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Oertel H. — Prandtl's Essentials of Fluid Mechanics (Applied Mathematical Sciences)
Oertel H. — Prandtl's Essentials of Fluid Mechanics (Applied Mathematical Sciences)



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Название: Prandtl's Essentials of Fluid Mechanics (Applied Mathematical Sciences)

Автор: Oertel H.

Аннотация:

Ludwig Prandtl, with his fundamental contributions to hydrodynamics, aerodynamics, and gas dynamics, greatly influenced the development of fluid mechanics as a whole, and it was his pioneering research in the first half of the last century that founded modern fluid mechanics. His book Fuhrer durch die Stromungslehre, which appeared in 1942, originated from previous publications in 1913, Lehre von der Fliissigkeit und Gasbewegung, and 1931, Abrifi der Stromungslehre. The title Fuhrer durch die Stromungslehre, or Essentials of Fluid Mechanics, is an indication of PrandtFs intentions to guide the reader on a carefully thought-out path through the different areas of fluid mechanics. On his way, the author advances intuitively to the core of the physical problem, without extensive mathematical derivations. The description of the fundamental physical phenomena and concepts of fluid mechanics that are needed to derive the simplified models has priority over a formal treatment of the methods. This is in keeping with the spirit of Prandtl's research work...


Язык: en

Рубрика: Физика/

Статус предметного указателя: Готов указатель с номерами страниц

ed2k: ed2k stats

Издание: 2nd edition

Год издания: 2004

Количество страниц: 735

Добавлена в каталог: 13.04.2014

Операции: Положить на полку | Скопировать ссылку для форума | Скопировать ID
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Предметный указатель
$e^N$ method      418
$NO_x$ reduction      528
$\beta$ function      541
$\Lambda$ structures      395 404
Absolute instability      364 367 423
Absolute vorticity      576
Acceleration losses      479
Ackeret equation      272
Ackeret rule      271 308 309
Activation energy      509
Adiabatic boundary      371
Adiabatic compression      28
Adiabatic expansion      28
Adiabatic stratification      31
Aerodynamics      64 265
Airfoil      268
Airships      174
Aliphatic      517 523
Alkane oxidation      518
Amplification rate      400 401
Aneroid barometer      27
Angle of attack      272
Anharmonic oscillator      564
Annular flow      457 460
Annular-droplet flow      459
Aorta bend      646
Arrhenius equation      508
Arrhenius parameter      562 563
Arterial branching      648
Arterial flow      645 650
Arterial widening      617
Arteriole      622
Artery      622
Asymptotic stability      366
Atmosphere      29
Atrium      620
Automotive engine simulation      542
Balance equation for material      607
Balance equation for water phases      607
Balance of energy      195
Balance of momentum      95
Baroclinic instability      576 595 599
Barometer      27 34
Barometric height formula      30
Barotropic flow      579
Basic flow      396
Bearing lubrication      154
Beats      106
Bernoulli constant      204
Bernoulli equation      63 66 67 172 203
Beta parameter      576
Bimolecular reactions      510
Biofluid mechanics      615
Biot — Savart law      281
Bird flight      266
Blasius law      162
Blood      618
Blood, circulation      615 620
Blood, corpuscles      618
Blood, plasma      618 625
Blood, vessel      645
Borda outlet      98
Borghi diagram      554 555
boundary conditions      371 381 391 398
Boundary layer      362 397 409
Boundary layer, approximation      523
Boundary layer, equations      432
Boundary layer, flow      129 142 396 442 447
Boundary layer, theory      125
Boundary layer, thickness      125 617
Boussinesq approximation      370
Boyle — Mariotte law      27—29
Branching diagram      368
Brewer — Dobson circulation      614
Brunt — Vaeisaelae frequency      603
Bubble cavitation      494
Bubbly flow      457 459
Buffeting      305
Bunsen burner      165 525
Bunsen flame      525
Calming track      292
Capillaries      622
Capillarity      39
Capillary waves      105
Cardiac valves      642
Cascade      100 101
Casson equation      626
catalyst      531
Cavitation      493
Cavitation number      493
Cellular convection      358 368 588
Centrifugal force      152 571
Channel      110 152 161
Channel flow      160
Chemical equilibrium      562
Chemical nonequilibrium      561 562
Chezy equation      161
Choked flow      669 671
Churn flow      457
Cigarette      357
Circular cylinder      566
Circular cylinder in a flow      449
Circular pipe flow      175
Circulation      80 92
Climate      608
Closed line      80
Closure problem      535 551
Cloud cavitation      494
Coefficient of expansion      27
Coherence      348
Coherent structure      347
Collision number      510
Collision partner      510
Combustion chamber      656
Compressibility      446
Compressor      656
Concorde      311
Conditional expectation value      552
Conservation of angular momentum      102
