Entropy and entropy generation: fundamentals and applications
Gespeichert in:
Format: | Buch |
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Sprache: | English |
Veröffentlicht: |
Dordrecht [u. a.]
Kluwer
1996
|
Schriftenreihe: | Understanding chemical reactivity
18 |
Schlagworte: | |
Online-Zugang: | Inhaltsverzeichnis |
Beschreibung: | XIV, 246 S. graph. Darst. |
ISBN: | 0792341287 |
Internformat
MARC
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300 | |a XIV, 246 S. |b graph. Darst. | ||
336 | |b txt |2 rdacontent | ||
337 | |b n |2 rdamedia | ||
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490 | 1 | |a Understanding chemical reactivity |v 18 | |
650 | 7 | |a Chimie physique et théorique |2 ram | |
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650 | 7 | |a Termodinamica |2 larpcal | |
650 | 4 | |a Thermodynamique | |
650 | 7 | |a Thermodynamique |2 ram | |
650 | 4 | |a Entropy | |
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Datensatz im Suchindex
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adam_text | ENTROPY AND ENTROPY GENERATION FUNDAMENTALS AND APPLICATIONS EDITED BY
J. S. SHINER PHYSIOLOGICAL INSTITUTE, UNIVERSITY OF BERN, BERN,
SWITZERLAND FILL KLUWER ACADEMIC PUBLISHERS DORDRECHT / BOSTON / LONDON
TABLE OF CONTENTS PREFACE XI 1 M. KAUFMANN, W. MUSCHIK AND D.
SCHIRRMEISTER ON POSITIVITY OF RATE OF ENTROPY IN QUANTUM-THERMODYNAMICS
L 1 INTRODUCTION 1 2 DYNAMICS 2 2.1 CANONICAL DYNAMICS 3 2.2 GENERALIZED
ROBERTSON DYNAMICS 4 2.3 CONTACT TIME DYNAMICS 5 3 POSITIVE RATE OF
ENTROPY 6 4 DISCUSSION 8 2 K. RATEITSCHAK, J. FREUND AND W. EBELING
ENTROPY OF SEQUENCES GENERATED BY NONLINEAR PROCESSES: THE LOGISTIC MAP
11 1 INTRODUCTION 11 2 SYMBOLIC DYNAMICS OF THE FEIGENBAUM ACCUMULATION
POINT 14 3 DERIVATION OF THE ENTROPY FORMULA 17 4 ARBITRARY PARTITIONS
20 5 CONCLUSIONS AND OUTLOOK 24 3 GEOFFREY L. SEWELL DEVELOPMENTS IN
NORMAL AND GRAVITATIONAL THERMODYNAMICS 27 1 INTRODUCTION 27 2 NORMAL
SYSTEMS 28 2.1 THERMODYNAMIC VARIABLES 29 2.2 THERMODYNAMIC POTENTIALS
30 2.3 COMMENTS 30 2.4 EQUILIBRIUM STATES AND PHASE STRUCTURE 31 2.5
PROPOSITION 31 3 NON-RELATIVISTIC GRAVITATIONAL SYSTEMS 31, V 4 BLACK
HOLE THERMODYNAMICS 32 4.1 NOTE 34 4.2 DERIVATION OF THE GSL 35 G.
