definition 31.21 Ideal fluid
open in the book ·
parts/03-classical-mechanics/14-fluid-dynamics.tex:577
· p. 1047
- ground object -- no derivation owed
Rests on
-
depends_on
definition 31.1
Fluid
¶
-
depends_on
theorem 30.18
Cauchy: the stress tensor exists
¶
-
depends_on
definition 30.17
Traction
¶
-
depends_on
definition 7.126
Line and surface integrals
¶
- depends_on definition 7.98 Functions of class $C^{1}$ ¶
- depends_on definition 7.125 Multiple integral ¶
-
depends_on
definition 30.2
Representative volume element; continuum field
¶
- depends_on definition 7.97 Partial derivative; gradient ¶
-
depends_on
definition 7.126
Line and surface integrals
¶
-
depends_on
definition 13.5
Tensor under orthogonal transformations
¶
-
depends_on
definition 13.4
Orthogonal coordinate transformation
¶
- depends_on definition 13.3 Orthogonal coordinate system ¶
-
depends_on
definition 13.4
Orthogonal coordinate transformation
¶
- proves proof ch:13-continuum-elasticity@proof-7 ¶
-
depends_on
definition 30.17
Traction
¶
-
depends_on
theorem 30.18
Cauchy: the stress tensor exists
¶
Supports
-
depends_on
theorem 31.22
Euler's equations of motion
¶
- depends_on lemma A.712 The force is a far-field integral ¶
-
depends_on
phenomenon 31.88
Sound travels at the adiabatic speed
¶
-
depends_on
remark 31.89
The Mach number and the regimes it separates
¶
- depends_on phenomenon 31.93 The Mach cone ¶
- depends_on remark 31.90 Why a compression wave must steepen ¶
-
depends_on
remark 31.89
The Mach number and the regimes it separates
¶
- depends_on proposition A.797 The outer limit loses a boundary condition ¶
-
depends_on
proposition 31.80
Rayleigh's circulation criterion
¶
- depends_on remark 31.81 Where the threshold comes from, and what it costs ¶
-
depends_on
proposition 52.24
The p-mode cavity
¶
-
depends_on
phenomenon 52.25
The Sun rings, and its interior can be inverted
¶
- depends_on phenomenon 52.22 The solar-neutrino deficit, and its resolution ¶
-
depends_on
phenomenon 52.25
The Sun rings, and its interior can be inverted
¶
- depends_on remark 31.23 Boundary conditions, and what the ideal model omits ¶
-
depends_on
theorem 31.24
Bernoulli
¶
- depends_on corollary A.799 The impressed pressure gradient ¶
-
depends_on
lemma 31.67
Blasius' force formula
¶
-
depends_on
theorem 31.68
Kutta–Joukowski
¶
- depends_on proposition 31.70 The lift-curve slope of a thin aerofoil ¶
- depends_on remark 31.69 The Kutta condition, and where the circulation comes from ¶
- depends_on theorem A.737 The lift-curve slope of the flat plate ¶
-
depends_on
theorem 31.68
Kutta–Joukowski
¶
-
depends_on
phenomenon 31.25
Pressure falls where the flow speeds up
¶
- depends_on example 31.26 The Venturi meter ¶
- depends_on remark 31.27 What the 1738 source contains ¶
- depends_on theorem A.707 D'Alembert's paradox ¶
-
depends_on
theorem 31.74
The interface dispersion relation
¶
- depends_on corollary 31.76 Kelvin–Helmholtz instability ¶
- depends_on corollary 31.75 Rayleigh–Taylor instability ¶
-
depends_on
theorem 31.94
Gravity–capillary waves on a free surface
¶
- depends_on phenomenon 31.96 The solitary wave ¶
- depends_on phenomenon 31.95 The observed dispersion of water waves ¶
-
depends_on
theorem 31.64
Kelvin's circulation theorem
¶
-
depends_on
corollary 31.65
Lagrange: an irrotational flow stays irrotational
¶
- depends_on remark 31.69 The Kutta condition, and where the circulation comes from ¶ ↺
- depends_on remark 31.66 Only three things make circulation ¶
-
depends_on
theorem 31.59
Helmholtz's vortex theorems
¶
- depends_on corollary 31.65 Lagrange: an irrotational flow stays irrotational ¶ ↺
- depends_on example 31.60 Vortex rings ¶
-
depends_on
corollary 31.65
