code-saturne 4.2.0+repack-1 source package in Ubuntu

Changelog

code-saturne (4.2.0+repack-1) unstable; urgency=medium

  * New upstream release.
  * Drop patches (fixed upstream):
    - format-not-a-string-literal-and-no-format-arguments.patch
    - pdflatex.patch
  * code-saturne-doc: new symlink /usr/share/doc/code_saturne to
    code-saturne to make "code_saturne info -g <doc>" functional again.
  * debian/NEWS: update version to 4.1.1+repack-2.

 -- Gilles Filippini <email address hidden>  Mon, 04 Jan 2016 21:55:28 +0100

Upload details

Uploaded by:
Debian Science Team
Uploaded to:
Sid
Original maintainer:
Debian Science Team
Architectures:
any all
Section:
science
Urgency:
Medium Urgency

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File Size SHA-256 Checksum
code-saturne_4.2.0+repack-1.dsc 2.3 KiB 6e0cc3cbfe0fda6d5275d3bce584d7d7bdf3b5ad471dfe25af21d2d79e465444
code-saturne_4.2.0+repack.orig.tar.gz 17.0 MiB 8d4ea5ef94b533a8b0680e2b2a1265ca8f309ef40df874f92655766113fedd90
code-saturne_4.2.0+repack-1.debian.tar.xz 7.4 KiB 8bb5c69164c94c5c8922bb5d984156abc56794447ad227a05ee76b247b57454d

Available diffs

No changes file available.

Binary packages built by this source

code-saturne: General purpose Computational Fluid Dynamics (CFD) software

 The basic capabilities of Code_Saturne enable the handling of either
 incompressible or expandable flows with or without heat transfer and
 turbulence. Dedicated modules are available for specific physics such
 as radiative heat transfer, combustion (gas, coal, heavy fuel oil, ...),
 magneto-hydrodynamics, compressible flows, two-phase flows
 (Euler-Lagrange approach with two-way coupling), extensions to
 specific applications (e.g. Mercure_Saturne for atmospheric
 environment).
 .
 It runs in parallel with MPI on distributed memory machines.
 Developed since 1997 at EDF R&D, it is based on a co-located Finite
 Volume approach that accepts meshes with any type of cell
 (tetrahedral, hexahedral, prismatic, pyramidal, polyhedral...) and any
 type of grid structure (unstructured, block structured, hybrid,
 conforming or with hanging nodes, ...).

code-saturne-bin: General purpose Computational Fluid Dynamics (CFD) software - binaries

 The basic capabilities of Code_Saturne enable the handling of either
 incompressible or expandable flows with or without heat transfer and
 turbulence. Dedicated modules are available for specific physics such
 as radiative heat transfer, combustion (gas, coal, heavy fuel oil, ...),
 magneto-hydrodynamics, compressible flows, two-phase flows
 (Euler-Lagrange approach with two-way coupling), extensions to
 specific applications (e.g. Mercure_Saturne for atmospheric
 environment).
 .
 It runs in parallel with MPI on distributed memory machines.
 Developed since 1997 at EDF R&D, it is based on a co-located Finite
 Volume approach that accepts meshes with any type of cell
 (tetrahedral, hexahedral, prismatic, pyramidal, polyhedral...) and any
 type of grid structure (unstructured, block structured, hybrid,
 conforming or with hanging nodes, ...).
 .
 This package contains the binary files.

code-saturne-bin-dbgsym: debug symbols for package code-saturne-bin

 The basic capabilities of Code_Saturne enable the handling of either
 incompressible or expandable flows with or without heat transfer and
 turbulence. Dedicated modules are available for specific physics such
 as radiative heat transfer, combustion (gas, coal, heavy fuel oil, ...),
 magneto-hydrodynamics, compressible flows, two-phase flows
 (Euler-Lagrange approach with two-way coupling), extensions to
 specific applications (e.g. Mercure_Saturne for atmospheric
 environment).
 .
 It runs in parallel with MPI on distributed memory machines.
 Developed since 1997 at EDF R&D, it is based on a co-located Finite
 Volume approach that accepts meshes with any type of cell
 (tetrahedral, hexahedral, prismatic, pyramidal, polyhedral...) and any
 type of grid structure (unstructured, block structured, hybrid,
 conforming or with hanging nodes, ...).
 .
 This package contains the binary files.

code-saturne-data: General purpose Computational Fluid Dynamics (CFD) software - data

 The basic capabilities of Code_Saturne enable the handling of either
 incompressible or expandable flows with or without heat transfer and
 turbulence. Dedicated modules are available for specific physics such
 as radiative heat transfer, combustion (gas, coal, heavy fuel oil, ...),
 magneto-hydrodynamics, compressible flows, two-phase flows
 (Euler-Lagrange approach with two-way coupling), extensions to
 specific applications (e.g. Mercure_Saturne for atmospheric
 environment).
 .
 It runs in parallel with MPI on distributed memory machines.
 Developed since 1997 at EDF R&D, it is based on a co-located Finite
 Volume approach that accepts meshes with any type of cell
 (tetrahedral, hexahedral, prismatic, pyramidal, polyhedral...) and any
 type of grid structure (unstructured, block structured, hybrid,
 conforming or with hanging nodes, ...).
 .
 This package contains the data.

code-saturne-doc: General purpose Computational Fluid Dynamics (CFD) software - Documentation

 The basic capabilities of Code_Saturne enable the handling of either
 incompressible or expandable flows with or without heat transfer and
 turbulence. Dedicated modules are available for specific physics such
 as radiative heat transfer, combustion (gas, coal, heavy fuel oil, ...),
 magneto-hydrodynamics, compressible flows, two-phase flows
 (Euler-Lagrange approach with two-way coupling), extensions to
 specific applications (e.g. Mercure_Saturne for atmospheric
 environment).
 .
 It runs in parallel with MPI on distributed memory machines.
 Developed since 1997 at EDF R&D, it is based on a co-located Finite
 Volume approach that accepts meshes with any type of cell
 (tetrahedral, hexahedral, prismatic, pyramidal, polyhedral...) and any
 type of grid structure (unstructured, block structured, hybrid,
 conforming or with hanging nodes, ...).
 .
 This package contains the documentation.

code-saturne-include: General purpose Computational Fluid Dynamics (CFD) software - includes

 The basic capabilities of Code_Saturne enable the handling of either
 incompressible or expandable flows with or without heat transfer and
 turbulence. Dedicated modules are available for specific physics such
 as radiative heat transfer, combustion (gas, coal, heavy fuel oil, ...),
 magneto-hydrodynamics, compressible flows, two-phase flows
 (Euler-Lagrange approach with two-way coupling), extensions to
 specific applications (e.g. Mercure_Saturne for atmospheric
 environment).
 .
 It runs in parallel with MPI on distributed memory machines.
 Developed since 1997 at EDF R&D, it is based on a co-located Finite
 Volume approach that accepts meshes with any type of cell
 (tetrahedral, hexahedral, prismatic, pyramidal, polyhedral...) and any
 type of grid structure (unstructured, block structured, hybrid,
 conforming or with hanging nodes, ...).
 .
 This package contains the include files.