Stochastic processes in polymeric fluids tools and examples for developing simulation algorithms

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1. Verfasser: Öttinger, Hans Christian (VerfasserIn)
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Sprache:German
Veröffentlicht: Berlin [u.a.] Springer 1996
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Datensatz im Suchindex

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adam_text HANS CHRISTIAN OTTINGER STOCHASTIC PROCESSES IN POLYMERIC FLUIDS TOOLS AND EXAMPLES FOR DEVELOPING SIMULATION ALGORITHMS WITH 34 FIGURES AND 3 TABLES SPRINGER TABLE OF CONTENTS 1 STOCHASTIC PROCESSES, POLYMER DYNAMICS, AND FLUID MECHANICS . . . 1 1.1 APPROACH TO KINETIC THEORY MODELS 2 1.2 FLOW CALCULATION AND MATERIAL FUNCTIONS 5 1.2.1 SHEAR FLOWS 9 1.2.2 GENERAL EXTENSIONAL FLOWS 12 1.2.3 THE CONNFFESSIT IDEA 13 REFERENCES 14 PART, I STOCHASTIC PROCESSES 17 2 BASIC CONCEPTS FROM STOCHASTICS 19 2.1 EVENTS AND PROBABILITIES 19 2.1.1 EVENTS AND A-ALGEBRAS 20 2.1.2 PROBABILITY AXIOMS 26 2.1.3 GAUSSIAN PROBABILITY MEASURES 30 2.2 RANDOM VARIABLES 34 2.2.1 DEFINITIONS AND EXAMPLES 34 2.2.2 EXPECTATIONS AND MOMENTS 40 2.2.3 JOINT DISTRIBUTIONS AND INDEPENDENCE 45 2.2.4 CONDITIONAL EXPECTATIONS AND PROBABILITIES 48 2.2.5 GAUSSIAN RANDOM VARIABLES 55 2.2.6 CONVERGENCE OF RANDOM VARIABLES 58 2.3 BASIC THEORY OF STOCHASTIC PROCESSES 63 2.3.1 DEFINITIONS AND DISTRIBUTIONS 64 2.3.2 GAUSSIAN PROCESSES 67 2.3.3 MARKOV PROCESSES 71 2.3.4 MARTINGALES . 77 REFERENCES 80 3 STOCHASTIC CALCULUS 81 3.1 MOTIVATION 82 3.1.1 NAIVE APPROACH TO STOCHASTIC DIFFERENTIAL EQUATIONS ... 82 3.1.2 CRITICISM OF THE NAIVE APPROACH 85 XII TABLE OF CONTENTS 3.2 STOCHASTIC INTEGRATION 87 3.2.1 DEFINITION OF THE ITO INTEGRAL 87 3.2.2 PROPERTIES OF THE ITO INTEGRAL 93 3.2.3 ITO S FORMULA 97 3.3 STOCHASTIC DIFFERENTIAL EQUATIONS 101 3.3.1 DEFINITIONS AND BASIC THEOREMS 102 3.3.2 LINEAR STOCHASTIC DIFFERENTIAL EQUATIONS 104 3.3.3 FOKKER-PLANCK EQUATIONS 110 3.3.4 MEAN FIELD INTERACTIONS 114 3.3.5 BOUNDARY CONDITIONS 115 3.3.6 STRATONOVICH S STOCHASTIC CALCULUS 122 3.4 NUMERICAL INTEGRATION SCHEMES 130 3.4.1 EULER S METHOD 131 3.4.2 MIL SHTEIN S METHOD 134 3.4.3 WEAK APPROXIMATION SCHEMES 136 3.4.4 MORE SOPHISTICATED METHODS 140 REFERENCES . 146 PART II POLYMER DYNAMICS 149 4 BEAD-SPRING MODELS FOR DILUTE SOLUTIONS . .* 151 4.1 ROUSE MODEL * 152 4.1.1 ANALYTICAL SOLUTION FOR THE EQUATIONS OF MOTION 153 4.1.2 STRESS TENSOR 158 4.1.3 MATERIAL FUNCTIONS IN SHEAR AND EXTENSIONAL FLOWS . . . 161 4.1.4 A PRIMER IN BROWNIAN DYNAMICS SIMULATIONS 163 4.1.5 VARIANCE REDUCED SIMULATIONS 169 4.2 HYDRODYNAMIC INTERACTION 183 4.2.1 DESCRIPTION OF HYDRODYNAMIC INTERACTION 183 4.2.2 ZIMM MODEL 187 4.2.3 LONG CHAIN LIMIT AND UNIVERSAL BEHAVIOR 194 4.2.4 GAUSSIAN APPROXIMATION 198 4.2.5 SIMULATION OF DUMBBELLS 203 4.3 NONLINEAR FORCES 212 4.3.1 EXCLUDED VOLUME 213 4.3.2 FINITE POLYMER EXTENSIBILITY 215 REFERENCES 221 5 MODELS WITH CONSTRAINTS 225 5.1 GENERAL BEAD-ROD-SPRING MODELS 226 5.1.1 PHILOSOPHY OF CONSTRAINTS 226 5.1.2 FORMULATION OF STOCHASTIC DIFFERENTIAL EQUATIONS 230 5.1.3 GENERALIZED COORDINATES VERSUS CONSTRAINT CONDITIONS . 