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Found 206 Documents (Results 1–100)

Fluids under control. Invited lectures based on the presentations at the summer school, Prague, Czech Republic, August 23–27, 2021. (English) Zbl 07813652

Advances in Mathematical Fluid Mechanics. Cham: Birkhäuser (ISBN 978-3-031-47354-8/hbk; 978-3-031-47357-9/pbk; 978-3-031-47355-5/ebook). xiii, 368 p. (2024).
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The existence theorem for the steady-state Navier-Stokes equations with nonhomogeneous slip boundary conditions in two-dimensional multiply-connected bounded domains. arXiv:2403.00164

Preprint, arXiv:2403.00164 [math.AP] (2024).
MSC:  35Q30 76D03 76D05
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Fluids under control. The 2021 Prague-sum workshop lectures, Prague, Czech Republic, August 25, 2021. (English) Zbl 1519.76005

Advances in Mathematical Fluid Mechanics. Lecture Notes in Mathematical Fluid Mechanics. Cham: Springer (ISBN 978-3-031-27624-8/pbk; 978-3-031-27625-5/ebook). xiii, 359 p. (2023).
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Existence, uniqueness, and asymptotic behavior of regular time-periodic viscous flow around a moving body. (English) Zbl 1481.76062

Bodnár, Tomáš (ed.) et al., Waves in flows. The 2018 Prague-sum workshop lectures, Prague, Czech Republic, August 27–31, 2018. Cham: Birkhäuser. Adv. Math. Fluid Mech., 109-126 (2021).
MSC:  76D03 35Q30
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Waves in flows. The 2018 Prague-sum workshop lectures, Prague, Czech Republic, August 27–31, 2018. (English) Zbl 1467.76003

Advances in Mathematical Fluid Mechanics. Cham: Birkhäuser (ISBN 978-3-030-68143-2/pbk; 978-3-030-68144-9/ebook). x, 263 p. (2021).
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Waves in flows. Based on lectures given at the summer school, Prague, Czech Republic, August 27–31, 2018. (English) Zbl 1471.76007

Advances in Mathematical Fluid Mechanics. Cham: Birkhäuser (ISBN 978-3-030-67844-9/hbk; 978-3-030-67847-0/pbk; 978-3-030-67845-6/ebook). xii, 353 p. (2021).
MSC:  76-06 76B15 00B25
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Fluids under pressure. Based on lectures presented at the summer school, Prague, Czech Republic, August 29 – September 2, 2016. (English) Zbl 1435.76001

Advances in Mathematical Fluid Mechanics. Cham: Birkhäuser (ISBN 978-3-030-39638-1/hbk; 978-3-030-39639-8/ebook). xiii, 638 p. (2020).
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Mathematical analysis of the Navier-Stokes equations. Lecture notes given at the CIME school on mathematical analysis of the Navier-Stokes equations: foundations and overview of basic open problems, Cetraro, Italy, September 4–8, 2017. (English) Zbl 1443.35002

Lecture Notes in Mathematics 2254. CIME Foundation Subseries. Cham: Springer; Florence: Fondazione CIME (ISBN 978-3-030-36225-6/pbk; 978-3-030-36226-3/ebook). vii, 462 p. (2020).
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Time-periodic flow of a viscous liquid past a body. (English) Zbl 1408.35121

Fefferman, Charles L. (ed.) et al., Partial differential equations in fluid mechanics. Based on the workshop “PDEs in Fluid Mechanics”, Warwick, UK, September 26–30, 2016. Cambridge: Cambridge University Press. Lond. Math. Soc. Lect. Note Ser. 452, 20-49 (2018).
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Time-periodic solutions to the Navier-Stokes equations in the three-dimensional whole-space with a non-zero drift term: asymptotic profile at spatial infinity. (English) Zbl 1404.35323

Danchin, Raphaël (ed.) et al., Mathematical analysis in fluid mechanics: selected recent results. International conference on vorticity, rotation and symmetry (IV) – complex fluids and the issue of regularity, CIRM, Luminy, Marseille, France, May 8–12, 2017. Proceedings. Providence, RI: American Mathematical Society (AMS) (ISBN 978-1-4704-3646-9/pbk; 978-1-4704-4807-3/ebook). Contemporary Mathematics 710, 121-144 (2018).
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Stability of permanent rotations and long-time behavior of inertial motions of a rigid body with an interior liquid-filled cavity. (English) Zbl 1387.35488

