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Авторизация |
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Поиск по указателям |
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Sedov L.I. — Two-dimensional Problems in Hydrodynamics and Aerodynamics |
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Предметный указатель |
Adiabatic, Hugoniot 315
Adiabatic, Poisson 315
Angle, Mach 296
Angle, of stagger of a cascade 110
Angular momentum, of a fluid 22
Area of Joukowski airfoil 14
Biplane 46 213
Biplane, tandem, steady motion of 53 ff.
Cascades 107 ff.
Cascades, cavitation flow about 211
Cascades, curved 125
Cascades, doubly periodic 150 ff.
Cascades, gap-chord ratio of 110
Cascades, hydrodynamic forces on profiles in 137 ff.
Cascades, method of mapping a single row of, into the interior of a circle 119
Cascades, multiplane 126 ff.
Cascades, of a single row of profiles 110 ff.
Cascades, of segments of a single straight line 134 ff.
Cascades, solidity of 110
Cascades, stagger angle of 110
Cascades, wake flow about 199 ff.
Cavitation 204
Cavitation, number 205
Cavitation, tank 205
Cavity 206 ff.
Central point 25
Central point, of a circular arc 30
Central point, of a Joukowski profile 30
Central point, of an elliptic profile 30
Centre of gravity, of a Joukowski airfoil 13
Centre of pressure, of a planing flat plate 267
Chaplygin function 357
Chaplygin’s method, approximate 370
Chaplygin’s method, approximate, on linearization of equations of gas dynamics 353
Characteristics 296
Circular arc, flow about 29
Circulation, constant 31 ff.
Complex potential, for absolute fluid motion 1
Complex potential, for flow about a wing with uniform flow at infinity 10
Complex potential, for relative fluid motion 10
Compression shocks 311
Compression shocks, in a perfect gas 327 ff.
Condensation shock 321 326
Condition of Joukowski and Chaplygin on finite velocities at the trailing edge 7
Critical section, of a gas jet 423
De Laval nozzle 288 301
Detonation shocks 321
Detonation shocks, velocity of wave propagation of 325
Detonation waves, speed of propagation of 325
Diffusers 336
Discontinuity, in velocity 61
Discontinuity, strong 307 ff.
Discontinuity, surface 61 307
D’Alembert’s paradox 21 184
Efflux of fluid, from plane orifice 185
Efflux of fluid, from vessel with broken-line walls 188
Efflux of fluid, from vessel with straight walls 187
Elliptic arc, flow past 229 ff.
Equation of state, Tammann 314
Equations, approximate, for transonic and supersonic flows 383
Expansion shock 311
First axis of a wing 7 25 33
Flame front, shock 321
Flat plate near ground 223 ff.
Flow past a flat plate 188
Flow past a wedge 190
Flow past curved obstacles 194
Flow with wake(s), past a cascade 199 ff.
Flow, cavitation 204 ff.
Flow, cavitation, continuous subsonic, past a profile with circulation 390
Flow, cavitation, past a cascade 211
Flow, cavitation, past a flat plate 208
Flow, cavitation, past a hyperbolic arc 230
Flow, cavitation, past a parabolic arc 227 ff.
Flow, cavitation, past an elliptic arc 230
Flow, cavitation, with deadwater region 198
Force, hydrodynamic, in absolute motion 17
Force, hydrodynamic, in circulation-free flow 20 ff.
Force, hydrodynamic, in constant circulation flow 31 ff.
Force, hydrodynamic, in periodic wing motion 22
Force, hydrodynamic, in relative motion 18—19
Force, hydrodynamic, on the profiles in a cascade 140 ff.
Force, Joukowski 32
Force, lift, on a flat plate near ground 223 ff.
Force, lift, on a flat-plate cascade 143
Force, lift, on a symmetric profile 33
Force, of deformation on a vibrating thin wing 104
Force, suction 51
Force, suction, on a flat plate near ground 224
Gap-chord ratio, of a cascade 110
Gas flow, generalized Prandtl — Meyer 301 ff.
Gas flow, steady 283 ff.
Gas flow, steady potential 352 ff.
Gas flow, steady potential adiabatic 363 ff.
Gas flow, steady rotational, example of 340 ff.
Gas jets 403 ff.
Gas jets, with critical pressure on the free surface 420 ff.
Hodograph plane 186
Hugoniot adiabatic 315
Hyperbola, flow past 230 ff.
Impulsive motion, horizontal, in a cylindrical channel 183
Impulsive motion, horizontal, in a rectangular vessel 179 ff.
Impulsive motion, horizontal, of a vertically floating flat plate 171 ff.
Impulsive motion, horizontal, of incompressible fluids 164 ff.
