Package: openfoam13 Version: 20260624 Architecture: arm64 Maintainer: OpenFOAM Foundation Installed-Size: 593886 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-arm64/openfoam13_20260624_arm64.deb Size: 116766704 MD5sum: 0429b70e5664b6fac58629b51a0bf32c SHA1: 5fae7990f7ceb1e282886108568cf37dcf80e101 SHA256: 2f68b52d99d9a1351219c4ed8876190ae47d09db2583244addc1564a68067f46 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: arm64 Maintainer: OpenFOAM Foundation Installed-Size: 650667 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-arm64/openfoam14_20260714_arm64.deb Size: 123308722 MD5sum: 7b99568e95611d7025d63aea580fa1b4 SHA1: 4fca9344aca96b8580e73970e2e66ba0e9bf29f5 SHA256: 7ebbfbb7038965e40ffaf6435e84aa691299dd1f2e16a4fdf441d0aed3f210d1 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: arm64 Maintainer: OpenFOAM Foundation Depends: libopenmpi-dev, zlib1g-dev, gnuplot, gnuplot-x11, libxt-dev, build-essential, cmake, flex Filename: dists/resolute/main/binary-arm64/openfoam-nopv-deps.deb Size: 628 MD5sum: 61c5283707c2bbe65157769b783bd04a SHA1: 1d4eb263fc772a8898b22749cd6847466630175f SHA256: f84cdc11f37d4d3dc966d82998b78914dbfd59ec9f6958cf0708a4218cc15b8c 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: arm64 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-arm64/openfoam-deps.deb Size: 720 MD5sum: e8e25e05e7bb502ceb1406eb1cf3859f SHA1: a3a17cc02e779fa554b83109e217a1c0d10cf87c SHA256: 49a83aa53e9c565db796a2495d8f7a83caaf5ade6f0cc2fc3a4d3c93ade1f27a Homepage: https://openfoam.org Description: Installs dependent software to compile OpenFOAM including the reader modules for ParaView. Package: openfoam14 Version: 20260724 Architecture: arm64 Maintainer: OpenFOAM Foundation Installed-Size: 650660 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-arm64/openfoam14_20260724_arm64.deb Size: 123300618 MD5sum: 2948957a20b77920ce2a850a8a77f815 SHA1: b9b31e7fcdefdcc1c14400054b6d2acdee378898 SHA256: 1629285982683da244d7c7da7e1ec09d3f49fceb6f6692b1349cf725ddeed9b9 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.