Bodnár, Tomáš (ed.) et al., Particles in flows. Based on the summer course and workshop, Prague, Czech Republic, August 2014. Cham: Birkhäuser/Springer (ISBN 978-3-319-60281-3/hbk; 978-3-319-60282-0/ebook). Advances in Mathematical Fluid Mechanics, 217-253 (2017).
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Particles in flows. Based on the summer course and workshop, Prague, Czech Republic, August 2014. (English) Zbl 1381.35003

Advances in Mathematical Fluid Mechanics. Cham: Birkhäuser/Springer (ISBN 978-3-319-60281-3/hbk; 978-3-319-60282-0/ebook). xi, 519 p. (2017).
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Stability of steady flow past a rotating body. (English) Zbl 1374.35281

Shibata, Yoshihiro (ed.) et al., Mathematical fluid dynamics, present and future. Tokyo, Japan, November 11–14, 2014. Tokyo: Springer (ISBN 978-4-431-56455-3/hbk; 978-4-431-56457-7/ebook). Springer Proceedings in Mathematics & Statistics 183, 71-94 (2016).
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On the motion of a pendulum with a cavity entirely filled with a viscous liquid. (English) Zbl 1391.35326

Robinson, James C. (ed.) et al., Recent progress in the theory of the Euler and Navier-Stokes equations. Based on the workshop “The Navier-Stokes equations in Venice”, Venice, Italy, April 8–12, 2013. Cambridge: Cambridge University Press (ISBN 978-1-107-55497-9/pbk; 978-1-316-40710-3/ebook). London Mathematical Society Lecture Note Series 430, 37-56 (2016).
MSC:  35Q35 35P30 76D05
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On the plane steady-state flow of a shear-thinning liquid past an obstacle in the singular case. (English) Zbl 1348.76015

Rădulescu, Vicenţiu D. (ed.) et al., Recent advances in partial differential equations and applications. International conference in honor of Hugo Beirão de Veiga’s 70th birthday, Levico Terme, Italy, February 17–21, 2014. Proceedings. Providence, RI: American Mathematical Society (AMS) (ISBN 978-1-4704-1521-1/pbk; 978-1-4704-3471-7/ebook). Contemporary Mathematics 666, 211-223 (2016).
MSC:  76A05
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On the motion of a liquid-filled rigid body subject to a time-periodic torque. (English) Zbl 1338.35362

Amann, Herbert (ed.) et al., Recent developments of mathematical fluid mechanics. Proceedings of the international conference on mathematical fluid dynamics on the occasion of Yoshihiro Shibata’s 60th birthday, Nara, Japan, March, 5–9, 2013. Basel: Birkhäuser/Springer (ISBN 978-3-0348-0938-2/hbk; 978-3-0348-0939-9/ebook). Advances in Mathematical Fluid Mechanics, 233-255 (2016).
MSC:  35Q35 35B10
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Hyperbolic-parabolic coupling and the occurrence of resonance in partially dissipative systems. (English) Zbl 1390.74047

Bodnár, Tomáš (ed.) et al., Fluid-structure interaction and biomedical applications. Basel: Birkhäuser/Springer (ISBN 978-3-0348-0821-7/hbk; 978-3-0348-0822-4/ebook). Advances in Mathematical Fluid Mechanics, 197-256 (2014).
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Fluid-structure interaction and biomedical applications. (English) Zbl 1300.76003

Advances in Mathematical Fluid Mechanics. Basel: Birkhäuser/Springer (ISBN 978-3-0348-0821-7/hbk; 978-3-0348-0822-4/ebook). xiv, 569 p. (2014).
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Steady-state Navier-Stokes problem past a rotating body: geometric-functional properties and related questions. (English) Zbl 1301.35088

Flandoli, Franco (ed.) et al., Topics in mathematical fluid mechanics. Notes of the CIME course, Cetraro, Italy, September 2010. Berlin: Springer; Florence: Fondazione CIME (ISBN 978-3-642-36296-5/pbk; 978-3-642-36297-2/ebook). Lecture Notes in Mathematics 2073. CIME Foundation Subseries, 109-197 (2013).
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Topics in mathematical fluid mechanics. Notes of the CIME course, Cetraro, Italy, September 2010. (English) Zbl 1264.76007

