Prandtl's essentials of fluid mechanics:
Gespeichert in:
Format: | Buch |
---|---|
Sprache: | English German |
Veröffentlicht: |
New York, NY [u.a.]
Springer
2004
|
Ausgabe: | 2. ed. |
Schriftenreihe: | Applied mathematical sciences
158 |
Schlagworte: | |
Online-Zugang: | Publisher description Inhaltsverzeichnis |
Beschreibung: | Dt. Ausg. u.d.T.: Führer durch die Strömungslehre |
Beschreibung: | XII, 723 S. Ill., zahlr. graph. Darst. |
ISBN: | 9780387404370 0387404376 |
Internformat
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245 | 1 | 0 | |a Prandtl's essentials of fluid mechanics |c Herbert Oertel ed. With contributions by M. Böhle ... |
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264 | 1 | |a New York, NY [u.a.] |b Springer |c 2004 | |
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Datensatz im Suchindex
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adam_text | HERBERT OERTEL EDITOR PRANDTL S ESSENTIALS OF FLUID MECHANICS SECOND
EDITION WITH CONTRIBUTIONS BY M. BOHLE, D. ETLING, U. MIILLER, K.R.S.
SREENIVASAN, U. RIEDEL, AND J. WARNATZ TRANSLATED BY KATHERINE MAYES
WITH 530 ILLUSTRATIONS SPRINGER CONTENTS PREFACE V 1. INTRODUCTION ; 1
2. PROPERTIES OF LIQUIDS AND GASES 17 2.1 PROPERTIES OF LIQUIDS 17 2.2
STATE OF STRESS 18 2.3 LIQUID PRESSURE 21 2.4 PROPERTIES OF GASES 26 2.5
GAS PRESSURE 29 2.6 INTERACTION BETWEEN GAS PRESSURE AND LIQUID PRESSURE
32 2.7 EQUILIBRIUM IN OTHER FORCE FIELDS 35 2.8 SURFACE STRESS
(CAPILLARITY) 39 2.9 PROBLEMS 42 3. KINEMATICS OF FLUID FLOW 47 3.1
METHODS OF REPRESENTATION 47 3.2 ACCELERATION OF A FLOW 51 3.3 TOPOLOGY
OF A FLOW 52 3.4 PROBLEMS 59 4. DYNAMICS OF FLUID FLOW 63 4.1 DYNAMICS
OF INVISCID LIQUIDS 63 4.1.1 CONTINUITY AND THE BERNOULLI EQUATION 63
4.1.2 CONSEQUENCES OF THE BERNOULLI EQUATION 67 4.1.3 PRESSURE
MEASUREMENT 75 4.1.4 INTERFACES AND FORMATION OF VORTICES 77 4.1.5
POTENTIAL FLOW 80 4.1.6 WING LIFT AND THE MAGNUS EFFECT 93 4.1.7 BALANCE
OF MOMENTUM FOR STEADY FLOWS 95 4.1.8 WAVES ON A FREE LIQUID SURFACE 103
4.1.9 PROBLEMS 113 4.2 DYNAMICS OF VISCOUS LIQUIDS 118 4.2.1 VISCOSITY
(INNER FRICTION), THE NAVIER-STOKES EQUATION 118 VIII CONTENTS 4.2.2
MECHANICAL SIMILARITY, REYNOLDS NUMBER 122 4.2.3 LAMINAR BOUNDARY LAYERS
123 4.2.4 ONSET OF TURBULENCE 126 4.2.5 FULLY DEVELOPED TURBULENCE 136
4.2.6 FLOW SEPARATION AND VORTEX FORMATION 144 4.2.7 SECONDARY FLOWS 151
4.2.8 FLOWS WITH PREVAILING VISCOSITY 153 4.2.9 FLOWS THROUGH PIPES AND
CHANNELS 160 4.2.10 DRAG OF BODIES IN LIQUIDS 165 4.2.11 FLOWS IN
NON-NEWTONIAN MEDIA 175 4.2.12 PROBLEMS 180 4.3 DYNAMICS OF GASES 186
