Impact of fuel supply impedance and fuel staging on gas turbine combustion stability

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1. Verfasser: Huber, Andreas (VerfasserIn)
Format: Buch
Sprache:English
Veröffentlicht: München Verl. Dr. Hut 2009
Ausgabe:1. Aufl.
Schriftenreihe:Energietechnik
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Datensatz im Suchindex

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adam_text CONTENTS 1 INTRODUCTION 1 1.1 TECHNOLOGY BACKGROUND: ELECTRICAL ENERGY, EFFICIENCY AND ENVI- RONMENTAL PROTECTION 1 1.2 THERMO-ACOUSTIC INSTABILITIES 3 1.3 CONTROL OF THERMO-ACOUSTIC INSTABILITIES 7 1.4 INTENTION AND STRUCTURE OF THIS WORK 10 1.5 TERMINOLOGY AND SPECIFICATION OF THE PRESENT WORK 12 2 NUMERICAL ANALYSIS OF THERMO-ACOUSTIC INSTABILITIES 17 2.1 OVERVIEW OF METHODS FOR THERMO-ACOUSTIC STABILITY ANALYSIS ... 17 2.2 FLAME DYNAMICS OF A PRACTICAL PREMIXED COMBUSTION SYSTEM . . 24 2.2.1 FLAME RESPONSE TO VELOCITY FLUCTUATIONS 25 2.2.2 FLAME RESPONSE TO EQUIVALENCE RATIO FLUCTUATIONS 28 2.2.3 MISO MODEL STRUCTURE FOR PRACTICAL PREMIXED FLAMES ... 30 2.3 IDENTIFICATION OF FLAME TRANSFER FUNCTIONS 33 2.3.1 OVERVIEW OF METHODS TO DETERMINE FLAME TRANSFER FUNCTIONS 34 2.3.2 IDENTIFICATION STRATEGY 37 3 ACOUSTICS 43 3.1 BASIC ACOUSTIC EQUATIONS 43 3.2 LINEAR ACOUSTIC EQUATIONS 46 3.2.1 SOUND PROPAGATION IN A QUIESCENT MEDIUM 47 3.2.2 SOUND PROPAGATION IN A MOVING MEDIUM 50 3.3 ACOUSTIC NETWORK MODEL 51 3.3.1 MATRICES AND FUNCTIONS OF ACOUSTIC ELEMENTS 53 3.3.1.1 SIMPLE DUCTS OR TUBES 55 3.3.1.2 COMPACT ELEMENTS 55 VUE BIBLIOGRAFISCHE INFORMATIONEN HTTP://D-NB.INFO/999018698 DIGITALISIERT DURCH CONTENTS 3.3.1.3 BOUNDARY CONDITIONS 62 3.3.2 NUMERICAL SOLUTIONS OF THE ACOUSTIC NETWORK MODEL. ... 64 4 MODELING OF TURBULENT REACTIVE FLOWS USING CFD 69 4.1 THEORY AND NUMERICAL MODELING OF TURBULENCE 69 4.1.1 BASIC EQUATIONS OF TURBULENT FLOWS 69 4.1.2 MODELING TURBULENCE WITH RANS 71 4.2 THEORETICAL AND NUMERICAL COMBUSTION 74 4.2.1 COMBUSTION THEORY 74 4.2.2 PRACTICAL PREMIXED COMBUSTION MODEL 77 5 SYSTEM IDENTIFICATION 81 5.1 MODEL STRUCTURES AND RESPONSE FILTERS 82 5.2 SYSTEM IDENTIFICATION 85 5.3 EXCITATION SIGNALS 86 5.4 A POSTERIORI VALIDATION OF IDENTIFICATION RESULTS 89 5.5 PROOF OF CONCEPT FOR THE IDENTIFICATION OF THE MISO FLAME MODEL 92 5.5.1 IMPACT OF MODEL STRUCTURE ON IDENTIFICATION RESULTS .... 95 5.5.2 IMPACT OF EXCITATION SIGNAL TYPES IN THE PRESENCE OF NOISE 96 5.5.3 IMPACT OF THE MEASURED TIME SERIES LENGTH 102 6 NUMERICAL SIMULATION 105 6.1 PRACTICAL PREMIXED COMBUSTOR CONFIGURATION 105 6.1.1 DESIGN OF THE FUEL INJECTOR 108 6.1.2 NUMERICAL SETUP OF THE COMBUSTION SYSTEM 110 6.2 STEADY-STATE SIMULATIONS OFTHE COMBUSTOR CONFIGURATIONS .... 115 6.3 IDENTIFICTION OFTHE FLAME TRANSFER FUNCTIONS 119 6.3.1 COMBUSTOR CONFIGURATION WITH TWO FUEL INJECTION STAGES . 120 6.3.2 COMBUSTOR CONFIGURATION WITH THREE FUEL INJECTION STAGES 124 6.3.3 ANALYSIS AND INTERPRETATION OF IDENTIFICATION RESULTS .... 128 6. CONTENTS 7.2.2 IMPACT OF THE FUEL INJECTION NOZZLE LOCATION 158 7.2.3 IMPACT OF FUEL STAGING 162 8 SUMMARY AND CONCLUSIONS 167 A APPENDIX 186 A. 1 TRANSFORMATION OF PU, F G TRANSFER MATRIX AND SCATTERING (SR) MA- TRIX NOTATION 186 A.2 ESTIMATION OF THE OPTIMUM NUMBER OF CIRCUMFERENTIAL INJECTION HOLES 187 A.3 MAIN FLOW PARAMETERS AND STRUCTURE OF THE ACOUSTIC NETWORK MODELS 187
