Preface to the Third Edition |
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xi | |
Preface to the Second Edition |
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xiii | |
Acknowledgments |
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xvii | |
Nomenclature |
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xix | |
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PART I Engine Cycle Design |
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Chapter 1 The Design Process |
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1 | (22) |
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1 | (1) |
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1.2 Designing is Different |
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2 | (1) |
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2 | (2) |
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4 | (1) |
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1.5 The Engine Design Process Exists |
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5 | (1) |
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5 | (2) |
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7 | (1) |
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8 | (1) |
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1.9 Compressible Flow Relationships |
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8 | (6) |
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14 | (3) |
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1.11 Example Request for Proposal |
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17 | (4) |
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21 | (2) |
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22 | (1) |
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Chapter 2 Aircraft/Engine System Constraint Analysis |
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23 | (44) |
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23 | (2) |
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25 | (17) |
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2.3 Preliminary Estimates for Constraint Analysis |
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42 | (7) |
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2.4 Example Constraint Analysis |
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49 | (18) |
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65 | (2) |
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Chapter 3 Aircraft/Engine System Mission Analysis |
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67 | (50) |
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67 | (2) |
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69 | (18) |
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3.3 Aircraft Weight and Fuel Consumption Estimation |
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87 | (4) |
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3.4 Example Mission Analysis |
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91 | (26) |
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116 | (1) |
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Chapter 4 Engine Selection: Parametric Cycle Analysis |
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117 | (46) |
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117 | (2) |
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119 | (23) |
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4.3 Finding Promising Solutions |
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142 | (8) |
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4.4 Example Parametric Cycle Analysis |
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150 | (13) |
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162 | (1) |
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Chapter 5 Engine Selection: Engine Performance Analysis |
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163 | (58) |
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163 | (1) |
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5.2 Design Tools: Modified Specific Heat (MSH) Gas Model |
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164 | (22) |
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186 | (11) |
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5.4 Design Steps Using AEDsys Programs |
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197 | (4) |
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5.5 Example Engine Selection: AAF Performance Cycle Analysis |
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201 | (20) |
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218 | (3) |
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Chapter 6 Sizing the Engine: Installed Performance |
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221 | (52) |
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221 | (3) |
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224 | (18) |
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6.3 AEDsys Software Implementation of Installation Losses |
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242 | (2) |
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6.4 Example Installed Performance and Final Engine Sizing |
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244 | (15) |
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6.5 AAF Engine Performance |
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259 | (14) |
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271 | (2) |
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PART II Engine Component Design |
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Chapter 7 Engine Component Design: Global and Interface Quantities |
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273 | (24) |
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273 | (1) |
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274 | (6) |
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7.3 Engine Systems Design |
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280 | (4) |
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7.4 Example Engine Global and Interface Quantities |
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284 | (13) |
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296 | (1) |
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Chapter 8 Engine Component Design: Turbomachinery |
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297 | (90) |
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297 | (1) |
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298 | (59) |
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8.3 Example AAF Engine Component Design: Turbomachinery |
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357 | (30) |
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384 | (3) |
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Chapter 9 Engine Component Design: Combustion Systems |
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387 | (114) |
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387 | (7) |
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394 | (78) |
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9.3 Example AAF Engine Component Design: Combustion Systems |
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472 | (29) |
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499 | (2) |
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Chapter 10 Engine Component Design: Inlets and Exhaust Nozzles |
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501 | (112) |
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501 | (1) |
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501 | (57) |
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558 | (28) |
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10.4 Example Engine Component Design: Inlet and Exhaust Nozzle |
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586 | (27) |
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611 | (2) |
Appendix A Units and Conversion Factors |
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613 | (2) |
Appendix B Altitude Tables |
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615 | (8) |
Appendix C Gas Turbine Engine Data: Uninstalled Performance |
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623 | (10) |
Appendix D Engine Performance: Theta Break and Throttle Ratio |
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633 | (20) |
Appendix E Aircraft Engine Efficiency and Thrust Measures |
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653 | (12) |
Appendix F Mixed Flow Turbofan Engine Parametric Cycle Analysis Equations |
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665 | (6) |
Appendix G Mixed Flow Turbofan Engine Performance Cycle Analysis Equations |
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671 | (8) |
Appendix H High Bypass Ratio Turbofan Engine Cycle Analysis |
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679 | (26) |
Appendix I Turboprop Turboshaft Engine |
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705 | (28) |
Appendix J Propeller Design Tools |
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733 | (16) |
Appendix K Example Material Properties |
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749 | (14) |
Appendix L Turbine Engine Life Management |
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763 | (32) |
Appendix M Engine Controls |
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795 | (18) |
Appendix N Global Range Airlifter (GRA) RFP |
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813 | (2) |
Index |
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815 | (18) |
About the Authors |
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833 | (2) |
Supporting Materials |
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835 | |