4.3.1 PRESSURE PROPAGATION, VELOCITY OF SOUND 186 4.3.2 STEADY
COMPRESSIBLE FLOWS 190 4.3.3 CONSERVATION OF ENERGY 195 4.3.4 THEORY OF
NORMAL SHOCK WAVES 196 4.3.5 FLOWS PAST CORNERS, FREE JETS 200 4.3.6
FLOWS WITH SMALL PERTURBATIONS 203 4.3.7 FLOWS PAST AIRFOILS 207 4.3.8
PROBLEMS 213 5. FUNDAMENTAL EQUATIONS OF FLUID MECHANICS 217 5.1
CONTINUITY EQUATION 217 5.2 NAVIER-STOKES EQUATIONS 218 5.2.1 LAMINAR
FLOWS 218 5.2.2 REYNOLDS EQUATIONS FOR TURBULENT FLOWS 225 5.3 ENERGY
EQUATION 230 5.3.1 LAMINAR FLOWS 230 5.3.2 TURBULENT FLOWS 234 5.4
FUNDAMENTAL EQUATIONS AS CONSERVATION LAWS 236 5.4.1 HIERARCHY OF
FUNDAMENTAL EQUATIONS 236 5.4.2 NAVIER-STOKES EQUATIONS 237 5.4.3
DERIVED MODEL EQUATIONS 240 5.4.4 REYNOLDS EQUATIONS FOR TURBULENT FLOWS
247 5.4.5 MULTIPHASE FLOWS 248 5.4.6 REACTIVE FLOWS 251 5.5 DIFFERENTIAL
EQUATIONS OF PERTURBATIONS 253 5.6 PROBLEMS 258 6. AERODYNAMICS 265 6.1
FUNDAMENTALS OF AERODYNAMICS 265 6.1.1 BIRD FLIGHT AND TECHNICAL
IMITATIONS 266 6.1.2 AIRFOILS AND WINGS 268 6.1.3 AIRFOIL AND WING
THEORY 276 6.1.4 AERODYNAMIC FACILITIES 290 CONTENTS IX 6.2 TRANSONIC
AERODYNAMICS 292 6.2.1 SWEPT WINGS 294 6.2.2 SHOCK-BOUNDARY-LAYER
INTERACTION 297 6.2.3 FLOW SEPARATION 304 6.3 SUPERSONIC AERODYNAMICS
306 6.3.1 DELTA WINGS 307 6.4 PROBLEMS 314 7. TURBULENT FLOWS 319 7.1
FUNDAMENTALS OF TURBULENT FLOWS 319 7.2 ONSET OF TURBULENCE 320 7.2.1
LINEAR STABILITY 321 7.2.2 NONLINEAR STABILITY 323 7.2.3 NONNORMAL
STABILITY 324 7.3 DEVELOPED TURBULENCE 326 7.3.1 THE NOTION OF A MIXING
LENGTH 326 7.3.2 TURBULENT MIXING 328 7.3.3 ENERGY RELATIONS IN
TURBULENT FLOWS 329 7.4 CLASSES OF TURBULENT FLOWS 331 7.4.1 FREE
TURBULENCE .331 7.4.2 FLOW ALONG A BOUNDARY 334 7.4.3 ROTATING AND
STRATIFIED FLOWS, FLOWS WITH CURVATURE EFFECTS 337 7.4.4 TURBULENCE IN
TUNNELS 340 7.4.5 TWO-DIMENSIONAL TURBULENCE 344 7.5 NEW DEVELOPMENTS IN
TURBULENCE 348 7.5.1 LAGRANGIAN INVESTIGATIONS OF TURBULENCE 353 7.5.2
FIELD-THEORETIC METHODS 354 7.5.3 OUTLOOK 354 8. FLUID-MECHANICAL
INSTABILITIES 357 8.1 FUNDAMENTALS OF FLUID-MECHANICAL INSTABILITIES 357
8.1.1 EXAMPLES OF FLUID-MECHANICAL INSTABILITIES 357 8.1.2 DEFINITION OF
STABILITY 363 8.1.3 LOCAL PERTURBATIONS 366 8.2 STRATIFICATION
INSTABILITIES 367 8.2.1 RAYLEIGH-BENARD CONVECTION 367 8.2.2 MARANGONI
CONVECTION 379 8.2.3 DIFFUSION CONVECTION 382 8.3 HYDRODYNAMIC
INSTABILITIES 388 8.3.1 TAYLOR INSTABILITY 388 8.3.2 GORTLER INSTABILITY
393 8.4 SHEAR-FLOW INSTABILITIES 395 8.4.1 BOUNDARY-LAYER FLOWS 396
8.4.2 TOLLMIEN-SCHLICHTING AND CROSS-FLOW INSTABILITIES 403 X CONTENTS
