Mutation++: MUlticomponent Thermodynamic And Transport properties for IONized gases in C++. Scoggins, J., B., Leroy, V., Bellas-Chatzigeorgis, G., Dias, B., & Magin, T., E. SoftwareX, 12:100575, Elsevier B.V., 7, 2020.
Paper doi abstract bibtex The Mutation++ library provides accurate and efficient computation of physicochemical properties associated with partially ionized gases in various degrees of thermal nonequilibrium. With v1.0.0, users can compute thermodynamic and transport properties, multiphase linearly-constrained equilibria, chemical production rates, energy transfer rates, and gas-surface interactions. The framework is based on an object-oriented design in C++, allowing users to plug-and-play various models, algorithms, and data as necessary. Mutation++ is available open-source under the GNU Lesser General Public License v3.0.
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title = {Mutation++: MUlticomponent Thermodynamic And Transport properties for IONized gases in C++},
type = {article},
year = {2020},
keywords = {Gas-surface interaction,Multiphase equilibrium,Partially ionized gases,Thermochemical nonequilibrium},
pages = {100575},
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abstract = {The Mutation++ library provides accurate and efficient computation of physicochemical properties associated with partially ionized gases in various degrees of thermal nonequilibrium. With v1.0.0, users can compute thermodynamic and transport properties, multiphase linearly-constrained equilibria, chemical production rates, energy transfer rates, and gas-surface interactions. The framework is based on an object-oriented design in C++, allowing users to plug-and-play various models, algorithms, and data as necessary. Mutation++ is available open-source under the GNU Lesser General Public License v3.0.},
bibtype = {article},
author = {Scoggins, James B. and Leroy, Vincent and Bellas-Chatzigeorgis, Georgios and Dias, Bruno and Magin, Thierry E.},
doi = {10.1016/j.softx.2020.100575},
journal = {SoftwareX}
}
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