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Update 3.2 User interfaces
authored
Jan 09, 2021
by
Udo Ziegler
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@@ -1010,11 +1010,8 @@ IC for the Orszag-Tang problem simulated in a doubly-periodic square
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@@ -1010,11 +1010,8 @@ IC for the Orszag-Tang problem simulated in a doubly-periodic square
domain of length
*L*
(given by
`_C.up[0]-_C.lo[0]`
):
domain of length
*L*
(given by
`_C.up[0]-_C.lo[0]`
):
𝜚 = 𝜚
<sub>
0
</sub>
𝜚 = 𝜚
<sub>
0
</sub>
**m**
= 𝜚
<sub>
0
</sub>
(−sin(2
*π*
*y*
/
*L*
),sin(2
*π*
*x*
/
*L*
),0)
**m**
= 𝜚
<sub>
0
</sub>
(−sin(2
*π*
*y*
/
*L*
),sin(2
*π*
*x*
/
*L*
),0)
**B**
=
*B*
<sub>
0
</sub>
(−sin(2
*π*
*y*
/
*L*
),sin(4
*π*
*x*
/
*L*
),0)
**B**
=
*B*
<sub>
0
</sub>
(−sin(2
*π*
*y*
/
*L*
),sin(4
*π*
*x*
/
*L*
),0)
*e*
=
*p*
<sub>
0
</sub>
/(
*γ*
−1) +
**m**
<sup>
2
</sup>
/(2𝜚) +
**B**
<sup>
2
</sup>
/(2
*μ*
)
*e*
=
*p*
<sub>
0
</sub>
/(
*γ*
−1) +
**m**
<sup>
2
</sup>
/(2𝜚) +
**B**
<sup>
2
</sup>
/(2
*μ*
)
where 𝜚
<sub>
0
</sub>
=2.77778,
*p*
<sub>
0
</sub>
=5/3 and
where 𝜚
<sub>
0
</sub>
=2.77778,
*p*
<sub>
0
</sub>
=5/3 and
...
@@ -1093,10 +1090,10 @@ expression *a*<sup>2</sup> + *b*<sup>2</sup> + *c*<sup>2</sup>.
...
@@ -1093,10 +1090,10 @@ expression *a*<sup>2</sup> + *b*<sup>2</sup> + *c*<sup>2</sup>.
IC for the shock-cloud interaction problem simulated in a Cartesian box
IC for the shock-cloud interaction problem simulated in a Cartesian box
given by (
*x*
,
*y*
,
*z*
) ∈
\[
− 1/2, 1/2
\]
<sup>
3
</sup>
:
given by (
*x*
,
*y*
,
*z*
) ∈
\[
− 1/2, 1/2
\]
<sup>
3
</sup>
:


At
**x**
=
(0.3,
0,
0) a spherical clump with radius 0.15 and density of
At
**x**
=
(0.3,0,0) a spherical clump with radius 0.15 and density of
10 is embedded and co-moving with its surrounding flow under the
10 is embedded and co-moving with its surrounding flow under the
assumption of pressure equilibrium. The adiabatic index
*γ*
=
5/3 and
assumption of pressure equilibrium. The adiabatic index
*γ*
=
5/3 and
magnetic permeability
*μ*
=
1.
magnetic permeability
*μ*
=
1.
void configUser(GRD **gm)
void configUser(GRD **gm)
/**
/**
...
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...
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