8.4.3 KELVIN-HELMHOLTZ INSTABILITY 419 8.4.4 WAKE FLOWS 422 9.
CONVECTIVE HEAT AND MASS TRANSFER 427 9.1 FUNDAMENTALS OF HEAT AND MASS
TRANSFER 427 9.1.1 FREE AND FORCED CONVECTION 427 9.1.2 HEAT CONDUCTION
AND CONVECTION 429 9.1.3 DIFFUSION AND CONVECTION 430 9.2 FREE
CONVECTION 431 9.2.1 CONVECTION AT A VERTICAL PLATE 431 9.2.2 CONVECTION
AT A HORIZONTAL CYLINDER 437 9.3 FORCED CONVECTION 438 9.3.1 PIPE FLOWS
438 9.3.2 BOUNDARY-LAYER FLOWS 442 9.3.3 BODIES IN FLOWS 449 9.4 HEAT
AND MASS EXCHANGE 449 9.4.1 MASS EXCHANGE AT THE FLAT PLATE 450 10.
MULTIPHASE FLOWS 453 10.1 FUNDAMENTALS OF MULTIPHASE FLOWS 453 10.1.1
DEFINITIONS 454 10.1.2 FLOW PATTERNS 457 10.1.3 FLOW PATTERN MAPS 457
10.2 FLOW MODELS 460 10.2.1 THE ONE-DIMENSIONAL TWO-FLUID MODEL 461
10.2.2 MIXING MODELS 464 10.2.3 THE DRIFT-FLOW MODEL 466 10.2.4 BUBBLES
AND DROPS 468 10.2.5 SPRAY FLOWS 471 10.3 PRESSURE LOSS AND VOLUME
FRACTION IN HYDRAULIC COMPONENTS 474 10.3.1 FRICTION LOSS IN HORIZONTAL
STRAIGHT PIPES 475 10.3.2 ACCELERATION LOSSES 479 10.4 PROPAGATION
VELOCITY OF DENSITY WAVES AND CRITICAL MASS FLUXES 483 10.4.1 DENSITY
WAVES 483 10.4.2 CRITICAL MASS FLUXES 486 10.4.3 CAVITATION 493 10.5
INSTABILITIES IN TWO-PHASE FLOWS 497 11. REACTIVE FLOWS 503 11.1
FUNDAMENTALS OF REACTIVE FLOWS 503 11.1.1 RATE LAWS AND REACTION ORDERS
503 11.1.2 RELATION BETWEEN FORWARD AND REVERSE REACTIONS .... 504
11.1.3 ELEMENTARY REACTIONS AND REACTION MOLECULARITY 505 11.1.4
TEMPERATURE DEPENDENCE OF RATE COEFFICIENTS 508 CONTENTS XI 11.1.5
PRESSURE DEPENDENCE OF RATE COEFFICIENTS 510 11.1.6 CHARACTERISTICS OF
REACTION MECHANISMS 512 11.2 LAMINAR REACTIVE FLOWS 517 11.2.1 STRUCTURE
OF PREMIXED FLAMES 517 11.2.2 FLAME VELOCITY OF PREMIXED FLAMES 520
11.2.3 SENSITIVITY ANALYSIS 521 11.2.4 NONPREMIXED COUNTERFLOW FLAMES
523 11.2.5 NONPREMIXED JET FLAMES 525 11.2.6 NONPREMIXED FLAMES WITH
FAST CHEMISTRY 526 11.2.7 EXHAUST GAS CLEANING WITH PLASMA SOURCES 527
11.2.8 FLOWS IN ETCHING REACTORS 530 11.2.9 HETEROGENEOUS CATALYSIS 531
11.3 TURBULENT REACTIVE FLOWS 532 11.3.1 OVERVIEW AND CONCEPTS 532
11.3.2 DIRECT NUMERICAL SIMULATION 533 11.3.3 TURBULENCE MODELS 535
11.3.4 MEAN REACTION RATES 536 11.3.5 EDDY-BREAK-UP MODELS 542 11.3.6
LARGE-EDDY SIMULATION (LES) 542 11.3.7 TURBULENT NONPREMIXED FLAMES 543
11.3.8 TURBULENT PREMIXED FLAMES 554 11.4 HYPERSONIC FLOWS 560 11.4.1
PHYSICAL-CHEMICAL PHENOMENA IN REENTRY FLIGHT 560 11.4.2 CHEMICAL
NONEQUILIBRIUM 561 11.4.3 THERMAL NONEQUILIBRIUM 564 11.4.4 SURFACE
REACTIONS ON REENTRY VEHICLES 567 12. FLOWS IN THE ATMOSPHERE AND IN THE
