Combustion Process in Propulsion ,, 1 Editon

 
9789380931609: Combustion Process in Propulsion ,, 1 Editon

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ROY GABRIEL D.
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ROY GABRIEL D.
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ROY GABRIEL D.
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Book Description pb. Book Condition: Brand New. Paperback Softcover Books ,International Edition. Cover Image & ISBN may be different from US edition but contents Same as US Edition. Printing in English language.No CD And Access Code. We Do not Ship APO AND PO BOX. Quick delivery by USPS/UPS/DHL/FEDEX/ARAMEX ,Customer satisfaction guaranteed. We may ship the books from Asian regions for inventory purpose. Bookseller Inventory # RICKKHH1881

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Book Description Elsevier, 2011. Hardcover. Book Condition: New. 5th or later edition. Chemical propulsion comprises the science and technology of using chemical reactions of any kind to create thrust and thereby propel a vehicle or object to a desired acceleration and speed. This book focuses on recent advances in the design of very highly efficient, low-pollution-emitting propulsion systems, as well as advances in testing, diagnostics and analysis. It offers unique coverage of Pulse Detonation Engines, which add tremendous power to jet thrust by combining high pressure with ignition of the air/fuel mixture. Readers will learn about the advances in the reduction of jet noise and toxic fuel emissions?something that is being heavily regulated by relevant government agencies. Contents:- Chapter 1:Simultaneous Velocity and Temperature Field Measurements of a Jet Flame L. Lourenco and E. Koc-Alkislar 1.1 Introduction 1.2 Test Arrangement and Results 1.3 Concluding Remarks Acknowledgments Chapter 2: Infrared Absorption Tomography for Active Combustion Control F. C. Gouldin and J. L. Edwards 2.1 Introduction 2.2 Absorption Tomography 2.3 Infrared Absorption and Flow Facility 2.4 Proper Orthogonal Decomposition 2.5 Results 2.6 Concluding Remarks References Chapter 3: Deterministic and Probabilistic Approaches for Prediction of Two-Phase Turbulent Flow in Liquid-Fuel Combustors G. B. Jacobs, R.V.R. Pandya, B. Shotorban, Z. Gao, and F. Mashayek 3.1 Introduction 3.2 Direct Numerical Simulation of Countercurrent Shear Flow 3.3 Probability Density Function Modeling 3.4 Concluding Remarks Acknowledgments References Chapter 4: Large-Scale Simulations of Turbulent Combustion and Propulsion Systems A. Afshari and F. A. Jaberi 4.1 Introduction 4.2 Theoretical/Computational Approach 4.3 Results and Discussion Acknowledgments References Chapter 5: Direct Simulation of Primary Atomization D. P. Schmidt 5.1 Introduction 5.2 Past Work 5.3 Objectives 5.4 Methodology 5.5 Tasks Acknowledgments References Chapter 6: Extinction and Relight in Opposed Premixed Flames E. Korusoy and J.H. Whitelaw 6.1 Introduction 6.2 Experimental Setup 6.3 Results 6.4 Concluding Remarks Acknowledgments References Chapter 7: In uence of Markstein Number on the Parametric Acoustic Instability N. J. Killingsworth and R. C. Aldredge 7.1 Introduction 7.2 Experimental Procedure 7.3 Results 7.4 Concluding Remarks Acknowledgments References Chapter 8: Prevaporized JP-10 Combustion and the Enhanced Production of Turbulence Using Countercurrent Shear D. J. Forliti, A.A. Behrens, B.A. Tang, and P. J. Strykowski 8.1 Introduction 8.2 Prevaporized JP-10 Combustion 8.3 Combustion Facilities 8.4 Results and Discussion: Combustion Studies 8.5 Enhanced Production of Turbulence 8.6 Shear Layer Facility 8.7 Results and Discussion: Shear Layer Studies 8.8 Concluding Remarks Acknowledgments References Chapter 9: Mixing Control for Jet Flows M. Krsti 9.1 Introduction 9.2 Jet Flow Model and Simulation Techniques 9.3 Simulation of Open-Loop Jet Flow 9.4 Destabilization and Mixing of Massless Particles 9.5 Mixing of Particles with Mass 9.6 Mixing of Passive Scalar Acknowledgments Chapter 10: Characteristics and Control of a Multiswirl Spray Combustor E. J. Gutmark, G. Li, and S. Abraham 10.1 Introduction 10.2 Experimental Setup 10.3 Results and Discussions 10.4 Particle Image Velocimetry Results 10.5 Concluding Remarks Acknowledgments References Chapter 11: Swirling Jet Systems for Combustion Control F. F. Grinstein and T. R. Young 11.1 Introduction 11.2 Numerical Simulation Model 11.3 Swirl Initial Conditions 11.4 Results and Discussion 11.5 Concluding Remarks Acknowledgments References Chapter 12: Control of Flame Structure in Spray Combustion A. K. Gupta, B. Habibzadeh, S. Archer, and M. Linck 12.1 Introduction 12.2 Experimental Facility 12.3 Results 12.4 Concluding Remarks Acknowledgments References Chapter 13: Porous Media Burners for Clean E Printed Pages: 480. Bookseller Inventory # 40567

