Heat transfer: basics and practice
Gespeichert in:
Hauptverfasser: | , |
---|---|
Format: | Buch |
Sprache: | English |
Veröffentlicht: |
Berlin [u.a.]
Springer
2012
|
Schlagworte: | |
Online-Zugang: | Inhaltstext Inhaltsverzeichnis |
Beschreibung: | Literaturverz. S. 271 - 273 |
Beschreibung: | XIII, 276 S. graph. Darst. 24 cm |
ISBN: | 9783642191824 3642191827 |
Internformat
MARC
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300 | |a XIII, 276 S. |b graph. Darst. |c 24 cm | ||
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Datensatz im Suchindex
DE-BY-862_location | 2000 |
---|---|
DE-BY-FWS_call_number | 2000/UG 2500 B669 |
DE-BY-FWS_katkey | 741149 |
DE-BY-FWS_media_number | 083000522779 |
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adam_text |
IMAGE 1
CONTENTS
LIST OF SYMBOLS XI
1 INTRODUCTION AND DEFINITIONS 1
1.1 MODES OF HEAT TRANSFER 3
1.2 DEFINITIONS 4
1.2.1 HEAT (TRANSFER) RATE AND HEAT FLUX 4
1.2.2 HEAT TRANSFER COEFFICIENTS AND OVERALL HEAT TRANSFER COEFFICIENTS
4 1.2.3 RATE EQUATIONS 6
1.2.4 ENERGY BALANCE EQUATIONS 6
1.2.5 LOG MEAN TEMPERATURE DIFFERENCE 7
1.2.6 THERMAL CONDUCTIVITY 9
1.3 METHODOLOGY OF SOLVING PROBLEMS 9
2 THERMAL CONDUCTION IN STATIC MATERIALS 17
2.1 STEADY-STATE THERMAL CONDUCTION 17
.1 THERMAL CONDUCTION IN A PLANE WALL 18
.2 HEAT TRANSFER THROUGH MULTIPLE PLANE WALLS 22
.3 THERMAL CONDUCTION IN A HOLLOW CYLINDER 25
.4 HOLLOW CYLINDER WITH MULTIPLE LAYERS 29
.5 THERMAL CONDUCTION IN A HOLLOW SPHERE 32
.6 THERMAL CONDUCTION WITH HEAT FLUX TO EXTENDED SURFACES 35 2.1.6.1
TEMPERATURE DISTRIBUTION IN THE FIN 36
2.1.6.2 TEMPERATURE AT THE FIN TIP 38
2.1.6.3 HEAT RATE AT THE FIN FOOT 38
2.1.6.4 FIN EFFICIENCY 39
2.1.6.5 APPLICABILITY FOR OTHER GEOMETRIES 40
2.2 TRANSIENT THERMAL CONDUCTION 44
2.2.1 ONE-DIMENSIONAL TRANSIENT THERMAL CONDUCTION 44
2.2.1.1 DETERMINATION OF THE TEMPORAL CHANGE OF TEMPERATURE 44 2.2.1.2
DETERMINATION OF TRANSFERRED HEAT 47
2.2.1.3 SPECIAL SOLUTIONS FOR SHORT PERIODS OF TIME 58
2.2.2 COUPLED SYSTEMS 60
2.2.3 SPECIAL CASES AT BI = 0 AND BI = 62
BIBLIOGRAFISCHE INFORMATIONEN HTTP://D-NB.INFO/1009641573
DIGITALISIERT DURCH
IMAGE 2
VIII CONTENTS
2.2.4 TEMPERATURE CHANGES AT SMALL BIOT NUMBERS 62
2.2.4.1 A SMALL BODY IMMERSED IN A FLUID WITH LARGE MASS 63 2.2.4.2 A
BODY IS IMMERSED INTO A FLUID OF SIMILAR MASS 65 2.2.4.3 HEAT TRANSFER
TO A STATIC FLUID BY A FLOWING HEAT CARRIER 68 2.2.5 NUMERICAL SOLUTION
OF TRANSIENT THERMAL CONDUCTION EQUATIONS 70
2.2.5.1 DISCRETIZATION 70
2.2.5.2 NUMERICAL SOLUTION 73
2.2.5.3 SELECTION OF THE GRID SPACING AND OF THE TIME INTERVAL 74
3 FORCED CONVECTION 77
3.1 DIMENSIONLESS PARAMETERS 78
3.1.1 CONTINUITY EQUATION 79
3.1.2 EQUATION OF MOTION 80
3.1.3 EQUATION OF ENERGY 81
3.2 DETERMINATION OF HEAT TRANSFER COEFFICIENTS 83
3.2.1 FLOW IN A CIRCULAR TUBE 83
3.2.1.1 TURBULENT FLOW IN CIRCULAR TUBES 83
