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<h2class="header-light regular-pad">What is SU2?</h2>
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<p>SU2 is an open-source collection of software tools written in C++ and Python for the analysis of partial differential equations (PDEs) and PDE-constrained optimization problems on unstructured meshes with state-of-the-art numerical methods. SU2 is a leading technology for adjoint-based optimization. Through the initiative of users and developers around the world, SU2 is now a well established tool in the computational sciences with wide applicability to aeronautical, automotive, naval, and renewable energy industries, to name a few.</p>
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<p>Find a detailed description of the code philosophy, components, and implementations in the SU2 <ahref="https://arc.aiaa.org/doi/abs/10.2514/1.J053813">AIAA Journal article</a>. Whether it's <ahref="documents/AIAA-2016-3518.pdf">discrete adjoints</a>, <ahref="documents/2017_J._Phys.3A_Conf._Ser._821_012013.pdf">non-ideal compressible CFD</a>, or <ahref="http://dx.doi.org/10.1016/j.compfluid.2016.02.003">high-performance computing</a>, SU2 has something for you.</p>
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<p>Find a detailed description of the code philosophy, components, and implementations in the SU2 <ahref="https://arc.aiaa.org/doi/abs/10.2514/1.J053813">AIAA Journal article</a>. Whether it's <ahref="documents/AIAA-2016-3518.pdf">discrete adjoints</a>, <ahref="documents/2017_J._Phys.3A_Conf._Ser._821_012013.pdf">non-ideal compressible CFD</a>, <ahref="http://dx.doi.org/10.1016/j.compfluid.2016.02.003">high-performance computing</a>, or <ahref="documents/AIAA-2018-3111.pdf"> incompressible flows with heat transfer</a>, SU2 has something for you.</p>
<p> SU2 isn't just software. It's a research platform. Catch up to the state-of-the-art and push the boundaries in your field with SU2.</p>
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<p>Find a detailed description of the code philosophy,
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components, and implementations in the SU2 <ahref="https://arc.aiaa.org/doi/abs/10.2514/1.J053813">AIAA Journal article</a>. Whether it's <ahref="documents/AIAA-2016-3518.pdf">discrete adjoints</a>, <ahref="documents/2017_J._Phys.3A_Conf._Ser._821_012013.pdf">non-ideal compressible CFD</a>, or <ahref="http://dx.doi.org/10.1016/j.compfluid.2016.02.003">high-performance computing</a>, SU2 has something for you.</p>
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components, and implementations in the SU2 <ahref="https://arc.aiaa.org/doi/abs/10.2514/1.J053813">AIAA Journal article</a>. Whether it's <ahref="documents/AIAA-2016-3518.pdf">discrete adjoints</a>, <ahref="documents/2017_J._Phys.3A_Conf._Ser._821_012013.pdf">non-ideal compressible CFD</a>, <ahref="http://dx.doi.org/10.1016/j.compfluid.2016.02.003">high-performance computing</a>, or <ahref="documents/AIAA-2018-3111.pdf"> incompressible flows with heat transfer</a>, SU2 has something for you.</p>
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