OCEAN 571 12.1 FUNDAMENTALS OF FLOWS IN THE ATMOSPHERE AND IN THE OCEAN
. 571 12.1.1 INTRODUCTION 571 12.1.2 FUNDAMENTAL EQUATIONS IN ROTATING
SYSTEMS 571 12.1.3 GEOSTROPHIC FLOW 574 12.1.4 VORTICITY 576 12.1.5
EKMAN LAYER 579 12.1.6 PRANDTL LAYER 582 12.2 FLOWS IN THE ATMOSPHERE
584 12.2.1 THERMAL WIND SYSTEMS 584 12.2.2 THERMAL CONVECTION 588 12.2.3
GRAVITY WAVES 590 12.2.4 VORTICES 592 12.2.5 GLOBAL ATMOSPHERIC
CIRCULATION 598 12.3 FLOWS IN THE OCEAN 600 12.3.1 WIND-DRIVEN FLOWS 601
12.3.2 WATER WAVES 603 12.4 APPLICATION TO ATMOSPHERIC AND OCEANIC FLOWS
606 XII CONTENTS 12.4.1 WEATHER FORECAST 606 12.4.2 GREENHOUSE EFFECT
AND CLIMATE PREDICTION 608 12.4.3 OZONE HOLE 612 13. BIOFLUID MECHANICS
OF BLOOD CIRCULATION 615 13.1 FUNDAMENTALS OF BIOFLUID MECHANICS 615
13.1.1 RESPIRATORY SYSTEM / 618 13.1.2 BLOOD CIRCULATION 620 13.1.3
RHEOLOGY OF THE BLOOD 625 13.2 FLOW IN THE HEART 626 13.2.1 PHYSIOLOGY
AND ANATOMY OF THE HEART 627 13.2.2 STRUCTURE OF THE HEART 630 13.2.3
EXCITATION PHYSIOLOGY OF THE HEART 634 13.2.4 FLOW IN THE HEART 637
13.2.5 CARDIAC VALVES 642 13.3 FLOW IN BLOOD VESSELS 645 13.3.1 UNSTEADY
PIPE FLOW 649 13.3.2 UNSTEADY ARTERIAL FLOW 650 13.3.3 ARTERIAL BRANCHES
653 14. THERMAL TURBOMACHINERY 655 14.1 FUNDAMENTALS OF THERMAL
TURBOMACHINERY 655 14.2 AXIAL COMPRESSOR 659 14.2.1 FLOW COEFFICIENT,
PRESSURE COEFFICIENT, AND DEGREE OF REACTION 659 14.2.2 METHOD OF DESIGN
663 14.2.3 SUBSONIC COMPRESSOR 666 14.2.4 TRANSONIC COMPRESSOR 668 14.3
CENTRIFUGAL COMPRESSOR 672 14.3.1 FLOW PHYSICS OF THE CENTRIFUGAL
COMPRESSOR 672 14.3.2 FLOW COEFFICIENT, PRESSURE COEFFICIENT, AND
EFFICIENCY. . 676 14.3.3 SLIP FACTOR 678 14.4 COMBUSTION CHAMBER 679
14.4.1 FLOW WITH HEAT TRANSFER 679 14.4.2 GEOMETRY OF THE COMBUSTION
CHAMBER 681 14.5 TURBINE . . . . : 682 14.5.1 BASICS 682 14.5.2
EFFICIENCY, FLOW COEFFICIENT, WORK COEFFICIENT, AND DEGREE OF REACTION
683 14.5.3 IMPULSE AND REACTION STAGE 684 SELECTED BIBLIOGRAPHY 687
INDEX 715
|
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genre_facet | Lehrbuch |
id | DE-604.BV017258903 |
illustrated | Illustrated |
indexdate | 2024-07-09T19:15:48Z |
institution | BVB |
isbn | 9780387404370 0387404376 |
language | English German |
oai_aleph_id | oai:aleph.bib-bvb.de:BVB01-010402824 |
oclc_num | 52813828 |
open_access_boolean | |
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physical | XII, 723 S. Ill., zahlr. graph. Darst. |
publishDate | 2004 |
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publisher | Springer |
