Design and optimization of thermal systems:
Gespeichert in:
1. Verfasser: | |
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Format: | Buch |
Sprache: | English |
Veröffentlicht: |
Boca Raton, Fla. [u.a.]
CRC Press
2008
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Ausgabe: | 2. ed. |
Schriftenreihe: | Mechanical engineering
209 |
Schlagworte: | |
Online-Zugang: | Inhaltsverzeichnis Beschreibung für Leser Inhaltsverzeichnis |
Beschreibung: | 723 S. Ill., graph. Darst. |
ISBN: | 0849337534 |
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Datensatz im Suchindex
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adam_text | DESIGN AND OPTIMIZATIAN EF THERMAL SYSTEMS SECOND EDITION YOGESH JALURIA
CRC PRESS TAYLOR &. FRANCIS GROUP BOCA RATON LONDON NEW YORK CRC PRESS
IS AN IMPRINT OF THE TAYLOR & FRANCIS CROUP, AN INFORMA BUSINESS
CONTENTS CHAPTER 1 INTRODUCTION 1 1.1 ENGINEERING DESIGN 2 1.1.1 DESIGN
VERSUS ANALYSIS 2 1.1.2 SYNTHESIS FOR DESIGN 6 1.1.3 SELECTION VERSUS
DESIGN 7 1.2 DESIGN AS PART OF ENGINEERING ENTERPRISE 9 1.2.1 NEED OR
OPPORTUNITY 9 1.2.2 EVALUATION AND MARKET ANALYSIS 10 1.2.3 FEASIBILITY
AND CHANCES OF SUCCESS 12 1.2.4 ENGINEERING DESIGN 14 1.2.5 RESEARCH AND
DEVELOPMENT 15 1.2.6 NEED FOR OPTIMIZATION 16 1.2.7 FABRICATION,
TESTING, AND PRODUCTION 18 1.3 THERMAL SYSTEMS 19 1.3.1 BASIC
CHARACTERISTICS 19 1.3.2 ANALYSIS 22 1.3.3 TYPES AND EXAMPLES 25 1.4
OUTLINE AND SCOPE OF THE BOOK 40 1.5 SUMMARY 43 REFERENCES 44 CHAPTER 2
BASIC CONSIDERATIONS IN DESIGN 47 2.1 FORMULATION OF THE DESIGN PROBLEM
47 2.1.1 REQUIREMENTS AND SPECIFICATIONS 47 2.1.2 GIVEN QUANTITIES 50
2.1.3 DESIGN VARIABLES 51 2.1.4 CONSTRAINTS OR LIMITATIONS 53 2.1.5
ADDITIONAL CONSIDERATIONS 55 2.2 CONCEPTUAL DESIGN 58 2.2.1 INNOVATIVE
CONCEPTUAL DESIGN 58 2.2.2 SELECTION FROM AVAILABLE CONCEPTS 62 2.2.3
MODIFICATIONS IN THE DESIGN OF EXISTING SYSTEMS 64 2.3 STEPS IN THE
DESIGN PROCESS 70 2.3.1 PHYSICAL SYSTEM 72 2.3.2 MODELING 75 2.3.3
SIMULATION 76 2.3.4 EVALUATION: ACCEPTABLE DESIGN 81 2.3.5 OPTIMAL
DESIGN 83 2.3.6 SAFETY FEATURES, AUTOMATION, AND CONTROL 86 2.3.7
COMMUNICATING THE DESIGN 90 2.3.8 PATENTS AND COPYRIGHTS 92 2.4
COMPUTER-AIDED DESIGN 97 2.4.1 MAIN FEATURES 97 2.4.2 COMPUTER-AIDED
DESIGN OF THERMAL SYSTEMS 98 2.5 MATERIAL SELECTION 104 2.5.1 DIFFERENT
MATERIALS 104 2.5.2 MATERIAL PROPERTIES AND CHARACTERISTICS FOR THERMAL
SYSTEMS 108 2.5.3 SELECTION AND SUBSTITUTION OF MATERIALS 110 2.6
SUMMARY 113 REFERENCES 115 PROBLEMS 116 CHAPTER3 MODELING OF THERMAL