Conserved scalar      544
Constant heat transfer      438
Continuity      63 187
Continuity equation      196 607 637
Continuum flow      560
Contour change      303
Contraction      68
Control of turbulence      320
Control surface      96
Convection      429 430
Convection cell      376
Convection rolls      374 375
Convective heat transfer      427
Convective instability      364 367
Convective mass transfer      427
Convergence of wall streamlines      305
Coriolis force      571
Coriolis parameter      572
Corner expansion      200
Corner flow      139
Couette viscometer      389
Counterflow      523
Counterflow, flame      523 548 549
Counterradiation      609
Creeping flow      122 153
Critical mass flux      483 486
Critical point      52 53
Critical pressure      192
Critical Reynolds number      127 130 133 321
Cross-flow instability      294 403
Cross-flow vortex      409 415
Cross-roll instability      379
Cut principle      20
Cyclone      595
Damkoehler number      555
Deep-water waves      604
Degree of reaction      684
Delta wing      58 307
Density wave      483 484
Density wave, instability      501 502
Density-averaged enthalpy      468
Density-weighted mixture velocity      466
Desorption      568
Developed turbulence      326
Diastole      620
Diffusion      430
Diffusion, convection      382 427
Diffusion, flame      533
Diffusion, Rayleigh number      431
Diffusor      99 165
Direct numerical simulation      533
Discharge      67 68 73 91
Dispersed bubbly flow      460
dispersion      105
Dispersion, relation      399
Displacement thickness      125
Dissipation      445
Dissipation rate      536 549
Dissociation      562 564
Dissociation, degree      561
Dissociation, enthalpy      569
Dissociation, reaction      562
Disturbance level      325
Dobson unit      612
Double diffusion convection      386
Double diffusion instability      383
Drag      165 171 269
Drag coefficient      174 271 601
Drift velocity      456
Drift-flow model      466
Dust devil      598
Dynamic pressure      70 71
Dynamic viscosity      118
Dynamics      63 118 186
d’Alembert’s principle      96
Eddies      326
Eddy dissipation model      553
Eddy viscosity coefficient      328
Eddy-break-up model      542
Edge of a jet      332
Eigenvalue problem      133 400
Ekman layer      580 581
Ekman length      580
Ekman spiral      580
Elbow bend      151
Electrical impulse      628
Element mass fraction      527 544
Elementary reaction      505—507
Elliptical potential equation      204
Energy accommodation      568
Energy cascade      330 342 346
energy equation      196
Energy of turbulence      342
Energy spectrum      346 350
Energy transfer      564
Enstrophy      345 346
Enstrophy cascades      346
Enstrophy dissipation anomaly      345
Enstrophy spectrum      346
Enthalpy      195
Eoetvoes number      469
Equation of motion      187 607 631
Equation of state      28
Equilibrium      17 26 546
Equilibrium chemistry      544
Equilibrium constant      505
Equilibrium line      546
Equipotential surface      37
Erythrocytes      625
Etching processes      530
Etching rate      530
Etching reactor      530
Euler’s turbine equation      102
Exchange coefficient      536
Exchange reaction      562
Excited state      564
Exhaust gas cleaning      527
External forces      18 19
facility      290
Falloff curves      512
Favre average      546
Favre variance      546
Fiber filament      637
Finger instability      385 387
First-order reactions      504
Fitzhugh — Nagumo equations      636
Fixed boundary      371 374
Flame quenching      548 559
Flame structure      520 557
Flame velocity      521 557 559
Flamelet      548
Flamelet, concept      559
Flamelet, model      556 557
Flamelet, regime      555
Flat plate      450
Flettner rotor      95
Floquet analysis      404
Floquet ansatz      406
Flow in the atmosphere      571
Flow in the ocean      571
Flow past curved objects      337
Flow, coefficient      661 684
Flow, forms      457
Flow, models      460
Flow, past a dihedron      166
Flow, past a plate      169
Flow, past a sphere      173
Flow, past an airfoil      206 207
Flow, past an automobile      57
Flow, past bodies      615
Flow, past wings      274 294
Flow, pattern maps      457
Flow, separation      144 148
Fluid      47
Fluid coordinate      48
Focus      57
Forced convection      427 428 430 431 438 442
Formaldehyde formation      518
Formation of water      506
Forward reaction      504
Free boundary      374 387
Free convection      427 430 431 435
Free enthalpy      562
Free jet      138 200 331
Free liquid surface      103 371
Free turbulence      331
Free-molecular-flow      560
Freezing      212
Friction coefficient      159
Friction drag      166
Frictional drag      169
Froude number      167
Frozen equilibrium      489
Frozen equilibrium, model      489 491
Fully developed pipe flow      163 438
Fundamental equations      370 390
Gap      91
Gap, flow      157
Gas      17 26 47 186
Gas, dynamics      186
Gas, turbine      655 656
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