LEBON, D. JOU AND J. CASAS-VAZQUEZ EXTENDED IRREVERSIBLE THERMODYNAMICS:
STATEMENTS AND PROSPECTS 37 1 INTRODUCTION 37 2 THE BASIC STATEMENTS OF
EIT 38 2.1 ENLARGEMENT OF THE SPACE OF INDEPENDENT VARIABLES . 38 2.2
EVOLUTION EQUATIONS FOR THE * AND F VARIABLES ... 39 2.3 EXISTENCE OF A
NONEQUILIBRIUM ENTROPY 40 3 ILLUSTRATION: HEAT CONDUCTION IN RIGID
SOLIDS 42 3.1 THE STATE VARIABLES 42 3.2 THE EVOLUTION EQUATIONS 43 3.3
RESTRICTIONS PLACED BY THE SECOND LAW AND THE CONVEXITY REQUIREMENT 43 4
EIT: SOME OPEN PROBLEMS 45 4.1 PHYSICAL MEANING OF THE NONEQUILIBRIUM
EQUATIONS OF STATE 45 4.2 BEHAVIOUR AT HIGH VALUES OF THE FLUXES 47 4.3
THERMODYNAMIC STABILITY AND POSITIVENESS OF TEMPERATURE PROFILES 48 4.4
HIGHER-ORDER FLUXES 49 4.5 PHASE TRANSITIONS IN STEADY NONEQUILIBRIUM
STATES . 51 4.6 HYDRODYNAMIC DESCRIPTION OF NANOMETRIC ELECTRONIC
DEVICES 52 5 CONCLUDING REMARKS 52 J. CAMACHO EXTENDED THERMODYNAMICS
AND TAYLOR DISPERSION 55 1 INTRODUCTION 55 2 THERMODYNAMICS OF TAYLOR
DISPERSION 57 2.1 TAYLOR FLUX COMPONENTS 57 2.2 ENTROPY BALANCE AND
CONSTITUTIVE EQUATIONS . . . . 59 2.3 THERMODYNAMIC FUNCTIONS FOR TAYLOR
DISPERSION . . 62 3 A MACROSCALE MODEL FOR TAYLOR DISPERSION 65 3.1 A
PURELY MACROSCALE MODEL FOR TAYLOR DISPERSION BASED IN EIT 66 3.2
COMPARISON WITH NUMERICAL SIMULATIONS 68 4 CONCLUDING REMARKS 71 VLL 6
L.C. WOODS HIGHER ORDER TRANSPORT 75 1 INTRODUCTION 75 2 SECOND-ORDER
ENTROPY 76 2.1 RELAXATION TIMES 76 2.2 SPECIFIC ENTROPY 76 2.3
GENERALIZED GIBBS EQUATION 77 2.4 STABILITY LIMIT ON KNUDSEN NUMBERS 78
3 SECOND-ORDER HEAT FLUX 80 3.1 PHYSICAL MECHANISMS 80 3.2 PERSISTENCE
OF THE RELATIVE HEAT FLUX 81 3.3 FINAL EXPRESSION FOR THE SECOND-ORDER
HEAT FLUX . . 83 4 SECOND-ORDER VISCOUS STRESS TENSOR 84 4.1 CONVECTION
OF VISCOUS FORCE 84 4.2 REMOVING THE FLUID ACCELERATION 85 4.3 VISCOUS
STRESS DUE TO HEAT FLUX GRADIENT 86 4.4 EXPRESSION FOR THE VISCOUS
STRESS TENSOR 87 4.5 COMPARISON WITH KINETIC THEORY 87 5 GENERALIZED
HEAT FLUX LAW 88 5.1 INTEGRAL FORM FOR THE HEAT FLUX 88 5.2 GENERALIZED
FOURIER S LAW 89 6 ENTROPY PRODUCTION RATE 90 6.1 GENERAL FORMULAE 90
6.2 SIGN OF THE ENTROPY PRODUCTION RATE 91 6.3 CAN CONSTITUTIVE
RELATIONS BE DEDUCED FROM A 0? 92 7 EXTENDED IRREVERSIBLE
THERMODYNAMICS 94 7.1 BASIC CONCEPTS 94 7.2 KINETIC THEORY PRECURSORS OF
EIT 95 7.3 CONTITUTIVE EQUATIONS FOR A ONE-COMPONENT FLUID . 97 7 W.
