Stanford Root

Schedule

Stanford Root

Schedule

ME 451B

Advanced Fluid Mechanics - Flow Instabilities

UNITS:3
GRADING:Letter or Credit/No Credit
LEVEL:Graduate
GER:—

Waves in fluids: surface waves, internal waves, inertial and acoustic waves, dispersion and group velocity, wave trains, transport due to waves, propagation in slowly varying medium, wave steepening, solitons and solitary waves, shock waves. Instability of fluid motion: dynamical systems, bifurcations, Kelvin-Helmholtz instability, Rayleigh-Benard convection, energy method, global stability, linear stability of parallel flows, necessary and sufficient conditions for stability, viscosity as a destabilizing factor, convective and absolute instability. Focus is on flow instabilities. Prerequisites: graduate courses in compressible and viscous flow.

Syllabus for selected term:
View Autumn 2026 Syllabus

Sections

1 Term
Lecture 1Open
ID: 27630
0 / 35 enrolled
DAYS:Tuesday, Thursday
TIME:10:30 AM – 11:50 AM
LOCATION:200-034
INSTRUCTOR:
Lele, Sanjiva
3units

ME 451B: Advanced Fluid Mechanics - Flow Instabilities

3 units · Letter or Credit/No Credit

Waves in fluids: surface waves, internal waves, inertial and acoustic waves, dispersion and group velocity, wave trains, transport due to waves, propagation in slowly varying medium, wave steepening, solitons and solitary waves, shock waves. Instability of fluid motion: dynamical systems, bifurcations, Kelvin-Helmholtz instability, Rayleigh-Benard convection, energy method, global stability, linear stability of parallel flows, necessary and sufficient conditions for stability, viscosity as a destabilizing factor, convective and absolute instability. Focus is on flow instabilities. Prerequisites: graduate courses in compressible and viscous flow.

Offered in Autumn 2026 at Stanford University.

Autumn 2026 sections

  • Lecture — Tuesday Thursday 10:30 AM – 11:50 AM — 200-034 — Lele, Sanjiva (Graduate)

More ME courses

  • ME 400: Thesis (Engineer Degree)
  • ME 403: Quantum Field Theory (QFT) for Engineering Applications (MATSCI 405)
  • ME 405: Asymptotic Methods in Computational Engineering
  • ME 410B: Introductory Foresight and Technological Innovation
  • ME 410C: Introductory Foresight and Technological Innovation
  • ME 412: Engineering Functional Analysis and Finite Elements (CME 356)
  • ME 451D: Microhydrodynamics (CHEMENG 310)
  • ME 461: Advanced Topics in Turbulence
  • ME 463: Advanced Topics in Plasma Science and Engineering
  • ME 469: Computational Methods in Fluid Mechanics (CME 369)
  • ME 470: Uncertainty Quantification (CEE 362A)
  • ME 471: Turbulent Combustion

All ME courses · All departments