Citation: Mapundi K. Banda, Michael Herty, Axel Klar. Coupling conditions for gas networks governed by the isothermal Euler equations[J]. Networks and Heterogeneous Media, 2006, 1(2): 295-314. doi: 10.3934/nhm.2006.1.295
1. | Mapundi K. Banda, Michael Herty, Towards a space mapping approach to dynamic compressor optimization of gas networks, 2011, 32, 01432087, 253, 10.1002/oca.929 | |
2. | Michael Herty, Niklas Kolbe, Siegfried Müller, Central schemes for networked scalar conservation laws, 2022, 18, 1556-1801, 310, 10.3934/nhm.2023012 | |
3. | Christophe Chalons, Pierre-Arnaud Raviart, Nicolas Seguin, The interface coupling of the gas dynamics equations, 2008, 66, 0033-569X, 659, 10.1090/S0033-569X-08-01087-X | |
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6. | Guillaume Ferriere, WKB analysis of the logarithmic nonlinear Schrödinger equation in an analytic framework, 2022, 24, 0219-1997, 10.1142/S0219199721500826 | |
7. | Michael Herty, 2015, Multi-scale modeling and nodal control for gas transportation networks, 978-1-4799-7886-1, 4585, 10.1109/CDC.2015.7402935 | |
8. | Dieter Armbruster, Simone Göttlich, Michael Herty, A Scalar Conservation Law with Discontinuous Flux for Supply Chains with Finite Buffers, 2011, 71, 0036-1399, 1070, 10.1137/100809374 | |
9. | Sara Grundel, Michael Herty, Hyperbolic discretization of simplified Euler equation via Riemann invariants, 2022, 106, 0307904X, 60, 10.1016/j.apm.2022.01.006 | |
10. | Mapundi Kondwani Banda, 2015, Chapter 9, 978-3-319-11321-0, 439, 10.1007/978-3-319-11322-7_9 | |
11. | R. Borsche, A. Klar, Kinetic Layers and Coupling Conditions for Macroscopic Equations on Networks I: The Wave Equation, 2018, 40, 1064-8275, A1784, 10.1137/17M1138364 | |
12. | Markus Dick, Martin Gugat, Gunter Leugering, 2012, Feedback stabilization of quasilinear hyperbolic systems with varying delays, 978-1-4673-2124-2, 125, 10.1109/MMAR.2012.6347931 | |
13. | H. Egger, A Robust Conservative Mixed Finite Element Method for Isentropic Compressible Flow on Pipe Networks, 2018, 40, 1064-8275, A108, 10.1137/16M1094373 | |
14. | Rinaldo M. Colombo, Mauro Garavello, On the Cauchy Problem for the p-System at a Junction, 2008, 39, 0036-1410, 1456, 10.1137/060665841 | |
15. | Gunhild A. Reigstad, Tore Flåtten, Nils Erland Haugen, Tor Ytrehus, Coupling constants and the generalized Riemann problem for isothermal junction flow, 2015, 12, 0219-8916, 37, 10.1142/S0219891615500022 | |
16. | Martin Gugat, Rüdiger Schultz, Boundary Feedback Stabilization of the Isothermal Euler Equations with Uncertain Boundary Data, 2018, 56, 0363-0129, 1491, 10.1137/16M1090156 | |
17. | Junyao Xie, Stevan Dubljevic, Discrete-time modeling and output regulation of gas pipeline networks, 2021, 98, 09591524, 30, 10.1016/j.jprocont.2020.12.002 | |
18. | Martin Gugat, David Wintergerst, Transient Flow in Gas Networks: Traveling waves, 2018, 28, 2083-8492, 341, 10.2478/amcs-2018-0025 | |
19. | BENJAMIN BOUTIN, CHRISTOPHE CHALONS, PIERRE-ARNAUD RAVIART, EXISTENCE RESULT FOR THE COUPLING PROBLEM OF TWO SCALAR CONSERVATION LAWS WITH RIEMANN INITIAL DATA, 2010, 20, 0218-2025, 1859, 10.1142/S0218202510004817 | |