SYSTEMS 125 3.1 INTRODUCTION 125 3.1.1 IMPORTANCE OF MODELING IN DESIGN
125 3.1.2 BASIC FEATURES OF MODELING 125 3.2 TYPESOF MODELS 128 3.2.1
ANALOG MODELS 129 3.2.2 MATHEMATICAL MODELS 130 3.2.3 PHYSICAL MODELS
130 3.2.4 NUMERICAL MODELS 131 3.2.5 INTERACTION BETWEEN MODELS 133
3.2.6 OTHER CLASSIFICATIONS 133 3.3 MATHEMATICAL MODELING 134 3.3.1
GENERAL PROCEDURE 134 3.3.2 FINAL MODEL AND VALIDATION 160 3.4 PHYSICAL
MODELING AND DIMENSIONAI ANALYSIS 165 3.4.1 DIMENSIONAI ANALYSIS 166
3.4.2 MODELING AND SIMILITUDE 176 3.4.3 OVERALL PHYSICAL MODEL 180 3.5
CURVE FITTING 180 3.5.1 EXACTFIT 181 3.5.2 BEST FIT 183 3.6 SUMMARY 194
REFERENCES 196 PROBLEMS 197 CHAPTER 4 NUMERICAL MODELING AND SIMULATION
207 4.1 NUMERICAL MODELING 208 4.1.1 GENERAL FEATURES 208 4.1.2
DEVELOPMENT OFA NUMERICAL MODEL 210 4.1.3 AVAILABLE SOFTWARE 211 4.2
SOLUTION PROCEDURES 212 4.2.1 LINEAR ALGEBRAIC SYSTEMS 213 4.2.2
NONLINEAR ALGEBRAIC SYSTEMS 220 4.2.3 ORDINARY DIFFERENTIAL EQUATIONS
227 4.2.4 PARTIAL DIFFERENTIAL EQUATIONS 238 4.3 NUMERICAL MODEL FOR A
SYSTEM 247 4.3.1 MODELING OF INDIVIDUAL COMPONENTS 248 4.3.2 MERGING OF
DIFFERENT MODELS 251 4.3.3 ACCURACY AND VALIDATION 252 4.4 SYSTEM
SIMULATION 253 4.4.1 IMPORTANCE OF SIMULATION 254 4.4.2 DIFFERENT
CLASSES 256 4.4.3 FLOW OF INFORMATION 259 4.5 METHODS FOR NUMERICAL
SIMULATION 264 4.5.1 STEADY LUMPED SYSTEMS 264 4.5.2 DYNAMIC SIMULATION
OF LUMPED SYSTEMS 272 4.5.3 DISTRIBUTED SYSTEMS 278 4.5.4 SIMULATION OF
LARGE SYSTEMS 282 4.5.5 NUMERICAL SIMULATION VERSUS REAL SYSTEM 283 4.6
SUMMARY 284 REFERENCES 285 PROBLEMS 286 CHAPTER 5 ACCEPTABLE DESIGN OF A
THERMAL SYSTEM: A SYNTHESIS OF DIFFERENT DESIGN STEPS 299 5.1
INTRODUCTION 299 5.2 INITIAL DESIGN 300 5.3 DESIGN STRATEGIES 309 5.3.1
COMMONLY USED DESIGN APPROACH 309 5.3.2 OTHER STRATEGIES 309 5.3.3
ITERATIVE REDESIGN PROCEDURE 317 5.4 DESIGN OF SYSTEMS FROM DIFFERENT
APPLICATION AREAS 322 5.4.1 MANUFACTURING PROCESSES 323 5.4.2 COOLING OF
ELECTRONIC EQUIPMENT 329 5.4.3 ENVIRONMENTAL SYSTEMS 336 5.4.4 HEAT
TRANSFER EQUIPMENT 342 5.4.5 FLUID FLOW SYSTEMS 350 5.4.6 OTHER AREAS
361 5.4.7 DESIGN OF COMPONENTS VERSUS DESIGN OF SYSTEMS 361 5.5
ADDITIONAI CONSIDERATIONS FOR LARGE PRACTICAL SYSTEMS 362 5.6 SUMMARY
373 REFERENCES 374 PROBLEMS 375 CHAPTER 6 ECONOMIC CONSIDERATIONS 383
6.1 INTRODUCTION 383 6.2 CALCULATION OF INTEREST 385 6.2.1 SIMPLE
INTEREST 385 6.2.2 COMPOUND INTEREST 385 6.2.3 CONTINUOUS COMPOUNDING
387 6.2.4 EFFECTIVE INTEREST RATE 388 6.3 WORTH OF MONEY AS A FUNCTION
OF TIME 390 6.3.1 PRESENT WORTH 390 6.3.2 FUTURE WORTH 391 6.3.3
