| ... | @@ -1011,7 +1011,7 @@ for two problems: the Orszag-Tang vortex problem (example 1) and a |
... | @@ -1011,7 +1011,7 @@ for two problems: the Orszag-Tang vortex problem (example 1) and a |
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shock-cloud interaction problem (example 2).
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shock-cloud interaction problem (example 2).
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**Example 1** (taken from `/nirvana/testproblems/MHD/problem2`; cf.
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**Example 1** (taken from `/nirvana/testproblems/MHD/problem2`; cf.
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[Z04](#references))
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\[[Z04](#references)\])
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IC for the Orszag-Tang vortex problem simulated in a doubly-periodic
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IC for the Orszag-Tang vortex problem simulated in a doubly-periodic
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square domain of length L (given by `_C.up[0]-_C.lo[0]`):
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square domain of length L (given by `_C.up[0]-_C.lo[0]`):
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| ... | @@ -1097,7 +1097,7 @@ algebraic expression $a^2+b^2+c^2$. |
... | @@ -1097,7 +1097,7 @@ algebraic expression $a^2+b^2+c^2$. |
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IC for the shock-cloud interaction problem simulated in a 3D Cartesian
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IC for the shock-cloud interaction problem simulated in a 3D Cartesian
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box given by (x,y,z)=[-1/2,1/2]<sup>3</sup>:
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box given by (x,y,z)=[-1/2,1/2]<sup>3</sup>:
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{width=700px}
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{width=100%}
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At **x**=(0.3,0,0) a spherical clump with
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At **x**=(0.3,0,0) a spherical clump with
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radius 0.15 and density of 10 is embedded and co-moving with its
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radius 0.15 and density of 10 is embedded and co-moving with its
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