20. | Martin Gugat, Falk M. Hante, On the Turnpike Phenomenon for Optimal Boundary Control Problems with Hyperbolic Systems, 2019, 57, 0363-0129, 264, 10.1137/17M1134470 | |
21. | Raul Borsche, Jochen Kall, ADER schemes and high order coupling on networks of hyperbolic conservation laws, 2014, 273, 00219991, 658, 10.1016/j.jcp.2014.05.042 | |
22. | Kristen DeVault, Pierre A. Gremaud, Vera Novak, Mette S. Olufsen, Guillaume Vernières, Peng Zhao, Blood Flow in the Circle of Willis: Modeling and Calibration, 2008, 7, 1540-3459, 888, 10.1137/07070231X | |
23. | Gunhild A. Reigstad, Existence and Uniqueness of Solutions to the Generalized Riemann Problem for Isentropic Flow, 2015, 75, 0036-1399, 679, 10.1137/140962759 | |
24. | Michael Herty, Nouh Izem, Mohammed Seaid, Fast and accurate simulations of shallow water equations in large networks, 2019, 78, 08981221, 2107, 10.1016/j.camwa.2019.03.049 | |
25. | Mapundi K. Banda, Axel-Stefan Häck, Michael Herty, Numerical Discretization of Coupling Conditions by High-Order Schemes, 2016, 69, 0885-7474, 122, 10.1007/s10915-016-0185-x | |
26. | Mapundi K. Banda, Michael Herty, Multiscale modeling for gas flow in pipe networks, 2008, 31, 01704214, 915, 10.1002/mma.948 | |
27. | M. Gugat, M. Herty, V. Schleper, Flow control in gas networks: Exact controllability to a given demand, 2011, 34, 01704214, 745, 10.1002/mma.1394 | |
28. | Martin Gugat, Michael Herty, 2020, Chapter 6, 978-981-15-0927-8, 147, 10.1007/978-981-15-0928-5_6 | |
29. | Simone Göttlich, Michael Herty, Ute Ziegler, Modeling and optimizing traffic light settings in road networks, 2015, 55, 03050548, 36, 10.1016/j.cor.2014.10.001 | |
30. | Martin Gugat, Rüdiger Schultz, David Wintergerst, Networks of pipelines for gas with nonconstant compressibility factor: stationary states, 2018, 37, 0101-8205, 1066, 10.1007/s40314-016-0383-z | |
31. | Martin Gugat, Jan Giesselmann, Teresa Kunkel, Exponential synchronization of a nodal observer for a semilinear model for the flow in gas networks, 2021, 38, 0265-0754, 1109, 10.1093/imamci/dnab029 | |
32. | A. Ambroso, C. Chalons, F. Coquel, E. Godlewski, F. Lagoutière, P. -A. Raviart, N. Seguin, 2008, Chapter 99, 978-3-540-75711-5, 947, 10.1007/978-3-540-75712-2_99 | |
33. | Oliver Kolb, Jens Lang, Pia Bales, Adaptive linearized models for optimization of gas networks, 2007, 7, 16177061, 1061301, 10.1002/pamm.200700089 | |
34. | Markus Dick, Martin Gugat, Günter Leugering, A strict $H^1$-Lyapunov function and feedback stabilization for the isothermal Euler equations with friction, 2011, 1, 2155-3297, 225, 10.3934/naco.2011.1.225 | |
35. | EIKE FOKKEN, SIMONE GÖTTLICH, MICHAEL HERTY, Efficient simulation of coupled gas and power networks under uncertain demands, 2022, 0956-7925, 1, 10.1017/S0956792522000079 | |
36. | Markus Dick, Martin Gugat, Michael Herty, Günter Leugering, Sonja Steffensen, Ke Wang, 2014, Chapter 31, 978-3-319-05082-9, 487, 10.1007/978-3-319-05083-6_31 | |
37. | Michael Herty, Hui Yu, Feedback boundary control of linear hyperbolic equations with stiff source term, 2018, 91, 0020-7179, 230, 10.1080/00207179.2016.1276635 | |