INFLATION 393 6.4 SERIES OF PAYMENTS 396 6.4.1 FUTURE WORTH OF UNIFORM
SERIES OF AMOUNTS 396 6.4.2 PRESENT WORTH OF UNIFORM SERIES OF AMOUNTS
397 6.4.3 CONTINUOUS COMPOUNDING IN A SERIES OF AMOUNTS 399 6.4.4
CHANGING AMOUNT IN SERIES OF PAYMENTS 400 6.4.5 SHIFTINTIME 402 6.4.6
DIFFERENT FREQUENCIES 403 6.4.7 CHANGES IN SCHEDULE 403 6.5 RAISING
CAPITAL 405 6.5.1 BONDS 406 6.5.2 STOCKS 408 6.6 TAXES 408 6.6.1
INCLUSION OF TAXES 409 6.6.2 DEPRECIATION 410 6.7 ECONOMIC FACTOR IN
DESIGN 413 6.7.1 COST COMPARISON 413 6.7.2 RATE OF RETURN 417 6.8
APPLICATION TO THERMAL SYSTEMS 419 6.9 SUMMARY 421 REFERENCES 421
PROBLEMS 422 CHAPTER 7 PROBLEM FORMULATION FOR OPTIMIZATION 429 7.1
INTRODUCTION 429 7.1.1 OPTIMIZATION IN DESIGN 429 7.1.2 FINAL OPTIMIZED
DESIGN 431 7.2 BASIC CONCEPTS 432 7.2.1 OBJECTIVE FUNCTION 432 7.2.2
CONSTRAINTS 434 7.2.3 OPERATING CONDITIONS VERSUS HARDWARE 437 7.2.4
MATHEMATICAL FORMULATION 438 7.3 OPTIMIZATION METHODS 440 7.3.1 CALCULUS
METHODS 440 7.3.2 SEARCH METHODS 441 7.3.3 LINEAR AND DYNAMIC
PROGRAMMING 442 7.3.4 GEOMETRIE PROGRAMMING 444 7.3.5 OTHER METHODS 444
7.4 OPTIMIZATION OF THERMAL SYSTEMS 447 7.4.1 IMPORTANT CONSIDERATIONS
447 7.4.2 DIFFERENT APPROACHES 448 7.4.3 DIFFERENT TYPES OF THERMAL
SYSTEMS 449 7.4.4 EXAMPLES 451 7.4.5 CONSIDERATION OF THE SECOND LAW OF
THERMODYNAMICS 455 7.5 PRACTICAL ASPECTS IN OPTIMAL DESIGN 457 7.5.1
CHOICE OF VARIABLES FOR OPTIMIZATION 457 7.5.2 SENSITIVITY ANALYSIS 459
7.5.3 DEPENDENCE ON OBJECTIVE FUNCTION: TRADE-OFFS 461 7.5.4
MULTI-OBJECTIVE OPTIMIZATION 462 7.5.5 PART OF OVERALL DESIGN STRATEGY
464 7.5.6 CHANGE OF CONCEPT OR MODEL 465 7.6 SUMMARY 466 REFERENCES 467
PROBLEMS 468 CHAPTER 8 LAGRANGE MULTIPLIERS 473 8.1 INTRODUCTION TO
CALCULUS METHODS 473 8.2 THE LAGRANGE MULTIPLIER METHOD 475 8.2.1 BASIC
APPROACH 475 8.2.2 PHYSICAL INTERPRETATION 477 8.2.3 SIGNIFICANCE OF THE
MULTIPLIERS 485 8.3 OPTIMIZATION OF UNCONSTRAINED PROBLEMS 486 8.3.1 USE
OF GRADIENTS FOR OPTIMIZATION 487 8.3.2 DETERMINATION OF MINIMUM OR
MAXIMUM 487 8.3.3 CONVERSION OF CONSTRAINED TO UNCONSTRAINED PROBLEM 489
8.4 OPTIMIZATION OF CONSTRAINED PROBLEMS 491 8.5 APPLICABILITY TO
THERMAL SYSTEMS 494 8.5.1 USEOFCURVEFITTING 494 8.5.2 EXAMPLES 495 8.5.3
INEQUALITY CONSTRAINTS 499 8.5.4 SOME PRACTICAL CONSIDERATIONS 500 8.5.5
COMPUTATIONAL APPROACH 501 8.6 SUMMARY 503 REFERENCES 504 PROBLEMS 505
CHAPTER 9 SEARCH METHODS 511 9.1 BASIC CONSIDERATIONS 511 9.1.1
IMPORTANCE OF SEARCH METHODS 512 9.1.2 TYPES OF APPROACHES 513 9.1.3