MUSCHIK, H. EHRENTRAUT, *. PAPENFUSS AND S. BLENK MESOSCOPIC THEORY OF
LIQUID CRYSTALS 101 1 INTRODUCTION 101 2 MESOSCOPIC CONCEPT 103 3
ORIENTATIONAL BALANCES 103 3.1 GLOBAL BALANCES 104 3.2 LOCAL
ORIENTATIONAL BALANCES 105 3.3 BALANCES OF MICROPOLAR MEDIA 106 4
ALIGNMENT TENSORS 107 5 REMARK ON CONSTITUTIVE EQUATIONS 108 BJARNE
ANDRESEN FINITE-TIME THERMODYNAMICS AND SIMULATED ANNEALING 111 1
INTRODUCTION ILL 1.1 MOTIVATION ILL 1.2 EARLY DEVELOPMENTS 112 2
PERFORMANCE BOUND WITHOUT PATH 113 2.1 GENERALIZED POTENTIALS 113 2.2
THERMODYNAMIC LENGTH 116 3 OPTIMAL PATH 118 3.1 OPTIMAL PATH
CALCULATIONS 118 3.2 CRITERIA OF PERFORMANCE 118 4 SIMULATED ANNEALING
120 4.1 THE ALGORITHM , . 120 4.2 THE OPTIMAL ANNEALING SCHEDULE 121 4.3
PARALLEL IMPLEMENTATION 122 4.4 AN ANALYTIC MODEL 124 5 SUMMARY 125
G.H.A. COLE ENTROPY, INFORMATION AND BIOLOGICAL MATERIALS 129 1
INTRODUCTION 129 2 LIFE AND INFORMATION 130 3 COSMOLOGY: THE INANIMATE
UNIVERSE 131 4 CONSERVATION OF INANIMATE QUANTITIES 133 5 CONSERVATION
OF INFORMATION: AN HYPOTHESIS 134 6 SUMMARY AND CONCLUSIONS 135 J.S.
SHINER AND STANISLAW SIENIUTYCZ PHENOMENOLOGICAL MACROSCOPIC SYMMETRY IN
DISSIPATIVE NONLINEAR SYSTEMS 139 1 INTRODUCTION 139 2 DEFINITIONS OF
SYSTEMS CONSIDERED: VARIABLES, FORCES, CONSTRAINTS AND EQUATIONS OF
MOTION 142 2.1 LAGRANGIAN FORCES 143 2.2 DISSIPATIVE FORCES 146 2.3
CONSERVATION PROPERTIES 148 2.4 THE EQUATIONS OF MOTION 149 3
INDEPENDENT AND DEPENDENT VARIABLES AND THE STATIONARY STATE 150 4
SYMMETRY 152 5 DISCUSSION 154 IX 11 G.H.A. COLE THE PROVISION OF GLOBAL
ENERGY 159 1 INTRODUCTION 159 2 PRESENT ENERGY SOURCES 160 3 THE NATURE
OF THE RESOURCES 161 4 THERMODYNAMIC CONSEQUENCES 162 5 FOUR BASIC
SOURCES OF ENERGY 163 6 THE SUN AS A SOURCE 163 6.1 DIRECT COLLECTION OF
RADIATION 164 6.2 PHOTOSYNTHESIS 165 6.3 WIND POWER 166 6.4 WAVE POWER
167 6.5 THE HYDRAULIC RESOURCE 168 6.6 OCEAN THERMAL POWER 168 7
GEOTHERMAL ENERGY 168 8 TIDAL POWER 169 9 FUSION POWER 169 10 COMMENTS
AND SUMMARY 171 10.1 REGENERATIVE SOURCES 171 10.2 HIGH DENSITY SOURCES
172 10.3 CONCLUSION 173 12 P.T. LANDSBERG, A. DE VOS, P. BARUCH AND J.E.
PARROTT MULTIPLE SOURCE PHOTOVOLTAICS 175 1 INTRODUCTION 175 2
APPROXIMATELY OPTIMUM WORK FLUX OUTPUT 177 3 SPECIAL CASES 181 4 THE
CONVERTER EFFICIENCY 182 5 THE SHOCKLEY-QUEISSER ULTIMATE EFFICIENCY
185 6 APPROXIMATELY OPTIMAL EFFICIENCY: A SPECIAL CASE . . . . . 186 7
THE SOLAR CELL EQUATION 187 8 ENTROPY GENERATION IN A SOLAR CELL 189 9
CONCLUSIONS 190 APPENDIX I (RELEVANT TO SECTION 2) THE GEOMETRICAL
FACTOR FOR D = 3 191 APPENDIX II (RELEVANT TO SECTIONS 2-4) SOME
GENERALISATIONS TO D DIMENSIONS OF EQUATIONS OF THE MAIN TEXT 193 S.
KJELSTRUP RATKJE AND B. HAFSKJOLD COUPLED TRANSPORT OF HEAT AND MASS.