38. | Yogiraj Mantri, Sebastian Noelle, Well-balanced discontinuous Galerkin scheme for 2 × 2 hyperbolic balance law, 2021, 429, 00219991, 110011, 10.1016/j.jcp.2020.110011 | |
39. | M. Herty, J. Mohring, V. Sachers, A new model for gas flow in pipe networks, 2010, 33, 01704214, 845, 10.1002/mma.1197 | |
40. | Sonja Hossbach, Mathias Lemke, Julius Reiss, Finite‐difference‐based simulation and adjoint optimization of gas networks, 2022, 45, 0170-4214, 4035, 10.1002/mma.8030 | |
41. | M. Herty, A. Klar, B. Piccoli, Existence of Solutions for Supply Chain Models Based on Partial Differential Equations, 2007, 39, 0036-1410, 160, 10.1137/060659478 | |
42. | Gunhild A. Reigstad, Numerical network models and entropy principles for isothermal junction flow, 2014, 9, 1556-181X, 65, 10.3934/nhm.2014.9.65 | |
43. | Lucas O. Müller, Pablo J. Blanco, A high order approximation of hyperbolic conservation laws in networks: Application to one-dimensional blood flow, 2015, 300, 00219991, 423, 10.1016/j.jcp.2015.07.056 | |
44. | Martin Gugat, Michael Herty, 2022, 23, 9780323850599, 59, 10.1016/bs.hna.2021.12.002 | |
45. | Martin Gugat, Stefan Ulbrich, Lipschitz solutions of initial boundary value problems for balance laws, 2018, 28, 0218-2025, 921, 10.1142/S0218202518500240 | |
46. | Eike Fokken, Tillmann Mühlpfordt, Timm Faulwasser, Simone Göttlich, Oliver Kolb, 2021, Chapter 12, 978-3-030-62731-7, 263, 10.1007/978-3-030-62732-4_12 | |
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49. | Sebastian Pfaff, Stefan Ulbrich, Optimal control of scalar conservation laws by on/off-switching, 2017, 32, 1055-6788, 904, 10.1080/10556788.2016.1236796 | |
50. | Alfredo Bermúdez, Mohsen Shabani, Finite element solution of isothermal gas flow in a network, 2019, 396, 00219991, 616, 10.1016/j.jcp.2019.06.063 | |
51. | Michael Schuster, Elisa Strauch, Martin Gugat, Jens Lang, Probabilistic constrained optimization on flow networks, 2022, 23, 1389-4420, 1, 10.1007/s11081-021-09619-x | |
52. | Martin Gugat, Falk M. Hante, Markus Hirsch-Dick, Günter Leugering, Stationary states in gas networks, 2015, 10, 1556-1801, 295, 10.3934/nhm.2015.10.295 | |
53. | Stephan Gerster, Michael Herty, Michael Chertkov, Marc Vuffray, Anatoly Zlotnik, 2019, Chapter 8, 978-3-030-27549-5, 59, 10.1007/978-3-030-27550-1_8 | |
54. | Martin Gugat, Michael Herty, Siegfried Müller, Coupling conditions for the transition from supersonic to subsonic fluid states, 2017, 12, 1556-181X, 371, 10.3934/nhm.2017016 | |
55. | Yannick Holle, Kinetic relaxation to entropy based coupling conditions for isentropic flow on networks, 2020, 269, 00220396, 1192, 10.1016/j.jde.2020.01.005 | |
56. | M. Hassan Farshbaf-Shaker, Martin Gugat, Holger Heitsch, René Henrion, Optimal Neumann Boundary Control of a Vibrating String with Uncertain Initial Data and Probabilistic Terminal Constraints, 2020, 58, 0363-0129, 2288, 10.1137/19M1269944 | |
57. | Gunhild Allard Reigstad, Tore Flåtten, 2015, Chapter 66, 978-3-319-10704-2, 667, 10.1007/978-3-319-10705-9_66 | |
58. | Alfredo Bermúdez, Xián López, M. Elena Vázquez-Cendón, Treating network junctions in finite volume solution of transient gas flow models, 2017, 344, 00219991, 187, 10.1016/j.jcp.2017.04.066 | |
