Acknowledgments
Topic: GACR 201/08/0315
Publications for topic "GACR 201/08/0315" sorted by title
M
Mathematical Results Concerning the Unsteady Flows of Chemically Reacting Incompressible Fluids, chapter 2, pages 26--53, Cambridge University Press, London Mathematical Society Lecture Note Series, volume 364, 2009 | , and ,
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N
New perspectives in fluid dynamics: Mathematical analysis of a model proposed by Howard Brenner, pages 153-180, Birkauser, Basel, 2009 | and ,
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Weak solutions to equations of steady compressible heat conducting fluids (2010), in: Mathematical Models and Methods in Applied Sciences, 20:5(785-813) | and ,
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L
Low Mach number limit for the Navier-Stokes system on unbounded domains under strong stratification (2010), in: Communications in Partial Differential Equations:35(68-88) | , and ,
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O
On incompressible limits for the Navier-Stokes system on unbounded domains under slip boundary conditions (2010), in: Discrete and Continuous Dynamical Systems - Series B, 13:4(783 - 798) | , and ,
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On a regularity criterion for the Navier-Stokes equations involving gradient of one velocity component (2009), in: Journal of Mathematical Physics, 50:12(123514 - 123525) | and ,
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On anisotropic regularity criteria for the solutions to 3D Navier--Stokes equations (2011), in: J. Math. Fluid Mech., 13:3(341--353) | and ,
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N
Navier´s slip and incompressible limits in domains with variable bottoms (2008), in: Discrete and Continuous Dynamical Systems - Series S, 1:3(427-460) | , and ,
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L
Large Data Existence Result for Unsteady Flows of Inhomogeneous Shear-Thickening Heat-Conducting Incompressible Fluids (2010), in: Communications in Partial Differential Equations, 35:10(1891-1919) | , and ,
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O
On scalar hyperbolic laws with discontinuous flux (2011), in: Mathematical Models and Methods in Applied Sciences, 21:1(89--113) | , , and ,
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B
Boundary behavior of viscous fluids: Influence of wall roughness and friction-driven boundary conditions (2010), in: Archive for Rational Mechanics and Analysis, 197:1(117--138) | , and ,
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A
Analysis of a phase-field model for two-phase compressible fluids (2010), in: Mathematical Models and Methods in Applied Sciences, 20:7(1129-1160) | , , and ,
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Asymptotic properties of solutions to the equations of incompressible fluid mechanics (2010), in: Journal of Mathematical Fluid Mechanics, 12:4(536-553) | ,
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An $L^2$-maximal regularity result for the evolutionary Stokes-Fourier system (2011), in: Applicable Analysis, 90:1(31--45) | , and ,
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Homogenization and singular limits for the complete Navier-Stokes-Fourier system (2010), in: Journal de Mathématiques Pures et Appliquées, 94(33-57) | , and ,
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C
Compressible Generalized Newtonian Fluids (2010), in: ZAMP - Zeitschrift für Angewandte Mathematik und Physik, 61:6(1097-1110) | and ,
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O
On evolutionary Navier-Stokes-Fourier type systems in three spatial dimensions (2011), in: Comment. Math. Univ. Carolin., 52:1(89--114) | , and ,
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On Hausdorff Dimension of Blow-Up Times Relevant to Weak Solution of Generalized Navier-Stokes Fluids, pages 116--129, Gakuto International Series, Mathematical Sciences and Applications, volume 35, 2011 | , and ,
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S
Steady compressible Navier--Stokes--Fourier system for monoatomic gas and its generalizations (2011), in: Journal of Differential Equations, 251:2(270--315) | and ,
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W
Weak solutions for steady compressible Navier--Stokes--Fourier system in two space dimensions (2011), in: Applications of Mathematics, 56:1(137--160) | and ,
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Weak and variational solutions to steady equations for compressible heat conducting fluids (2011), in: SIAM J. Math. Anal., 43:3(1158--1188) | and ,
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S
O
On the steady solutions to a model of compressible heat conducting fluid in two space dimensions (2011), in: J. Part. Diff. Eq., 24:4(334--350) | ,
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On the regularity to the solutions of the Navier--Stokes equations via one velocity component (2010), in: Nonlinearity, 23:5(1097--1107) | and ,
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S
Steady compressible Navier-Stokes-Fourier system in two space dimensions (2010), in: Comment. Math. Univ. Carolin., 51:4(453--479) | and ,
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O
On the 3D steady flow of a second grade fluid past an obstacle (2011), in: J. Math. Fluid Mech. | and ,
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