THEORY AND APPLICATIONS 197 1 INTRODUCTION 197 2 IRREVERSIBLE
THERMODYNAMIC THEORY 198 3 EXAMPLES OF COUPLED TRANSPORT OF HEAT AND
MASS 202 3.1 FROST HEAVE 202 3.2 FREEZE CONCENTRATION OF SOLUTIONS 204
3.3 BOTTOM HEAVE IN THE ALUMINIUM ELECTROLYSIS CELL . 206 4 MOLECULAR
DYNAMICS SIMULATIONS 208 4.1 CRITERIA FOR LOCAL EQUILIBRIUM IN A
TEMPERATURE GRADIENT 209 4.2 THE VALIDITY OF ONSAGER RECIPROCAL RELATION
. . . . 211 4.3 THE HEAT OF TRANSFER ACROSS INTERFACES 212 4.4 THERMAL
DIFFUSION IN A TWO COMPONENT MIXTURE . . 214 5 CONCLUSION 218 J.S.
SHINER, S. FASSARI AND STANISLAW SIENIUTYCZ LAG RANG I AN AND NETWORK
FORMULATIONS OF NONLINEAR ELECTROCHEMICAL SYSTEMS 221 1 INTRODUCTION 221
2 A SIMPLE ELECTROCHEMICAL CELL 223 3 MORE COMPLICATED REACTION SCHEMES
230 4 AN ELECTROCHEMICAL CELL WITH A MORE REALISTIC ELECTRICAL LOAD 235
5 DISCUSSION 237 INDEX 241
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institution | BVB |
isbn | 0792341287 |
language | English |
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physical | XIV, 246 S. graph. Darst. |
publishDate | 1996 |
publishDateSearch | 1996 |
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series | Understanding chemical reactivity |
series2 | Understanding chemical reactivity |
spelling | Entropy and entropy generation fundamentals and applications ed. by J. S. Shiner Dordrecht [u. a.] Kluwer 1996 XIV, 246 S. graph. Darst. txt rdacontent n rdamedia nc rdacarrier Understanding chemical reactivity 18 Chimie physique et théorique ram Entropie Entropie ram Termodinamica larpcal Thermodynamique Thermodynamique ram Entropy Thermodynamics Entropie (DE-588)4014894-4 gnd rswk-swf (DE-588)4143413-4 Aufsatzsammlung gnd-content Entropie (DE-588)4014894-4 s DE-604 Shiner, J. S. Sonstige oth Understanding chemical reactivity 18 (DE-604)BV000021931 18 GBV Datenaustausch application/pdf http://bvbr.bib-bvb.de:8991/F?func=service&doc_library=BVB01&local_base=BVB01&doc_number=007483162&sequence=000001&line_number=0001&func_code=DB_RECORDS&service_type=MEDIA Inhaltsverzeichnis |
spellingShingle | Entropy and entropy generation fundamentals and applications Understanding chemical reactivity Chimie physique et théorique ram Entropie Entropie ram Termodinamica larpcal Thermodynamique Thermodynamique ram Entropy Thermodynamics Entropie (DE-588)4014894-4 gnd |
subject_GND | (DE-588)4014894-4 (DE-588)4143413-4 |
title | Entropy and entropy generation fundamentals and applications |
title_auth | Entropy and entropy generation fundamentals and applications |
title_exact_search | Entropy and entropy generation fundamentals and applications |
title_full | Entropy and entropy generation fundamentals and applications ed. by J. S. Shiner |
title_fullStr | Entropy and entropy generation fundamentals and applications ed. by J. S. Shiner |
title_full_unstemmed | Entropy and entropy generation fundamentals and applications ed. by J. S. Shiner |
title_short | Entropy and entropy generation |
title_sort | entropy and entropy generation fundamentals and applications |
title_sub | fundamentals and applications |
topic | Chimie physique et théorique ram Entropie Entropie ram Termodinamica larpcal Thermodynamique Thermodynamique ram Entropy Thermodynamics Entropie (DE-588)4014894-4 gnd |
topic_facet | Chimie physique et théorique Entropie Termodinamica Thermodynamique Entropy Thermodynamics Aufsatzsammlung |
url | http://bvbr.bib-bvb.de:8991/F?func=service&doc_library=BVB01&local_base=BVB01&doc_number=007483162&sequence=000001&line_number=0001&func_code=DB_RECORDS&service_type=MEDIA |
volume_link | (DE-604)BV000021931 |
work_keys_str_mv | AT shinerjs entropyandentropygenerationfundamentalsandapplications |