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Found 134 Documents (Results 1–100)

Differential invariants for flows of fluids and gases. (English) Zbl 1503.35129

Ulan, Maria (ed.) et al., Differential geometry, differential equations, and mathematical physics. Proceedings of the Wisła 19 summer school, Wisła, Poland, August 19–29, 2019. Cham: Birkhäuser. Tutor. Sch. Workshops Math. Sci., 187-231 (2021).
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Critical phenomena in Darcy and Euler flows of real gases. (English) Zbl 1503.35145

Ulan, Maria (ed.) et al., Differential geometry, differential equations, and mathematical physics. Proceedings of the Wisła 19 summer school, Wisła, Poland, August 19–29, 2019. Cham: Birkhäuser. Tutor. Sch. Workshops Math. Sci., 151-186 (2021).
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Increase in entropy and time irreversibility in Hamiltonian dynamics. (English. Russian original) Zbl 1479.80002

Theor. Math. Phys. 208, No. 1, 926-936 (2021); translation from Teor. Mat. Fiz. 208, No. 1, 85-96 (2021).
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Investigation of rotating detonation waves in an annular gap. (English. Russian original) Zbl 1454.80011

Proc. Steklov Inst. Math. 310, 185-201 (2020); translation from Tr. Mat. Inst. Steklova 310, 199-216 (2020).
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Model adaptation of balance laws based on a posteriori error estimates and surrogate fluxes. (English) Zbl 1454.65117

Klöfkorn, Robert (ed.) et al., Finite volumes for complex applications IX – methods, theoretical aspects, examples. FVCA 9, Bergen, Norway, June 15–19, 2020. In 2 volumes. Volume I and II. Cham: Springer. Springer Proc. Math. Stat. 323, 375-383 (2020).
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Nonlinear wave propagation through a radiating van der Waals fluid with variable density. (English) Zbl 1442.35315

Kumar, B. Rushi (ed.) et al., Applied mathematics and scientific computing. International conference on advances in mathematical sciences, ICAMS, Vellore, India, December 1–3, 2017. Volume II. Selected papers. Cham: Birkhäuser. Trends Math., 347-355 (2019).
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Numerical modeling of wave processes accompanying combustion of inhomogeneously distributed composite propellant. (English. Russian original) Zbl 1433.80006

Comput. Math. Math. Phys. 59, No. 9, 1528-1541 (2019); translation from Zh. Vychisl. Mat. Mat. Fiz. 59, No. 9, 1591-1604 (2019).
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High-order bicompact schemes for shock-capturing computations of detonation waves. (English. Russian original) Zbl 1427.80021

Comput. Math. Math. Phys. 59, No. 8, 1314-1323 (2019); translation from Zh. Vychisl. Mat. Mat. Fiz. 59, No. 8, 1381-1391 (2019).
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Two-grid Newton algorithms for a system of heat conducting gas equations. (English) Zbl 1434.76087

Dimov, Ivan (ed.) et al., Finite difference methods. Theory and applications. 7th international conference, FDM 2018, Lozenetz, Bulgaria, June 11–16, 2018. Revised selected papers. Cham: Springer. Lect. Notes Comput. Sci. 11386, 337-345 (2019).
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Chemotaxis, reaction, network. Mathematics for self-organization. (English) Zbl 1406.35003

Hackensack, NJ: World Scientific (ISBN 978-981-3237-73-5/hbk; 978-981-3237-75-9/ebook). xii, 316 p. (2018).
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Rotating detonation wave in an annular gap. (English. Russian original) Zbl 1397.80008

Proc. Steklov Inst. Math. 300, 126-136 (2018); translation from Tr. Mat. Inst. Steklova 300, 135-145 (2018).
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Fluid dynamics and thermodynamics as a unified field theory. (English. Russian original) Zbl 1434.82071

Proc. Steklov Inst. Math. 294, 222-232 (2016); translation from Tr. Mat. Inst. Steklova 294, 237-247 (2016).
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Detailed simulation of the pulsating detonation wave in the shock-attached frame. (English. Russian original) Zbl 1379.80008

Comput. Math. Math. Phys. 56, No. 5, 841-853 (2016); translation from Zh. Vychisl. Mat. Mat. Fiz. 56, No. 5, 856-868 (2016).
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A quasi-1D model of biomass co-firing in a circulating fluidized bed boiler. (English) Zbl 1322.80005

Fuhrmann, Jürgen (ed.) et al., Finite volumes for complex applications VII – elliptic, parabolic and hyperbolic problems. Proceedings of the FVCA 7, Berlin, Germany, June 15–20, 2014. Vol. II. Cham: Springer (ISBN 978-3-319-05590-9/hbk; 978-3-319-05591-6/ebook; 978-3-319-06402-4/set). Springer Proceedings in Mathematics & Statistics 78, 791-799 (2014).
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Detonation combustion of hydrogen in a convergent-divergent nozzle with a central coaxial cylinder. (English. Russian original) Zbl 1302.76209

Fluid Dyn. 49, No. 5, 688-693 (2014); translation from Izv. Ross. Akad. Nauk, Mekh. Zhidk. Gaza 2014, No. 5, 142-148 (2014).
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Theoretical and numerical study of flows with phase transition. (Étude théorique et numérique des écoulements avec transition de phase.) (French) Zbl 1227.76002

Strasbourg: Univ. Strasbourg, Institut de Recherche Mathématique Avancée (Diss.). vi, 203 p. (2010).
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An accurate deterministic projection method for hyperbolic systems with stiff source term. (English) Zbl 1134.76735

Hou, Thomas Y. (ed.) et al., Hyperbolic problems: Theory, numerics, applications. Proceedings of the ninth international conference on hyperbolic problems, Pasadena, CA, USA, March 25–29, 2002. Berlin: Springer (ISBN 3-540-44333-9/hbk). 665-674 (2003).
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A stabilized finite element analysis for three-dimensional Czochralski silicon melt flow. (English) Zbl 0996.76057

Neittaanmäki, Pekka (ed.) et al., Finite element methods. Three-dimensional problems. Proceedings of international conference, Jyväskylä, Finland, June 28-July 1, 2000. Tokyo: Gakkotosho. GAKUTO Int. Ser., Math. Sci. Appl. 15, 254-272 (2001).
MSC:  76M10 76T99 80A22
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Gas flows generated by propellant burning. (English) Zbl 0999.76113

Toro, E. F. (ed.), Godunov methods. Theory and applications. International conference, Oxford, GB, October 1999. New York, NY: Kluwer Academic/ Plenum Publishers. 557-570 (2001).
MSC:  76N15 76V05 80A25
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Dynamic mesh adaption for supersonic combustion waves modeled with detailed reaction mechanisms. Incl. 1 CD-ROM. (English) Zbl 1009.76001

Freiburg im Br.: Univ. Freiburg im Br., Mathematische Fakultät, 282 p. (2001).
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Navier-Stokes equations and fluid turbulence. (English) Zbl 1002.76038

Ball, J. M. (ed.) et al., ICIAM 99. Proceedings of the 4th international congress on industrial & applied mathematics, Edinburgh, GB, July 5-9, 1999. Oxford: Oxford University Press. 35-46 (2000).
MSC:  76F02 76D05 76V05 80A20
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Nonlinear Galerkin mixed element methods for the non stationary conduction-convection problems. II: The backward one-step Euler fully discrete format. (English. Chinese original) Zbl 0959.76044

Chin. J. Numer. Math. Appl. 21, No. 1, 86-105 (1999); translation from Math. Numer. Sin. 20, No. 4, 431-448 (1998).
MSC:  76M10 76R99 76D05 80A20
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