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Book Description Elsevier, 2011. Hardcover. Book Condition: New. 5th or later edition. Chemical propulsion comprises the science and technology of using chemical reactions of any kind to create thrust and thereby propel a vehicle or object to a desired acceleration and speed. This book focuses on recent advances in the design of very highly efficient, low-pollution-emitting propulsion systems, as well as advances in testing, diagnostics and analysis. It offers unique coverage of Pulse Detonation Engines, which add tremendous power to jet thrust by combining high pressure with ignition of the air/fuel mixture. Readers will learn about the advances in the reduction of jet noise and toxic fuel emissionsâ"something that is being heavily regulated by relevant government agencies. Contents:- Chapter 1:Simultaneous Velocity and Temperature Field Measurements of a Jet Flame L. Lourenco and E. Koc-Alkislar 1.1 Introduction 1.2 Test Arrangement and Results 1.3 Concluding Remarks Acknowledgments Chapter 2: Infrared Absorption Tomography for Active Combustion Control F. C. Gouldin and J. L. Edwards 2.1 Introduction 2.2 Absorption Tomography 2.3 Infrared Absorption and Flow Facility 2.4 Proper Orthogonal Decomposition 2.5 Results 2.6 Concluding Remarks References Chapter 3: Deterministic and Probabilistic Approaches for Prediction of Two-Phase Turbulent Flow in Liquid-Fuel Combustors G. B. Jacobs, R.V.R. Pandya, B. Shotorban, Z. Gao, and F. Mashayek 3.1 Introduction 3.2 Direct Numerical Simulation of Countercurrent Shear Flow 3.3 Probability Density Function Modeling 3.4 Concluding Remarks Acknowledgments References Chapter 4: Large-Scale Simulations of Turbulent Combustion and Propulsion Systems A. Afshari and F. A. Jaberi 4.1 Introduction 4.2 Theoretical/Computational Approach 4.3 Results and Discussion Acknowledgments References Chapter 5: Direct Simulation of Primary Atomization D. P. Schmidt 5.1 Introduction 5.2 Past Work 5.3 Objectives 5.4 Methodology 5.5 Tasks Acknowledgments References Chapter 6: Extinction and Relight in Opposed Premixed Flames E. Korusoy and J.H. Whitelaw 6.1 Introduction 6.2 Experimental Setup 6.3 Results 6.4 Concluding Remarks Acknowledgments References Chapter 7: In uence of Markstein Number on the Parametric Acoustic Instability N. J. Killingsworth and R. C. Aldredge 7.1 Introduction 7.2 Experimental Procedure 7.3 Results 7.4 Concluding Remarks Acknowledgments References Chapter 8: Prevaporized JP-10 Combustion and the Enhanced Production of Turbulence Using Countercurrent Shear D. J. Forliti, A.A. Behrens, B.A. Tang, and P. J. Strykowski 8.1 Introduction 8.2 Prevaporized JP-10 Combustion 8.3 Combustion Facilities 8.4 Results and Discussion: Combustion Studies 8.5 Enhanced Production of Turbulence 8.6 Shear Layer Facility 8.7 Results and Discussion: Shear Layer Studies 8.8 Concluding Remarks Acknowledgments References Chapter 9: Mixing Control for Jet Flows M. Krsti 9.1 Introduction 9.2 Jet Flow Model and Simulation Techniques 9.3 Simulation of Open-Loop Jet Flow 9.4 Destabilization and Mixing of Massless Particles 9.5 Mixing of Particles with Mass 9.6 Mixing of Passive Scalar Acknowledgments Chapter 10: Characteristics and Control of a Multiswirl Spray Combustor E. J. Gutmark, G. Li, and S. Abraham 10.1 Introduction 10.2 Experimental Setup 10.3 Results and Discussions 10.4 Particle Image Velocimetry Results 10.5 Concluding Remarks Acknowledgments References Chapter 11: Swirling Jet Systems for Combustion Control F. F. Grinstein and T. R. Young 11.1 Introduction 11.2 Numerical Simulation Model 11.3 Swirl Initial Conditions 11.4 Results and Discussion 11.5 Concluding Remarks Acknowledgments References Chapter 12: Control of Flame Structure in Spray Combustion A. K. Gupta, B. Habibzadeh, S. Archer, and M. Linck 12.1 Introduction 12.2 Experimental Facility 12.3 Results 12.4 Concluding Remarks Acknowledgments References Chapter 13: Porous Media Burners for Clean E Printed Pages: 480. Bookseller Inventory # 40567

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