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author Huber, Andreas
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dewey-tens 620 - Engineering and allied operations
discipline Maschinenbau / Maschinenwesen
Energietechnik
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language English
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physical XIV, 190 S. 210 mm x 148 mm, 314 gr.
publishDate 2009
publishDateSearch 2009
publishDateSort 2009
publisher Verl. Dr. Hut
record_format marc
series2 Energietechnik
spellingShingle Huber, Andreas
Impact of fuel supply impedance and fuel staging on gas turbine combustion stability
Numerische Strömungssimulation (DE-588)4690080-9 gnd
Mageres Gemisch (DE-588)4114484-3 gnd
Vormischflamme (DE-588)4188687-2 gnd
Thermoakustischer Effekt (DE-588)4450109-2 gnd
Gasturbine (DE-588)4019416-4 gnd
Akustische Impedanz (DE-588)4141776-8 gnd
subject_GND (DE-588)4690080-9
(DE-588)4114484-3
(DE-588)4188687-2
(DE-588)4450109-2
(DE-588)4019416-4
(DE-588)4141776-8
(DE-588)4113937-9
title Impact of fuel supply impedance and fuel staging on gas turbine combustion stability
title_auth Impact of fuel supply impedance and fuel staging on gas turbine combustion stability
title_exact_search Impact of fuel supply impedance and fuel staging on gas turbine combustion stability
title_full Impact of fuel supply impedance and fuel staging on gas turbine combustion stability Andreas Huber
title_fullStr Impact of fuel supply impedance and fuel staging on gas turbine combustion stability Andreas Huber
title_full_unstemmed Impact of fuel supply impedance and fuel staging on gas turbine combustion stability Andreas Huber
title_short Impact of fuel supply impedance and fuel staging on gas turbine combustion stability
title_sort impact of fuel supply impedance and fuel staging on gas turbine combustion stability
topic Numerische Strömungssimulation (DE-588)4690080-9 gnd
Mageres Gemisch (DE-588)4114484-3 gnd
Vormischflamme (DE-588)4188687-2 gnd
Thermoakustischer Effekt (DE-588)4450109-2 gnd
Gasturbine (DE-588)4019416-4 gnd
Akustische Impedanz (DE-588)4141776-8 gnd
topic_facet Numerische Strömungssimulation
Mageres Gemisch
Vormischflamme
Thermoakustischer Effekt
Gasturbine
Akustische Impedanz
Hochschulschrift
url http://bvbr.bib-bvb.de:8991/F?func=service&doc_library=BVB01&local_base=BVB01&doc_number=018800586&sequence=000001&line_number=0001&func_code=DB_RECORDS&service_type=MEDIA
work_keys_str_mv AT huberandreas impactoffuelsupplyimpedanceandfuelstagingongasturbinecombustionstability