Package: openfoam13 Version: 20260624 Architecture: amd64 Maintainer: OpenFOAM Foundation Installed-Size: 622399 Depends: g++, libreadline-dev, libc6 (>= 2.43), libgcc-s1 (>= 3.0), libopenmpi40 (>= 5.0.10), libstdc++6 (>= 14), zlib1g (>= 1:1.1.4), binutils-dev, flex, libopenmpi-dev, libxt-dev, openmpi-bin, gnuplot, gnuplot-x11, make Recommends: paraview Filename: dists/resolute/main/binary-amd64/openfoam13_20260624_amd64.deb Size: 122842238 MD5sum: 2496e149938c65bc2e2ddcca10de8dc3 SHA1: dd7f14df026323b2147f711360f62daff616a545 SHA256: 12eb29d54da69859425ff751e3a49694abdc8ce99f354286e9c05079fcb7c4dc Section: science Priority: optional Homepage: https://openfoam.org Description: OpenFOAM is the leading free, open source software for computational fluid dynamics (CFD), owned by the OpenFOAM Foundation (https://openfoam.org) and distributed exclusively under the General Public Licence (GPL). It is produced, maintained and developed primarily by CFD Direct Ltd (https://cfd.direct). OpenFOAM has has a large user base across most areas of engineering and science, from both commercial and academic organisations. It has an extensive range of features to simulate fluid flow, heat transfer, thermodynamics, chemical reactions, discrete particles, fluid films, and more. It includes tools for meshing in and around complex geometries, data processing and visualisation. The OpenFOAM's environment supports customised development, with compilation tools and a modular structure. Almost all computations can be executed in parallel as standard to take full advantage of multi-core processors and multi-processor computers. Package: openfoam14 Version: 20260714 Architecture: amd64 Maintainer: OpenFOAM Foundation Installed-Size: 682390 Depends: g++, libreadline-dev, libc6 (>= 2.43), libgcc-s1 (>= 3.0), libopenmpi40 (>= 5.0.10), libstdc++6 (>= 14), zlib1g (>= 1:1.1.4), binutils-dev, flex, libopenmpi-dev, libxt-dev, openmpi-bin, gnuplot, gnuplot-x11, make Recommends: paraview Filename: dists/resolute/main/binary-amd64/openfoam14_20260714_amd64.deb Size: 129682230 MD5sum: d2ac4b63a016a0447a91489947d0e3d7 SHA1: 9368fb889d403756e3969f112c30f9435b2a3c7a SHA256: 9a2840c779be40397fd80cb2f37312de3f23fc8ef1b7362b240f2f73030fa7dc Section: science Priority: optional Homepage: https://openfoam.org Description: OpenFOAM is the leading free, open source software for computational fluid dynamics (CFD), owned by the OpenFOAM Foundation (https://openfoam.org) and distributed exclusively under the General Public Licence (GPL). It is produced, maintained and developed primarily by CFD Direct Ltd (https://cfd.direct). OpenFOAM has has a large user base across most areas of engineering and science, from both commercial and academic organisations. It has an extensive range of features to simulate fluid flow, heat transfer, thermodynamics, chemical reactions, discrete particles, fluid films, and more. It includes tools for meshing in and around complex geometries, data processing and visualisation. The OpenFOAM's environment supports customised development, with compilation tools and a modular structure. Almost all computations can be executed in parallel as standard to take full advantage of multi-core processors and multi-processor computers. Package: openfoam-nopv-deps Version: 20260716 Architecture: amd64 Maintainer: OpenFOAM Foundation Depends: libopenmpi-dev, zlib1g-dev, gnuplot, gnuplot-x11, libxt-dev, build-essential, cmake, flex Filename: dists/resolute/main/binary-amd64/openfoam-nopv-deps.deb Size: 630 MD5sum: 01f1a24701d58f6129714457e2c771de SHA1: 0022cc0000e80ee745d525ab290e7550b73fd077 SHA256: 4e94e9da1cf4209d816893bafbfe8e6d1d3f23d5d78c8e8d0927654cae3f48aa Homepage: https://openfoam.org Description: Installs dependent software to compile OpenFOAM but not including the reader modules for ParaView. Package: openfoam-deps Version: 20260716 Architecture: amd64 Maintainer: OpenFOAM Foundation Depends: libxml2-dev, libhdf5-dev, libavfilter-dev, libtheora-dev, libgl2ps-dev, libx11-dev, libqt5x11extras5-dev, libglew-dev, libutfcpp-dev, libdouble-conversion-dev, libfreetype-dev, libqt5svg5-dev, qtxmlpatterns5-dev-tools, qttools5-dev, python3-dev, libvtk9-dev, xsltproc, libadios2-serial-c-dev, libadios2-serial-c++-dev, openfoam-nopv-deps Filename: dists/resolute/main/binary-amd64/openfoam-deps.deb Size: 720 MD5sum: 7f46f84ccde49905160c387bdbba1543 SHA1: 0e98b9ac63bace13459e0ff5dd7b54edcf143d8e SHA256: 983d56aef9e61ed9df153536bc1ec51169ebde9b4538c17861d3d5ecb71df2fb Homepage: https://openfoam.org Description: Installs dependent software to compile OpenFOAM including the reader modules for ParaView. Package: openfoam14 Version: 20260724 Architecture: amd64 Maintainer: OpenFOAM Foundation Installed-Size: 682383 Depends: g++, libreadline-dev, libc6 (>= 2.43), libgcc-s1 (>= 3.0), libopenmpi40 (>= 5.0.10), libstdc++6 (>= 14), zlib1g (>= 1:1.1.4), binutils-dev, flex, libopenmpi-dev, libxt-dev, openmpi-bin, gnuplot, gnuplot-x11, make Recommends: paraview Filename: dists/resolute/main/binary-amd64/openfoam14_20260724_amd64.deb Size: 129748658 MD5sum: 694198835590ed307da3f5d70d90b94b SHA1: e470521f1070b91a4915b2e70f917183614432f3 SHA256: bfd108f9c92139d3608af911d205cebacc088c88731619bb028e174c0b89c20c Section: science Priority: optional Homepage: https://openfoam.org Description: OpenFOAM is the leading free, open source software for computational fluid dynamics (CFD), owned by the OpenFOAM Foundation (https://openfoam.org) and distributed exclusively under the General Public Licence (GPL). It is produced, maintained and developed primarily by CFD Direct Ltd (https://cfd.direct). OpenFOAM has has a large user base across most areas of engineering and science, from both commercial and academic organisations. It has an extensive range of features to simulate fluid flow, heat transfer, thermodynamics, chemical reactions, discrete particles, fluid films, and more. It includes tools for meshing in and around complex geometries, data processing and visualisation. The OpenFOAM's environment supports customised development, with compilation tools and a modular structure. Almost all computations can be executed in parallel as standard to take full advantage of multi-core processors and multi-processor computers.