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series | Applied mathematical sciences |
series2 | Applied mathematical sciences |
spelling | Führer durch die Strömungslehre Prandtl's essentials of fluid mechanics Herbert Oertel ed. With contributions by M. Böhle ... 2. ed. New York, NY [u.a.] Springer 2004 XII, 723 S. Ill., zahlr. graph. Darst. txt rdacontent n rdamedia nc rdacarrier Applied mathematical sciences 158 Dt. Ausg. u.d.T.: Führer durch die Strömungslehre Mecánica de fluidos Fluid mechanics Strömungsmechanik (DE-588)4077970-1 gnd rswk-swf (DE-588)4123623-3 Lehrbuch gnd-content Strömungsmechanik (DE-588)4077970-1 s DE-604 Oertel, Herbert Sonstige oth Böhle, Martin Sonstige (DE-588)113228007 oth Applied mathematical sciences 158 (DE-604)BV000005274 158 text/html http://www.loc.gov/catdir/enhancements/fy0818/2003059136-d.html Publisher description HEBIS Datenaustausch Darmstadt application/pdf http://bvbr.bib-bvb.de:8991/F?func=service&doc_library=BVB01&local_base=BVB01&doc_number=010402824&sequence=000001&line_number=0001&func_code=DB_RECORDS&service_type=MEDIA Inhaltsverzeichnis |
spellingShingle | Prandtl's essentials of fluid mechanics Applied mathematical sciences Mecánica de fluidos Fluid mechanics Strömungsmechanik (DE-588)4077970-1 gnd |
subject_GND | (DE-588)4077970-1 (DE-588)4123623-3 |
title | Prandtl's essentials of fluid mechanics |
title_alt | Führer durch die Strömungslehre |
title_auth | Prandtl's essentials of fluid mechanics |
title_exact_search | Prandtl's essentials of fluid mechanics |
title_full | Prandtl's essentials of fluid mechanics Herbert Oertel ed. With contributions by M. Böhle ... |
title_fullStr | Prandtl's essentials of fluid mechanics Herbert Oertel ed. With contributions by M. Böhle ... |
title_full_unstemmed | Prandtl's essentials of fluid mechanics Herbert Oertel ed. With contributions by M. Böhle ... |
title_short | Prandtl's essentials of fluid mechanics |
title_sort | prandtl s essentials of fluid mechanics |
topic | Mecánica de fluidos Fluid mechanics Strömungsmechanik (DE-588)4077970-1 gnd |
topic_facet | Mecánica de fluidos Fluid mechanics Strömungsmechanik Lehrbuch |
url | http://www.loc.gov/catdir/enhancements/fy0818/2003059136-d.html http://bvbr.bib-bvb.de:8991/F?func=service&doc_library=BVB01&local_base=BVB01&doc_number=010402824&sequence=000001&line_number=0001&func_code=DB_RECORDS&service_type=MEDIA |
volume_link | (DE-604)BV000005274 |
work_keys_str_mv | UT fuhrerdurchdiestromungslehre AT oertelherbert prandtlsessentialsoffluidmechanics AT bohlemartin prandtlsessentialsoffluidmechanics |