238 5.1.4 NUMERICAL INTEGRATION SCHEMES 242 5.1.5 STRESS TENSOR 245 TABLE OF CONTENTS XIII 5.2 RIGID ROD MODELS 248 5.2.1 DILUTE SOLUTIONS OF ROD-LIKE MOLECULES 249 5.2.2 LIQUID CRYSTAL POLYMERS 252 REFERENCES 256 6 REPTATION MODELS FOR CONCENTRATED SOLUTIONS AND MELTS 257 6.1 DOI-EDWARDS AND CURTISS-BIRD MODELS 259 6.1.1 POLYMER DYNAMICS 259 6.1.2 STRESS TENSOR 261 6.1.3 SIMULATIONS IN STEADY SHEAR FLOW 264 6.1.4 EFFICIENCY OF SIMULATIONS 273 6.2 REPTATING-ROPE MODEL 275 6.2.1 BASIC MODEL EQUATIONS 275 6.2.2 RESULTS FOR STEADY SHEAR FLOW 279 6.3 MODIFIED REPTATION MODELS 281 6.3.1 A MODEL RELATED TO DOUBLE REPTATION 282 6.3.2 DOI-EDWARDS MODEL WITHOUT INDEPENDENT ALIGNMENT . . 288 REFERENCES 290 LANDMARK PAPERS AND BOOKS 292 SOLUTIONS TO EXERCISES : . . . . 298 REFERENCES 344 AUTHOR INDEX 345 SUBJECT INDEX 349
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author Öttinger, Hans Christian
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publishDate 1996
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publishDateSort 1996
publisher Springer
record_format marc
spellingShingle Öttinger, Hans Christian
Stochastic processes in polymeric fluids tools and examples for developing simulation algorithms
Dynamica gtt
Fluides, Dynamique des ram
Gesmolten polymeren gtt
Polymères - Propriétés mécaniques ram
Reologie gtt
Stochastische processen gtt
Vloeistofmechanica gtt
Datenverarbeitung
Mathematisches Modell
Fluid dynamics Data processing
Polymers Mechanical properties Mathematical models Data processing
Stochastic processes Data processing
Stochastischer Prozess (DE-588)4057630-9 gnd
Polymere (DE-588)4046699-1 gnd
Flüssiger Zustand (DE-588)4336025-7 gnd
Kinetische Theorie (DE-588)4030669-0 gnd
subject_GND (DE-588)4057630-9
(DE-588)4046699-1
(DE-588)4336025-7
(DE-588)4030669-0
title Stochastic processes in polymeric fluids tools and examples for developing simulation algorithms
title_auth Stochastic processes in polymeric fluids tools and examples for developing simulation algorithms
title_exact_search Stochastic processes in polymeric fluids tools and examples for developing simulation algorithms
title_full Stochastic processes in polymeric fluids tools and examples for developing simulation algorithms Hans Christian Öttinger
title_fullStr Stochastic processes in polymeric fluids tools and examples for developing simulation algorithms Hans Christian Öttinger
title_full_unstemmed Stochastic processes in polymeric fluids tools and examples for developing simulation algorithms Hans Christian Öttinger
title_short Stochastic processes in polymeric fluids
title_sort stochastic processes in polymeric fluids tools and examples for developing simulation algorithms
title_sub tools and examples for developing simulation algorithms
topic Dynamica gtt
Fluides, Dynamique des ram
Gesmolten polymeren gtt
Polymères - Propriétés mécaniques ram
Reologie gtt
Stochastische processen gtt
Vloeistofmechanica gtt
Datenverarbeitung
Mathematisches Modell
Fluid dynamics Data processing
Polymers Mechanical properties Mathematical models Data processing
Stochastic processes Data processing
Stochastischer Prozess (DE-588)4057630-9 gnd
Polymere (DE-588)4046699-1 gnd
Flüssiger Zustand (DE-588)4336025-7 gnd
Kinetische Theorie (DE-588)4030669-0 gnd
topic_facet Dynamica
Fluides, Dynamique des
Gesmolten polymeren
Polymères - Propriétés mécaniques
Reologie
Stochastische processen
Vloeistofmechanica
Datenverarbeitung
Mathematisches Modell
Fluid dynamics Data processing
Polymers Mechanical properties Mathematical models Data processing
Stochastic processes Data processing
Stochastischer Prozess
Polymere
Flüssiger Zustand
Kinetische Theorie
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