01MMDY Mathematical methods in fluid dynamics

General information:

Current term: Winter term 2023 / 2024

Subject type: 2zk, 2kr

Lectures: Friday 10:00 - 11:40, room T-208

Examination conditions: oral examination or report on the assigned topic


Materials:


References:

[1] J. N. Reddy, Principles of Continuum Mechanics: Conservation and Balance Laws with Applications. Cambridge University Press, 2017.
[2] Y. A. Cengel, J. M. Cimbala, Fluid Mechanics: Fundamentals and Applications (4th ed.), McGraw-Hill Education, 2017.
[3] C. Pozridikis, Computational Fluid Dynamics: Theory, Computation, and Numerical Simulation (2nd ed.), Springer Science + Business Media LLC, 2017.
[4] E. Feireisl, A. Novotný, Singular Limits in Thermodynamics of Viscous Fluids (2nd ed.), Birkhäuser, Springer, 2017.
[5] Y. A. Cengel, A. J. Ghajar, Heat and Mass Transfer: Fundamentals & Applications. McGraw-Hill Education, 2015.
[6] M. Gurtin, An Introduction to Continuum Mechanics. Vol. 158. Academic Press, 1981.
[7] C. R. Doering, J. D. Gibbon, Applied Analysis of the Navier-Stokes Equations. Cambridge University Press, 1995.
[8] R. Temam, Navier-Stokes Equations and Nonlinear Functional Analysis (2nd ed.), SIAM Philadelphia, 1995.