3.2.1.2 LAMINAR FLOW IN CIRCULAR TUBES AT CONSTANT WALL TEMPERATURE 85
3.2.1.3 EQUATIONS FOR THE TRANSITION FROM LAMINAR TO TURBULENT 86
3.2.1.3 FLOW IN TUBES AND CHANNELS OF NON-CIRCULAR CROSS-SECTIONS 94
3.2.2 FLAT PLATE IN PARALLEL FLOW 98
3.2.3 SINGLE BODIES IN PERPENDICULAR CROSS-FLOW 99
3.2.4 PERPENDICULAR CROSS-FLOW IN TUBE BUNDLES 103
3.2.5 TUBE BUNDLE WITH BAFFLE PLATES 109
3.3 FINNED TUBES 110
3.3.1 ANNULAR FINS 112
4 FREE CONVECTION 119
4.1 FREE CONVECTION AT PLAIN VERTICAL WALLS 120
4.1.1 INCLINED PLANE SURFACES 126
4.2 HORIZONTAL PLANE SURFACES 128
4.3 FREE CONVECTION ON CONTOURED SURFACE AREAS 128
4.3.1 HORIZONTAL CYLINDER 129
4.3.2 SPHERE 130
4.4 INTERACTION OF FREE AND FORCED CONVECTION 130
5 CONDENSATION OF PURE VAPORS 131
5.1 FILM CONDENSATION OF PURE, STATIC VAPOR 131
5.1.1 LAMINAR FILM CONDENSATION 131
.1.1 CONDENSATION OF SATURATED VAPOR ON A VERTICAL WALL 131 .1.2
INFLUENCE OF THE CHANGING WALL TEMPERATURE 135
.1.3 CONDENSATION OF WET AND SUPERHEATED VAPOR 136
.1.4 CONDENSATION ON INCLINED WALLS 137
.1.5 CONDENSATION ON HORIZONTAL TUBES 137
IMAGE 3
CONTENTS IX
5.1.2 TURBULENT FILM CONDENSATION ON VERTICAL SURFACES 137 5.2
DIMENSIONLESS SIMILARITY NUMBERS 137
5.2.1 LOCAL HEAT TRANSFER COEFFICIENTS 138
5.2.2 MEAN HEAT TRANSFER COEFFICIENTS 139
5.2.3 CONDENSATION ON HORIZONTAL TUBES 139
5.2.4 PROCEDURE FOR THE DETERMINATION OF HEAT TRANSFER COEFFICIENTS 140
5.2.5 PRESSURE DROP IN TUBE BUNDLES 147
5.3 CONDENSATION OF PURE VAPOR IN TUBE FLOW 151
5.3.1 CONDENSATION IN VERTICAL TUBES 152
5.3.1.1 PARALLEL-FLOW (VAPOR FLOW DOWNWARD) 153
5.2.1.2 COUNTERFLOW (VAPOR FLOW UPWARD) 154
5.3.2 CONDENSATION IN HORIZONTAL TUBES 158
6 BOILING HEAT TRANSFER 171
6.1 POOL BOILING 171
6.1.1 SUB-COOLED CONVECTION BOILING 173
6.1.2 NUCLEATE BOILING 173
6.2 BOILING AT FORCED CONVECTION 182
6.2.1 SUB-COOLED BOILING 182
6.2.2 CONVECTION BOILING 183
7 THERMAL RADIATION 189
7.1 BASIC LAW OF THERMAL RADIATION 190
7.2 DETERMINATION OF THE HEAT FLUX OF RADIATION 191
7.2.1 INTENSITY AND DIRECTIONAL DISTRIBUTION OF THE RADIATION 192 7.2.2
EMISSIVITIES OF TECHNICAL SURFACES 193
7.2.3 HEAT TRANSFER BETWEEN TWO SURFACES 194
7.2.3.1 PARALLEL GRAY PLATES WITH IDENTICAL SURFACE AREA SIZE 196
7.2.3.2 SURROUNDED BODIES 197
7.3 THERMAL RADIATION OF GASES 206
7.3.1 EMISSIVITIES OF FLUE GASES 207
7.3.1.1 EMISSIVITY OF WATER VAPOR 207
7.3.1.2 EMISSIVITY OF CARBON DIOXIDE 208
7.3.2 HEAT TRANSFER BETWEEN GAS AND WALL 208
8 HEAT EXCHANGERS 215
8.1 DEFINITIONS AND BASIC EQUATIONS 215
8.2 CALCULATION CONCEPTS 218
8.2.1 CELL METHOD 218
8.2.2 ANALYSIS WITH THE LOG MEAN TEMPERATURE METHOD 223 8.3 FOULING
RESISTANCE 236
8.4 TUBE VIBRATIONS 240
8.4.1 CRITICAL TUBE OSCILLATIONS 240
8.4.2 ACOUSTIC RESONANCE 242
IMAGE 4
CONTENTS
APPENDIX 245
AL: IMPORTANT PHYSICAL CONSTANTS 245
A2: THERMAL PROPERTIES OF SUB-COOLED WATER AT 1 BAR PRESSURE 246 A3:
THERMAL PROPERTIES OF SATURATED WATER AND STEAM 248
A4: THERMAL PROPERTIES OF WATER AND STEAM 250
A5: THERMAL PROPERTIES OF SATURATED FREON 134A 252
A6: THERMAL PROPERTIES OF AIR AT 1 BAR PRESSURE 254
A7: THERMAL PROPERTIES OF SOLID MATTER 255
A8: THERMAL PROPERTIES OF THERMAL OILS 256
A9: THERMAL PROPERTIES OF FUELS AT 1.013 BAR 257
A10: EMISSIVITY OF SURFACES 258
ALL: FORMULARY 261
BIBLIOGRAPHY 271
INDEX 275 |
any_adam_object | 1 |
author | Böckh, Peter von 1942- Wetzel, Thomas |
author_GND | (DE-588)108558991 |
author_facet | Böckh, Peter von 1942- Wetzel, Thomas |
author_role | aut aut |
author_sort | Böckh, Peter von 1942- |
author_variant | p v b pv pvb t w tw |
building | Verbundindex |
bvnumber | BV039662196 |
classification_rvk | UG 2500 |
ctrlnum | (OCoLC)724845253 (DE-599)DNB1009641573 |
dewey-full | 621.4022 |
dewey-hundreds | 600 - Technology (Applied sciences) |
dewey-ones | 621 - Applied physics |
dewey-raw | 621.4022 |
dewey-search | 621.4022 |
dewey-sort | 3621.4022 |
dewey-tens | 620 - Engineering and allied operations |
discipline | Maschinenbau / Maschinenwesen Physik Energietechnik |
format | Book |
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id | DE-604.BV039662196 |
illustrated | Illustrated |
indexdate | 2024-08-05T08:31:11Z |
institution | BVB |
isbn | 9783642191824 3642191827 |
language | English |
oai_aleph_id | oai:aleph.bib-bvb.de:BVB01-024511545 |
oclc_num | 724845253 |
open_access_boolean | |
owner | DE-706 DE-703 DE-859 DE-573 DE-1050 DE-862 DE-BY-FWS |
owner_facet | DE-706 DE-703 DE-859 DE-573 DE-1050 DE-862 DE-BY-FWS |
physical | XIII, 276 S. graph. Darst. 24 cm |
publishDate | 2012 |
publishDateSearch | 2012 |
publishDateSort | 2012 |
publisher | Springer |
record_format | marc |
spellingShingle | Böckh, Peter von 1942- Wetzel, Thomas Heat transfer basics and practice Wärmeübertragung (DE-588)4064211-2 gnd |
subject_GND | (DE-588)4064211-2 |
title | Heat transfer basics and practice |
title_auth | Heat transfer basics and practice |
title_exact_search | Heat transfer basics and practice |
title_full | Heat transfer basics and practice Peter von Böckh ; Thomas Wetzel |
title_fullStr | Heat transfer basics and practice Peter von Böckh ; Thomas Wetzel |
title_full_unstemmed | Heat transfer basics and practice Peter von Böckh ; Thomas Wetzel |
title_short | Heat transfer |
title_sort | heat transfer basics and practice |
title_sub | basics and practice |
topic | Wärmeübertragung (DE-588)4064211-2 gnd |
topic_facet | Wärmeübertragung |
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work_keys_str_mv | AT bockhpetervon heattransferbasicsandpractice AT wetzelthomas heattransferbasicsandpractice |
Beschreibung
THWS Schweinfurt Zentralbibliothek Lesesaal
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2000 UG 2500 B669 |
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