Lecture Notes in Mathematics 2073. CIME Foundation Subseries. Berlin: Springer; Florence: Fondazione CIME (ISBN 978-3-642-36296-5/pbk; 978-3-642-36297-2/ebook). ix, 313 p. (2013).
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Asymptotic behavior of a Leray solution around a rotating obstacle. (English) Zbl 1247.35168

Escher, Joachim (ed.) et al., Parabolic problems. The Herbert Amann Festschrift. Based on the conference on nonlinear parabolic problems held in celebration of Herbert Amann’s 70th birthday at the Banach Center in Bȩdlewo, Poland, May 10–16, 2009. Basel: Birkhäuser (ISBN 978-3-0348-0074-7/hbk; 978-3-0348-0075-4/ebook). Progress in Nonlinear Differential Equations and Their Applications 80, 251-266 (2011).
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An introduction to the mathematical theory of the Navier-Stokes equations. Steady-state problems. 2nd ed. (English) Zbl 1245.35002

New York, NY: Springer (ISBN 978-0-387-09619-3/hbk; 978-0-387-09620-9/ebook). xiv, 1018 p. (2011).
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Fundamental trends in fluid-structure interaction. (English) Zbl 1410.76010

Contemporary Challenges in Mathematical Fluid Dynamics and Its Applications 1. Hackensack, NJ: World Scientific (ISBN 978-981-4299-32-9/hbk; 978-981-4465-40-3/ebook). vii, 293 p. (2010).
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New directions in mathematical fluid mechanics. The Alexander V. Kazhikhov memorial volume. (English) Zbl 1182.35002

Advances in Mathematical Fluid Mechanics. Boston, MA: Birkhäuser (ISBN 978-3-0346-0151-1/hbk). xi, 432 p. (2010).
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Hemodynamical flows. Modeling, analysis and simulation. Papers based on the presentations at the Oberwolfach seminar ‘Hemodynamical flows: Aspects of modeling, analysis and simulation’, Oberwolfach, Germany, November 20–26, 2005. (English) Zbl 1137.76005

Oberwolfach Seminars 37. Basel: Birkhäuser (ISBN 978-3-7643-7805-9/pbk). xii, 501 p. (2008).
MSC:  76-06 92-06 00B25
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Lift and sedimentation of particles in the flow of a viscoelastic liquid in a channel. (English) Zbl 1403.76187

Glowinski, Roland (ed.) et al., Free and moving boundaries. Analysis, simulation and control. Selected papers of the IFIP 7.2 conference on free and moving boundary analysis, simulation and control, Houston, TX, USA, December 2004. Boca Raton, FL: Chapman & Hall/CRC (ISBN 978-1-58488-606-8/pbk; 978-1-138-44264-1/hbk; 978-1-4200-1115-9/ebook). Lecture Notes in Pure and Applied Mathematics 252, 75-110 (2007).
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Mathematical problems in classical non-Newtonian fluid mechanics. (English) Zbl 1154.76065

Galdi, Giovanni P. (ed.) et al., Hemodynamical flows. Modeling, analysis and simulation. Papers based on the presentations at the Oberwolfach seminar ‘Hemodynamical flows: Aspects of modeling, analysis and simulation’, Oberwolfach, Germany, November 20–26, 2005. Basel: Birkhäuser (ISBN 978-3-7643-7805-9/pbk). Oberwolfach Seminars 37, 121-273 (2008).
MSC:  76Z05 92C35
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Very weak solutions of stationary and instationary Navier-Stokes equations with nonhomogeneous data. (English) Zbl 1246.35148

Chipot, Michel (ed.) et al., Nonlinear elliptic and parabolic problems. A special tribute to the work of Herbert Amann, Zürich, Switzerland, June 28–30, 2004. Basel: Birkhäuser (ISBN 3-7643-7266-4/hbk). Progress in Nonlinear Differential Equations and their Applications 64, 113-136 (2005).
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Stationary Navier-Stokes problem in a two-dimensional exterior domain. (English) Zbl 1075.35039

Chipot, Michel (ed.) et al., Stationary partial differential equations. Vol. I. Amsterdam: Elsevier/North-Holland (ISBN 0-444-51126-1/hbk). Handbook of Differential Equations, 71-155 (2004).
MSC:  35Q30 35-02 76D05
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