59. | Alfredo Bermúdez, Mohsen Shabani, Modelling compressors, resistors and valves in finite element simulation of gas transmission networks, 2021, 89, 0307904X, 1316, 10.1016/j.apm.2020.08.013 | |
60. | David Fernando Novella Rodriguez, Emmanuel Witrant, Olivier Sename, 2016, Chapter 14, 978-3-319-18071-7, 275, 10.1007/978-3-319-18072-4_14 | |
61. | Mouhamadou Samsidy Goudiaby, Gunilla Kreiss, Existence result for the coupling of shallow water and Borda–Carnot equations with Riemann data, 2020, 17, 0219-8916, 185, 10.1142/S021989162050006X | |
62. | Ingenuin Gasser, Martin Rybicki, Modelling and simulation of gas dynamics in an exhaust pipe, 2013, 37, 0307904X, 2747, 10.1016/j.apm.2012.06.010 | |
63. | Simone Göttlich, Stephan Martin, Thorsten Sickenberger, Time-continuous production networks with random breakdowns, 2011, 6, 1556-181X, 695, 10.3934/nhm.2011.6.695 | |
64. | Jens Brouwer, Ingenuin Gasser, Michael Herty, Gas Pipeline Models Revisited: Model Hierarchies, Nonisothermal Models, and Simulations of Networks, 2011, 9, 1540-3459, 601, 10.1137/100813580 | |
65. | Sebastian Pfaff, Stefan Ulbrich, Günter Leugering, 2014, Chapter 8, 978-3-319-05082-9, 109, 10.1007/978-3-319-05083-6_8 | |
66. | Martin Gugat, Jan Giesselmann, G. Buttazzo, E. Casas, L. de Teresa, R. Glowinski, G. Leugering, E. Trélat, X. Zhang, Boundary feedback stabilization of a semilinear model for the flow in star-shaped gas networks, 2021, 27, 1292-8119, 67, 10.1051/cocv/2021061 | |
67. | Raul Borsche, Axel Klar, 2021, Chapter 2, 978-3-030-67103-7, 37, 10.1007/978-3-030-67104-4_2 | |
68. | Rinaldo M. Colombo, Graziano Guerra, Yannick Holle, Non conservative products in fluid dynamics, 2022, 66, 14681218, 103539, 10.1016/j.nonrwa.2022.103539 | |
69. | Graziano Guerra, Michael Herty, Francesca Marcellini, Modeling and analysis of pooled stepped chutes, 2011, 6, 1556-181X, 665, 10.3934/nhm.2011.6.665 | |
70. | Martin Gugat, Sonja Steffensen, Dynamic boundary control games with networks of strings, 2018, 24, 1292-8119, 1789, 10.1051/cocv/2017082 | |
71. | Alexandre Morin, Gunhild A. Reigstad, Pipe Networks: Coupling Constants in a Junction for the Isentropic Euler Equations, 2015, 64, 18766102, 140, 10.1016/j.egypro.2015.01.017 | |
72. | Pascal Mindt, Jens Lang, Pia Domschke, Entropy-Preserving Coupling of Hierarchical Gas Models, 2019, 51, 0036-1410, 4754, 10.1137/19M1240034 | |
73. | Markus Dick, Martin Gugat, Günter Leugering, Classical solutions and feedback stabilization for the gas flow in a sequence of pipes, 2010, 5, 1556-181X, 691, 10.3934/nhm.2010.5.691 | |
74. | Xinhui Wu, Jesse Chan, Entropy Stable Discontinuous Galerkin Methods for Nonlinear Conservation Laws on Networks and Multi-Dimensional Domains, 2021, 87, 0885-7474, 10.1007/s10915-021-01464-5 | |
75. | Andrea Corli, Magdalena Figiel, Anna Futa, Massimiliano D. Rosini, Coupling conditions for isothermal gas flow and applications to valves, 2018, 40, 14681218, 403, 10.1016/j.nonrwa.2017.09.005 | |
76. | Jeroen J. Stolwijk, Volker Mehrmann, Error Analysis and Model Adaptivity for Flows in Gas Networks, 2018, 26, 1844-0835, 231, 10.2478/auom-2018-0027 | |
