Model Reduction for a Port-Hamiltonian Formulation of the Euler Equations
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Publisher
Springer International Publishing
Link
https://link.springer.com/content/pdf/10.1007/978-3-031-11818-0_1
Reference5 articles.
1. H. Egger. A mixed variational discretization for non-isothermal compressible flow in pipelines. arXiv:1611.03368, 2016.
2. H. Egger, T. Kugler, B. Liljegren-Sailer, N. Marheineke, and V. Mehrmann. On structure-preserving model reduction for damped wave propagation in transport networks. SIAM J. Sci. Comput., 40(1), 2018.
3. S.-A. Hauschild and N. Marheineke. Structure-preserving discretization of a port-Hamiltonian formulation of the non-isothermal Euler equations. PAMM, 20(1):e202000014, 2021.
4. B. Liljegren-Sailer and N. Marheineke. On port-Hamiltonian approximation of a nonlinear flow problem on networks. arXiv:2009.11216, 2021.
5. V. Mehrmann and R. Morandin. Structure-preserving discretization for port-Hamiltonian descriptor systems. In: 58th IEEE Conference on Decision and Control, CDC 2019, Nice, France, December 11–13, 2019, pages 6863–6868. IEEE, 2019.
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1. Structure‐preserving methods for a coupled port‐Hamiltonian system of compressible non‐isothermal fluid flow;PAMM;2023-09
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