Stability and Control of Conventional and Unconventional Aerospace Vehicle Configurations : A Generic Approach from Subsonic to Hypersonic Speeds / by Bernd Chudoba.
By: Chudoba, Bernd, autor
Series: (Springer Aerospace Technology, 1869-1730); (Engineering (Springer-11647)).Publisher: Cham : Springer International Publishing, 2019Edition: 1st ed. 2019.Description: 1 recurso en línea (XXXIV, 392 páginas).ISBN: 9783030168568.Subject: Aviones -- Estabilidad
| Item type | Current library | Collection | Call number | Status | Date due | Barcode | Item holds | |
|---|---|---|---|---|---|---|---|---|
LIBRO-E NO PRÉSTAMO
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Madrid Digital Acceso Electrónico (UEM) | Ciencias e Ingeniería | TL574 .S7 2019 EB (Browse shelf(Opens below)) | Acceso electrónico | eBook04112067 |
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| TL574 .N443 2018 EB Blast Waves | TL574.S4 Introduction to Simple Shock Waves in Air : With Numerical Solutions Using Artificial Viscosity | TL574.S4 E974 2016 EB Experimental Methods of Shock Wave Research | TL574 .S7 2019 EB Stability and Control of Conventional and Unconventional Aerospace Vehicle Configurations : A Generic Approach from Subsonic to Hypersonic Speeds | TL574 .T8 2019 EB High-performance computing of big data for turbulence and combustion | TL574.U5 G538 2016 EB Fundamentals of Modern Unsteady Aerodynamics | TL586 2015 EB INS/CNS/GNSS Integrated Navigation Technology |
Introduction and Objectives -- Generic Aircraft Design - Knowledge Utilization -- Assessment of the Aircraft Conceptual Design Process -- Generic Characterisation of Aircraft - Parameter Reduction Process -- 'AeroMech' - Conception of a Generic Stability and Control Methodology -- AeroMech Feasibility -- Conclusions -- Appendices.
This book introduces a stability and control methodology named AeroMech, capable of sizing the primary control effectors of fixed wing subsonic to hypersonic designs of conventional and unconventional configuration layout. Control power demands are harmonized with static-, dynamic-, and maneuver stability requirements, while taking the six-degree-of-freedom trim state into account. The stability and control analysis solves the static- and dynamic equations of motion combined with non-linear vortex lattice aerodynamics for analysis. The true complexity of addressing subsonic to hypersonic vehicle stability and control during the conceptual design phase is hidden in the objective to develop a generic (vehicle configuration independent) methodology concept. The inclusion of geometrically asymmetric aircraft layouts, in addition to the reasonably well-known symmetric aircraft types, contributes significantly to the overall technical complexity and level of abstraction. The first three chapters describe the preparatory work invested along with the research strategy devised, thereby placing strong emphasis on systematic and thorough knowledge utilization. The engineering-scientific method itself is derived throughout the second half of the book. This book offers a unique aerospace vehicle configuration independent (generic) methodology and mathematical algorithm. The approach satisfies the initial technical quest: How to develop a 'configuration stability & control' methodology module for an advanced multi-disciplinary aerospace vehicle design synthesis environment that permits consistent aerospace vehicle design evaluations?
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