77. | Rinaldo M. Colombo, Francesca Marcellini, Smooth and discontinuous junctions in the p-system, 2010, 361, 0022247X, 440, 10.1016/j.jmaa.2009.07.022 | |
78. | Mapundi K. Banda, Michael Herty, Jean-Medard T. Ngnotchouye, Toward a Mathematical Analysis for Drift-Flux Multiphase Flow Models in Networks, 2010, 31, 1064-8275, 4633, 10.1137/080722138 | |
79. | Andrea Corli, Ulrich Razafison, Massimiliano D. Rosini, Coherence and flow-maximization of a one-way valve, 2022, 56, 2822-7840, 1715, 10.1051/m2an/2022053 | |
80. | E. Fokken, S. Göttlich, O. Kolb, Modeling and simulation of gas networks coupled to power grids, 2019, 119, 0022-0833, 217, 10.1007/s10665-019-10026-6 | |
81. | Martin Gugat, Günter Leugering, Ke Wang, Neumann boundary feedback stabilization for a nonlinear wave equation: A strict $H^2$-lyapunov function, 2017, 7, 2156-8499, 419, 10.3934/mcrf.2017015 | |
82. | Michael Herty, Mohammed Seaïd, Assessment of coupling conditions in water way intersections, 2013, 71, 02712091, 1438, 10.1002/fld.3719 | |
83. | Mapundi K. Banda, Michael Herty, Jean Medard T. Ngnotchouye, On linearized coupling conditions for a class of isentropic multiphase drift-flux models at pipe-to-pipe intersections, 2015, 276, 03770427, 81, 10.1016/j.cam.2014.08.021 | |
84. | Rinaldo M. Colombo, 2011, Chapter 13, 978-1-4419-9553-7, 267, 10.1007/978-1-4419-9554-4_13 | |
85. | Martin Gugat, Markus Dick, Time-delayed boundary feedback stabilization of the isothermal Euler equations with friction, 2011, 1, 2156-8499, 469, 10.3934/mcrf.2011.1.469 | |
86. | MOUHAMADOU SAMSIDY GOUDIABY, GUNILLA KREISS, A RIEMANN PROBLEM AT A JUNCTION OF OPEN CANALS, 2013, 10, 0219-8916, 431, 10.1142/S021989161350015X | |
87. | Martin Gugat, Markus Dick, Günter Leugering, 2013, Chapter 26, 978-3-642-36061-9, 255, 10.1007/978-3-642-36062-6_26 | |
88. | Michael Herty, Mohammed Seaïd, Simulation of transient gas flow at pipe-to-pipe intersections, 2008, 56, 02712091, 485, 10.1002/fld.1531 | |
89. | Rinaldo M. Colombo, Francesca Marcellini, Coupling conditions for the $3\times 3$ Euler system, 2010, 5, 1556-181X, 675, 10.3934/nhm.2010.5.675 | |
90. | Pia Domschke, Oliver Kolb, Jens Lang, An adaptive model switching and discretization algorithm for gas flow on networks, 2010, 1, 18770509, 1331, 10.1016/j.procs.2010.04.148 | |
91. | Francesca Bellamoli, Lucas O. Müller, Eleuterio F. Toro, A numerical method for junctions in networks of shallow-water channels, 2018, 337, 00963003, 190, 10.1016/j.amc.2018.05.034 | |
92. | Martin Gugat, Michaël Herty, Existence of classical solutions and feedback stabilization for the flow in gas networks, 2011, 17, 1292-8119, 28, 10.1051/cocv/2009035 | |
93. | Martin Gugat, Markus Dick, Günter Leugering, Gas Flow in Fan-Shaped Networks: Classical Solutions and Feedback Stabilization, 2011, 49, 0363-0129, 2101, 10.1137/100799824 | |
94. | Alfredo Bermúdez, Xián López, M. Elena Vázquez-Cendón, Finite volume methods for multi-component Euler equations with source terms, 2017, 156, 00457930, 113, 10.1016/j.compfluid.2017.07.004 | |
95. | Alfredo Bermúdez, Xián López, M. Elena Vázquez-Cendón, Reprint of: Finite volume methods for multi-component Euler equations with source terms, 2018, 169, 00457930, 40, 10.1016/j.compfluid.2018.03.057 | |
