- [unpublished work] Physically accurate simulation of the oscillation of a liquid droplet in zero gravity due to
- Problem domain: Lx = Ly = 0.25 m Square side length = 0.1 m * Simulated time : 1 s * Equal densities and viscosities.
- VIDEO LOG ~~~~~~~~~~~~~ Number of particles : 137178 Speed rate : 0.25x Simulated time : 15.0s Simulation time : 5h 3m ...
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