Impulsive motion, of elliptic cylinders 168 170
Impulsive motion, of flat plates 169 171
| Impulsive motion, virtual masses in 169
Incompressible flow, potential, about single wing 1 ff.
Joukowski airfoil 10 ff.
Joukowski condition on finite velocity at trailing edge 7
Joukowski force 32
Joukowski theorem 19
Joukowski’s method, in theory of jets 191
Joukowski’s method, in theory of jets, modification of 194 ff.
Kirchhoff s method in theory of jets 186
Legendre transformation 360 ff.
Levi — Civita’s method, in theory of jets 192
Mach angle 296
Metacentric parabola 35
Method, of Chaplygin, for approximate solution of gas flows 370 ff.
Method, of Joukowski 191
Method, of Joukowski, modification of 194 ff.
Method, of Kirchhoff 186
Method, of Levi-Civita 192
Method, parametric, in construction of flows 213 ff.
Mixed problem, for annulus 158 ff.
Mixed problem, for strips 158 ff.
Mixed problem, for the half-plane 158 ff.
Momentum, of a fluid 22
Nozzle, de Laval 288 ff. 301
Oscillations, harmonic, of a deformable wing 70
Oscillations, steady, of a slightly cambered thin wing 69 ff.
Parabola, flow past 227 ff.
Parametric method of flow construction 213 ff.
Planing 238 ff.
Planing on the surface of a heavy fluid 244 ff.
Planing on the surface of a liquid with finite depth 271 275
Planing on the surface of a weightless fluid 269 ff.
Poisson adiabatic 315
Polhode, moving, of a wing 8
Prandtl — Meyer flow, generalized 301 ff.
Pressure, impulsive 21
Pressure, stagnation 335
Principle, radiation 89
Profiles, elliptic 11 35
Profiles, elliptic, central point of 30
Profiles, elliptic, hydrodynamic forces on 30
Profiles, elliptic, principal direction 30
Profiles, elliptic, virtual mass coefficients of 30
Profiles, Joukowski 10
Profiles, Joukowski, area of 13
Profiles, Joukowski, center of gravity of 13
Profiles, Joukowski, first axis of 12
Profiles, Joukowski, slightly cambered 28—29 35
Profiles, Joukowski, strongly cambered 28
Profiles, Joukowski, symmetric 14 28
Profiles, Joukowski, symmetric, central point of 25
Profiles, Joukowski, virtual mass coefficients of 28 30
Profiles, thin 36 ff.
Profiles, thin, kinematic problem 36 ff.
Radial turbines 108 125
Radiation condition 89
Resistance to planing flat plate, splash 240 243 269
Resistance to planing flat plate, total 259
Resistance to planing flat plate, wave 240 269
Shocks, compression 311 320
Shocks, compression, in a perfect gas 327 ff.
Shocks, expansion 311 320
Shocks, straight 336
Shockwaves 326
Solidity of a cascade 110
Stagger of a cascade 110
Stagnation pressure 335
Stagnation temperature 335
System of shocks 336 337
System of shocks, optimal 337
Tammann’s equation of state 314
Tandem 53 ff.
Temperature, stagnation 335
Theorem, angular momentum, for unsteady perturbed motion 22
Theorem, Joukowski’s 19
Theorem, Kelvin’s 61
Theorem, momentum, for unsteady perturbed motion 22
Theory, of cascades 110
Theory, of gas jets 403 ff.
Theory, of jets 184 ff.
Theory, of jets, by Joukowski’s method 191 194
Theory, of jets, by Kirchhoff’s method 110
Theory, of jets, by Levi — Civita’s method 192
Thermal choking 325
Transformation, contact (Legendre) 360 ff.
Triplanes 46
Velocity of propagation, of detonation waves 325
Virtual mass coefficients 24 26
Virtual mass coefficients, of a floating body 169
Virtual mass coefficients, of an isolated rectangle 153
Virtual mass coefficients, of different profile shapes (Table) 28—29
Virtual mass coefficients, of profiles in a cascade 145
Virtual mass coefficients, of profiles in a cascade, influence of solidity and stagger on 149
Virtual mass coefficients, of two flat plates lying along a straight line 58 ff.
Wetted length, of a planing flat plate 272
Wing motion, complex potential for relative motion 10
Wing motion, periodic 22.
Wing motion, steady tandem biplane 53
Wing motion, unsteady thin, with discontinuity surface 61 ff.
Wing motion, with constant circulation 1 ff.
Wing, at subsonic speeds 82
Wing, elliptic 10
Wing, elliptic, Joukowski 10 ff.
Wing, elliptic, Joukowski, first axis of 12
Wing, oscillating 69 ff.
Wing, thin 36 ff.
Wing, thin, influence of compressibility on vibrations of 87
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