96. | Simone Göttlich, Michael Herty, Christian Ringhofer, 2012, Chapter 11, 978-0-85729-643-6, 265, 10.1007/978-0-85729-644-3_11 | |
97. | Raul Borsche, Numerical schemes for networks of hyperbolic conservation laws, 2016, 108, 01689274, 157, 10.1016/j.apnum.2016.01.006 | |
98. | Martin Gugat, Günter Leugering, Simona Tamasoiu, Ke Wang, H 2-stabilization of the Isothermal Euler equations: a Lyapunov function approach, 2012, 33, 0252-9599, 479, 10.1007/s11401-012-0727-y | |
99. | Christian Contarino, Eleuterio F. Toro, Gino I. Montecinos, Raul Borsche, Jochen Kall, Junction-Generalized Riemann Problem for stiff hyperbolic balance laws in networks: An implicit solver and ADER schemes, 2016, 315, 00219991, 409, 10.1016/j.jcp.2016.03.049 | |
100. | Pia Bales, Oliver Kolb, Jens Lang, 2009, Chapter 33, 978-3-642-01969-2, 337, 10.1007/978-3-642-01970-8_33 | |
101. | Michael Herty, Mohammed Seaïd, Anita K. Singh, A domain decomposition method for conservation laws with discontinuous flux function, 2007, 57, 01689274, 361, 10.1016/j.apnum.2006.04.003 | |
102. | Martin Gugat, Richard Krug, Alexander Martin, Transient gas pipeline flow: analytical examples, numerical simulation and a comparison to the quasi-static approach, 2021, 1389-4420, 10.1007/s11081-021-09690-4 | |
103. | Andrea Corli, Massimiliano D. Rosini, Coherence and chattering of a one‐way valve, 2019, 99, 0044-2267, e201800250, 10.1002/zamm.201800250 | |
104. | Andrea Corli, Massimiliano D. Rosini, Coherence of Coupling Riemann Solvers for Gas Flows Through Flux-Maximizing Valves, 2019, 79, 0036-1399, 2593, 10.1137/19M1257093 | |
105. | Niklas Kolbe, Numerical relaxation limit and outgoing edges in a central scheme for networked conservation laws, 2023, 23, 1617-7061, 10.1002/pamm.202200150 | |
106. | Michael Herty, Niklas Kolbe, Siegfried Müller, A Central Scheme for Two Coupled Hyperbolic Systems, 2024, 6, 2096-6385, 2093, 10.1007/s42967-023-00306-5 | |
107. | Martin Gugat, Jan Giesselmann, An Observer for Pipeline Flow with Hydrogen Blending in Gas Networks: Exponential Synchronization, 2024, 62, 0363-0129, 2273, 10.1137/23M1563840 | |
108. | Lu Zhang, Junyao Xie, Qingqing Xu, Charles Robert Koch, Stevan Dubljevic, Physics-informed neural networks for state reconstruction of hydrogen energy transportation systems, 2025, 192, 00981354, 108898, 10.1016/j.compchemeng.2024.108898 | |
109. | J.B. Collins, P.A. Gremaud, Analysis of a domain decomposition method for linear transport problems on networks, 2016, 109, 01689274, 61, 10.1016/j.apnum.2016.06.004 | |
110. | Christian Jäkle, Lena Reichle, Stefan Volkwein, Optimal control of a model for dynamic district heating networks, 2024, 0233-1934, 1, 10.1080/02331934.2024.2422026 | |
111. | Martin Gugat, Michael Schuster, Jan Sokołowski, The location problem for compressor stations in pipeline networks, 2024, 12, 2325-3444, 507, 10.2140/memocs.2024.12.507 | |
112. | Andrea Corli, Massimiliano D. Rosini, Ulrich Razafison, 2024, Mathematical Modeling of Chattering and the Optimal Design of a Valve*, 979-8-3503-1633-9, 76, 10.1109/CDC56724.2024.10886245 |