Granular.jl

Julia package for granular dynamics simulation
git clone git://src.adamsgaard.dk/Granular.jl
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commit b3a11d3fab0cc139a56290b080d1b68917566ee8
parent 23fc4a029c9f5c4a8b4781eb1404f4049fda3add
Author: Anders Damsgaard <andersd@riseup.net>
Date:   Mon,  8 May 2017 22:53:29 -0400

change simulation id depending on resolution

Diffstat:
Mexamples/nares_strait.jl | 8++++----
1 file changed, 4 insertions(+), 4 deletions(-)

diff --git a/examples/nares_strait.jl b/examples/nares_strait.jl @@ -2,16 +2,16 @@ import SeaIce sim = SeaIce.createSimulation(id="nares_strait") +n = [25, 25, 2] + +#sim = SeaIce.createSimulation(id="nares_strait_coarse") +#n = [6, 6, 2] # Initialize ocean Lx = 50.e3 Lx_constriction = 10e3 L = [Lx, Lx*1.5, 1e3] Ly_constriction = 20e3 -#n = [100, 100, 2] # high resolution -#n = [50, 50, 2] # intermedite resolution -n = [25, 25, 2] -#n = [6, 6, 2] # coarse resolution sim.ocean = SeaIce.createRegularOceanGrid(n, L, name="poiseuille_flow") sim.ocean.v[:, :, 1, 1] = 1e-8*((sim.ocean.xq - Lx/2.).^2 - Lx^2./4.)