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Vincenti W.G., Kruger C.H. — Introduction to Physical Gas Dynamics
Vincenti W.G., Kruger C.H. — Introduction to Physical Gas Dynamics



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Название: Introduction to Physical Gas Dynamics

Авторы: Vincenti W.G., Kruger C.H.

Аннотация:

This book is the outgrowth of a series of courses developed and introduced to instruct students in the general features of high-temperature and nonequilibrium gas flows. The aim is to bring students to the point where they can understand more advanced treatises in the relevant sciences, as well as the pertinent research literature in gas dynamics.


Язык: en

Рубрика: Физика/

Статус предметного указателя: Готов указатель с номерами страниц

ed2k: ed2k stats

Издание: 1st edition

Год издания: 1975

Количество страниц: 538

Добавлена в каталог: 19.12.2009

Операции: Положить на полку | Скопировать ссылку для форума | Скопировать ID
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Предметный указатель
Relative velocity      49 350
Relaxation length, in reactive flow      271
Relaxation length, radiative      464
Relaxation model      377
Relaxation time      203
Relaxation time, local      204 236 239 241
Relaxation time, rotational      411
Relaxation time, translational      380
Relaxation time, vibrational      204
Relaxation zone      283
Relaxation, vibrational      199
Replenishing collision      36
Reverse collision      39
Reversible heating of a gas      113
Reversible process      61
Rigid-sphere molecular model      3
Root-mean-square molecular speed      9 47
Rosseland diffusion approximation      469
Rosseland mean absorption coefficient      469
Rotation, molecular      132
Rotational nonequilibrium      408
Rotational relaxation time      411
Sackur — Tetrode equation      123 341
Saha equation      162 164
Scattering      444
Schrodinger wave equation      90
Second law of thermodynamics      66
Second law of thermodynamics, classical statement of      67
Second law of thermodynamics, irreversible statement of      67
Semipermeable membrane      71
Shock wave, B — G — K solution      422
Shock wave, B — G — K solution, effect of dissociation on flow through      182
Shock wave, B — G — K solution, fully dispersed      292 520
Shock wave, B — G — K solution, linearized radiative flow through      508
Shock wave, B — G — K solution, linearized reactive flow behind      281
Shock wave, B — G — K solution, Mott — Smith solution      420
Shock wave, B — G — K solution, Navier — Stokes solution      413
Shock wave, B — G — K solution, nonlinear radiative flow through      515
Shock wave, B — G — K solution, nonlinear reactive flow behind      290
Shock wave, B — G — K solution, normal      179
Shock wave, B — G — K solution, oblique      183
Shock wave, B — G — K solution, partly dispersed      283
Shock wave, B — G — K solution, unsteady      292 520
Shock wave, B — G — K solution, viscous heat-conducting flow through      412
Shock-wave thickness      415 421
Singular perturbation problems      252 253
Singular point, in nozzle flow      288 296
Slip velocity      426
Sonine polynomials      394
Specific heat at constant pressure      8
Specific heat at constant volume      8
Specific heat of diatomic gas      136
Specific heat of electronic excitation      131
Specific heat of frozen gas      193
Specific heat of rotation      133
Specific heat of translation      124
Specific heat of vibration      135
Specific intensity      438
Specific intensity, equilibrium value      447
Specular reflection, of molecules      5
Specular reflection, of radiation      481
Speed distribution function      46
speed of light      524
Speed of sound      254
Speed of sound, equilibrium      258 259
Speed of sound, frozen      258 259
Speed of sound, high-frequency      266 502
Speed of sound, isentropic      488
Speed of sound, isothermal      488
Speed of sound, low-frequency      265 502
Speed, average molecular      47
Speed, most probable molecular      47
Speed, root-mean-square molecular      47
Sphere of influence      12
Spherical-harmonic method      493
Spontaneous emission      454 461
Square term      11 219
Square term, number involved in bimolecular collision      227
State equation      (see Equation of state)
State of rest      129
Statistical mechanics      86 342
Statistical mechanics, fundamental assumption of      108
Statistical mechanics, link with thermodynamics      87 112
Statistical model      377
Steady flow, linearized equation for      271 506
Stefan — Boltzmann constant      449 524
Steric factor      215 216
Stirling’s formula      102
Stoichiometric coefficient      55 63 211
Stokes relation      407
Stream-tube relation      287
Structure of molecules      4
Subsystem, separate but coexisting      72
Sutherland molecular model      3 21
Sutherland’s formula      23
Symmetrical diatomic gas      152
Symmetry factor      52 134
Temperature jump      428
Temperature of radiation field      448
Temperature, translational kinetic      324 326 369 370
Temperature, vibrational      206
Tensor      326
Tensor, traceless or non divergent      383
Termolecular mechanism      213
Thermal conductivity, B — G — K value      384
Thermal conductivity, Chapman — Enskog value      391 393 396 404
Thermal conductivity, coefficient of      16 18
Thermal diffusion, coefficient of      406
Thermal equation for complex gas mixture      169
Thermal equation for symmetrical diatomic gas      154
Thermal equation of state      (see also Perfect gas Equation
Thermal equilibrium      60
Thermal velocity      319 369
Thermally pcrfect gas      8
Thermally pcrfect gas, equation of state for      122
Thermodynamic equilibrium      60
Thermodynamic properties, in terms of statistical quantities      117 119
Thermodynamic system      60
Thermodynamics, link with statistical mechanics      112
Thick gas      467
Thick-gas approximation      477 495
Thin gas      467
Third law of thermodynamics      116
Three-body collision      224
Time-like variable      507
Transition probabilities, radiative      454
Transitions, radiative      453
Translational energy, properties associated with      120
Transmissivity, radiant      451
Transonic flow      281
Transparent gas      498
Transport equation      17
Transport of energy      18
Transport of mass      18
Transport of momentum      17
Transport properties      15 403 407
Transport properties of gas mixtures      406
Transport properties, approximate solutions      399 403
Two-stream Maxwellian distribution function      429
Uncertainty principle      89 343 360
Undetermined multipliers, method of      103
Unimolecular mechanism      213
Universal gas constant      7 524
Van der Waals force      35
Van’t Hoff’s equation      84
Variational method      399
Vector      28 326
Velocity distribution function      30 35 319
Velocity of flow      1 319 368 369
Velocity space      30 329
Velocity, persistence of      19
Vibration, molecular      134
Vibrational nonequilibrium      198
Vibrational nonequilibrium, entropy production due to      206
Vibrational nonequilibrium, flow with      245
Vibrational rale equation      198 534
Vibrational rate processes, coupling with chemical reactions      228
Vibrational relaxation      199
Vibrational temperature      206
Viscosity, B — G — K value      384
Viscosity, Chapman — Enskog value      391 393 396 404
Viscosity, coefficient of      15 16 18 23
Viscosity, effect of temperature on      21
Viscous stress      15 17 324 369
Viscous-stress tensor      345
Viscous-stress tensor in gas mixture      406
Viscous-stress tensor, given by Chapman-Enskog solution of Boltzmann equation      391
Viscous-stress tensor, given by Chapman-Enskog solution of Krook equation      383
Wave equation for radiative flow      497
Wave equation for reactive flow      257
Wave equation of quantum mechanics      90
Wave equation, classical      257
Wave function      90
Wave mechanics      343 359
Wavy wall      274 508
Weakly interacting system      88
Zero-point energy      134
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