APPLICATION TO THERMAL SYSTEMS 514 9.2 SINGLE-VARIABLE PROBLEM 515 9.2.1
UNIFORM EXHAUSTIVE SEARCH 517 9.2.2 DICHOTOMOUS SEARCH 519 9.2.3
FIBONACCI SEARCH 521 9.2.4 GOLDEN SECTION AND OTHER SEARCH METHODS 523
9.2.5 COMPARISON OF DIFFERENT ELIMINATION METHODS 524 9.3 UNCONSTRAINED
SEARCH WITH MULTIPLE VARIABLES 527 9.3.1 LATTICE SEARCH 529 9.3.2
UNIVARIATE SEARCH 530 9.3.3 STEEPEST ASCENT/DESCENT METHOD 532 9.4
MULTIVARIABLE CONSTRAINED OPTIMIZATION 537 9.4.1 PENALTY FUNCTION METHOD
537 9.4.2 SEARCH ALONG A CONSTRAINT 542 9.5 EXAMPLES OF THERMAL SYSTEMS
547 9.6 SUMMARY 551 REFERENCES 553 PROBLEMS 554 CHAPTER 10 GEOMETRIE,
LINEAR, AND DYNAMIC PROGRAMMING AND OTHER METHODS FOR OPTIMIZATION 559
10.1 GEOMETRIE PROGRAMMING 559 10.1.1 APPLICABILITY 560 10.1.2
UNCONSTRAINED OPTIMIZATION 561 10.1.3 MATHEMATICAL PROOF 570 10.1.4
CONSTRAINED OPTIMIZATION 573 10.1.5 NONZERO DEGREE OF DIFFICULTY 578
10.2 LINEAR PROGRAMMING 579 10.3 DYNAMIC PROGRAMMING 588 10.4 OTHER
METHODS 590 10.5 SUMMARY 591 REFERENCES 592 PROBLEMS 593 CHAPTER 11
KNOWLEDGE-BASED DESIGN AND ADDITIONAL CONSIDERATIONS 599 11.1
KNOWLEDGE-BASED SYSTEMS 599 11.1.1 INTRODUCTION 600 11.1.2 BASIE
COMPONENTS 602 11.1.3 EXPERT KNOWLEDGE 607 11.1.4 DESIGN METHODOLOGY 609
11.1.5 APPLICATION TO THERMAL SYSTEMS 610 11.2 ADDITIONAL CONSTRAINTS
621 11.3 PROFESSIONAL ETHICS 623 11.4 SOURCES OF INFORMATION 625 11.5 AN
OVERVIEW OF DESIGN OF THERMAL SYSTEMS 628 11.6 SUMMARY 631 REFERENCES
632 PROBLEMS 633 DESIGN PROJECTS 635 APPENDIX A COMPUTER PROGRAMS 639
APPENDIX B MATERIAL PROPERTIES 659 APPENDIX C INTEREST TABLES 679
APPENDIX D HEAT TRANSFER CORRELATIONS 687 INDEX 697
|
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callnumber-subject | TJ - Mechanical Engineering and Machinery |
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dewey-sort | 3621.402 |
dewey-tens | 620 - Engineering and allied operations |
discipline | Energietechnik, Energiewirtschaft Physik Technik Energietechnik Maschinenbau |
edition | 2. ed. |
format | Book |
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indexdate | 2024-07-09T21:37:49Z |
institution | BVB |
isbn | 0849337534 |
language | English |
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series | Mechanical engineering |
series2 | Mechanical engineering |