Lagrange: an irrotational flow stays irrotational
¶
-
depends_on
theorem 31.37
The Navier–Stokes equations
¶
- depends_on definition A.741 The statistical setting ¶
-
depends_on
definition A.760
The convecting layer
¶
-
depends_on
proposition A.761
The Boussinesq equations
¶
- depends_on definition A.763 Two-dimensional rolls ¶
- depends_on proposition A.765 The roll equations ¶
-
depends_on
proposition A.761
The Boussinesq equations
¶
-
depends_on
definition 31.43
Creeping flow
¶
-
depends_on
lemma A.716
The creeping-flow equation for $\psi$
¶
- depends_on lemma A.717 The radial solution ¶
- depends_on proposition 31.44 Kinematic reversibility ¶
-
depends_on
lemma A.716
The creeping-flow equation for $\psi$
¶
-
depends_on
phenomenon 31.78
Convective onset at a computed threshold
¶
- depends_on proposition A.761 The Boussinesq equations ¶ ↺
- depends_on remark 31.79 Bénard's own cells, and Taylor's cylinders ¶
- depends_on remark 31.81 Where the threshold comes from, and what it costs ¶ ↺
-
depends_on
theorem A.767
Marginal stability of the conducting state
¶
- depends_on remark A.768 Two conventions for the wavenumber ¶
- depends_on theorem A.769 The Lorenz system ¶
-
depends_on
phenomenon 31.41
The fourth-power law of pipe flow
¶
-
depends_on
phenomenon 31.53
Transition to turbulence in a pipe
¶
- depends_on remark 31.54 This one is not a gap in the writing ¶
- depends_on remark 31.42 The entry length ¶
-
depends_on
phenomenon 31.53
Transition to turbulence in a pipe
¶
-
depends_on
phenomenon 31.49
Dynamical similarity
¶
-
depends_on
definition 31.51
The other similarity groups
¶
- depends_on definition A.760 The convecting layer ¶ ↺
- depends_on phenomenon 31.78 Convective onset at a computed threshold ¶ ↺
- depends_on proposition A.766 Nondimensionalisation ¶
- depends_on remark 31.89 The Mach number and the regimes it separates ¶ ↺
- depends_on phenomenon 31.53 Transition to turbulence in a pipe ¶ ↺
- depends_on remark 31.50 Reading the Reynolds number ¶
- depends_on remark 31.52 Similarity is only as good as the control of the data ¶
- depends_on remark 31.62 What the spacing calculation settles, and what it does not ¶
-
depends_on
definition 31.51
The other similarity groups
¶
- depends_on proposition A.761 The Boussinesq equations ¶ ↺
-
depends_on
proposition 31.40
Circular Couette flow
¶
- depends_on proposition 31.80 Rayleigh's circulation criterion ¶ ↺
- depends_on remark 31.79 Bénard's own cells, and Taylor's cylinders ¶ ↺
-
depends_on
proposition 31.39
Plane Couette flow
¶
- depends_on proposition 31.40 Circular Couette flow ¶ ↺
-
depends_on
remark 31.48
What is actually proved
¶
- depends_on remark 31.87 What a theory of turbulence would have to do ¶
- depends_on remark 31.38 Whose equations, and the Stokes hypothesis ¶
-
depends_on
theorem A.745
Kármán–Howarth–Monin relation
¶
- depends_on proposition A.746 The Kármán–Howarth equation in classical form ¶
- depends_on theorem A.749 Kolmogorov's equation and the four-fifths law ¶
- … 3 more
-
depends_on
theorem 31.91
Rankine–Hugoniot jump conditions
¶
- depends_on phenomenon 31.93 The Mach cone ¶ ↺
- depends_on remark 31.92 Entropy selects the physical branch ¶
- depends_on theorem 31.77 Rayleigh's inflexion-point criterion ¶
Neighborhood
Every logical edge within two steps of this node.
- declared and complete
- partly declared
- a check failed
- not graded
- declared in the source
- inferred from structure
Edges
| type | direction | node | provenance | where |
|---|---|---|---|---|
depends_on |
→ | Fluid | declared | parts/03-classical-mechanics/14-fluid-dynamics.tex:582 |
depends_on |
← | Euler's equations of motion | declared | parts/03-classical-mechanics/14-fluid-dynamics.tex:596 |