spelling | Jaluria, Yogesh Verfasser aut Design and optimization of thermal systems Yogesh Jaluria 2. ed. Boca Raton, Fla. [u.a.] CRC Press 2008 723 S. Ill., graph. Darst. txt rdacontent n rdamedia nc rdacarrier Mechanical engineering 209 Engineering design Heat engineering Wärme (DE-588)4064171-5 gnd rswk-swf Technisches System (DE-588)4126276-1 gnd rswk-swf Entwurf (DE-588)4121208-3 gnd rswk-swf Optimierung (DE-588)4043664-0 gnd rswk-swf Wärmetechnik (DE-588)4064206-9 gnd rswk-swf Wärmetechnik (DE-588)4064206-9 s Entwurf (DE-588)4121208-3 s Optimierung (DE-588)4043664-0 s DE-604 Technisches System (DE-588)4126276-1 s Wärme (DE-588)4064171-5 s Mechanical engineering 209 (DE-604)BV001900049 209 http://www.gbv.de/dms/ilmenau/toc/526025638.PDF Inhaltsverzeichnis http://catdir.loc.gov/catdir/enhancements/fy0809/2007027214-d.html Beschreibung für Leser GBV Datenaustausch application/pdf http://bvbr.bib-bvb.de:8991/F?func=service&doc_library=BVB01&local_base=BVB01&doc_number=017484695&sequence=000001&line_number=0001&func_code=DB_RECORDS&service_type=MEDIA Inhaltsverzeichnis |
spellingShingle | Jaluria, Yogesh Design and optimization of thermal systems Mechanical engineering Engineering design Heat engineering Wärme (DE-588)4064171-5 gnd Technisches System (DE-588)4126276-1 gnd Entwurf (DE-588)4121208-3 gnd Optimierung (DE-588)4043664-0 gnd Wärmetechnik (DE-588)4064206-9 gnd |
subject_GND | (DE-588)4064171-5 (DE-588)4126276-1 (DE-588)4121208-3 (DE-588)4043664-0 (DE-588)4064206-9 |
title | Design and optimization of thermal systems |
title_auth | Design and optimization of thermal systems |
title_exact_search | Design and optimization of thermal systems |
title_full | Design and optimization of thermal systems Yogesh Jaluria |
title_fullStr | Design and optimization of thermal systems Yogesh Jaluria |
title_full_unstemmed | Design and optimization of thermal systems Yogesh Jaluria |
title_short | Design and optimization of thermal systems |
title_sort | design and optimization of thermal systems |
topic | Engineering design Heat engineering Wärme (DE-588)4064171-5 gnd Technisches System (DE-588)4126276-1 gnd Entwurf (DE-588)4121208-3 gnd Optimierung (DE-588)4043664-0 gnd Wärmetechnik (DE-588)4064206-9 gnd |
topic_facet | Engineering design Heat engineering Wärme Technisches System Entwurf Optimierung Wärmetechnik |
url | http://www.gbv.de/dms/ilmenau/toc/526025638.PDF http://catdir.loc.gov/catdir/enhancements/fy0809/2007027214-d.html http://bvbr.bib-bvb.de:8991/F?func=service&doc_library=BVB01&local_base=BVB01&doc_number=017484695&sequence=000001&line_number=0001&func_code=DB_RECORDS&service_type=MEDIA |
volume_link | (DE-604)BV001900049 |
work_keys_str_mv | AT jaluriayogesh designandoptimizationofthermalsystems |
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