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Design of Rockets and Space Launch Vehicles

Design of Rockets and Space Launch Vehicles
Author: Donald L. Edberg
Publisher: American Institute of Aeronautics and Astronautics Incorporated
Total Pages: 0
Release: 2020
Genre: Launch vehicles (Astronautics)
ISBN: 9781624105937

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With growing interest in space activity and numerous new launchers in development, this book is a timely, comprehensive survey of important concepts and applications. It enhances understanding and provides exposure to practical aspects of design, manufacturing, testing, and engineering associated with these topics.


Design of Rockets and Space Launch Vehicles

Design of Rockets and Space Launch Vehicles
Author: Donald L. Edberg
Publisher:
Total Pages:
Release: 2022
Genre: Launch vehicles (Astronautics)
ISBN: 9781624106422

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"Interest is growing in space activity, and many new launchers are in development. Design of Rockets and Space Launch Vehicles, Second Edition is a timely and comprehensive exposé of important concepts and applications. This newly updated edition provides enhanced understanding and exposure to the latest developments in the practical aspects of design, engineering, manufacturing, and testing. Although it is primarily intended for readers with at least a 3rd-year level knowledge of aerospace engineering, mathematics, and physics, because it contains many applications and step-by-step illustrated examples along with photographs or line drawings of actual hardware, it will also be of interest to practicing engineers, technical managers, and others who are interested in "how rockets work" in either the "big picture" sense, or in areas other than one's specialty. This book will answer many questions as to "why things are done this way.""--


Design of Rockets and Space Launch Vehicles

Design of Rockets and Space Launch Vehicles
Author: Donald L. Edberg
Publisher:
Total Pages:
Release: 2022
Genre: Launch vehicles (Astronautics)
ISBN: 9781624106415

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"Interest is growing in space activity, and many new launchers are in development. Design of Rockets and Space Launch Vehicles, Second Edition is a timely and comprehensive exposé of important concepts and applications. This newly updated edition provides enhanced understanding and exposure to the latest developments in the practical aspects of design, engineering, manufacturing, and testing. Although it is primarily intended for readers with at least a 3rd-year level knowledge of aerospace engineering, mathematics, and physics, because it contains many applications and step-by-step illustrated examples along with photographs or line drawings of actual hardware, it will also be of interest to practicing engineers, technical managers, and others who are interested in "how rockets work" in either the "big picture" sense, or in areas other than one's specialty. This book will answer many questions as to "why things are done this way.""--


Space Launch Vehicle Design

Space Launch Vehicle Design
Author: David Woodward
Publisher:
Total Pages: 209
Release: 2017
Genre:
ISBN:

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Engineering design can be broken down into three phases: conceptual design, preliminary design, and detailed design. During the conceptual design phase, several potential configurations are studied towards the identification of the baseline vehicle. Although the least amount of detail is known about the design during the early conceptual design phase, the decisions made during this phase lock in major features effecting life-cycle cost and overall product success. As the next big space race begins, it is critically important to have a readily available tool for launch vehicle designers that is intuitive to use, easy to modify, cost effective, and provides correct results. This thesis details the creation of such a tool for use during the early conceptual design phase by analyzing existing launch vehicle design software and literature in order to adopt a best-practice approach to launch vehicle sizing. In addition to correctly sizing the vehicle calculating the initial parameters, the tool also determines the vehicle's basic geometric information and runs an ascent-to-orbit trajectory simulation to verify the design's validity. The tool is capable of sizing fully expendable space launch vehicles, fully expendable vehicles whose final stage is to be used for both ascent-to-orbit and additional orbital maneuvering after reaching the parking orbit, and vehicles whose first stage performs a self-recovery through the boostback and vertical landing method.


Space Vehicle Design

Space Vehicle Design
Author: Michael Douglas Griffin
Publisher: AIAA
Total Pages: 700
Release: 2004
Genre: Space vehicles
ISBN: 9781600861123

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International Reference Guide to Space Launch Systems

International Reference Guide to Space Launch Systems
Author: Steven J. Isakowitz
Publisher: AIAA (American Institute of Aeronautics & Astronautics)
Total Pages: 680
Release: 2004
Genre: Launch vehicles (Astronautics)
ISBN:

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This bestselling reference guide contains the most reliable and comprehensive material on launch programs in Brazil, China, Europe, India, Israel, and the United States. Packed with illustrations and figures, this edition has been updated and expanded, and offers a quick and easy data retrieval source for policy makers, planners, engineers, launch buyers, and students.


Space Vehicle Dynamics and Control

Space Vehicle Dynamics and Control
Author: Bong Wie
Publisher: AIAA
Total Pages: 692
Release: 1998
Genre: Mathematics
ISBN: 9781563472619

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A textbook that incorporates the latest methods used for the analysis of spacecraft orbital, attitude, and structural dynamics and control. Spacecraft dynamics is treated as a dynamic system with emphasis on practical applications, typical examples of which are the analysis and redesign of the pointing control system of the Hubble Space Telescope and the analysis of an active vibrations control for the COFS (Control of Flexible Structures) Mast Flight System. In addition to the three subjects mentioned above, dynamic systems modeling, analysis, and control are also discussed. Annotation copyrighted by Book News, Inc., Portland, OR


Reusable Booster System

Reusable Booster System
Author: National Research Council
Publisher: National Academies Press
Total Pages: 115
Release: 2013-01-10
Genre: Science
ISBN: 0309266564

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On June 15, 2011, the Air Force Space Command established a new vision, mission, and set of goals to ensure continued U.S. dominance in space and cyberspace mission areas. Subsequently, and in coordination with the Air Force Research Laboratory, the Space and Missile Systems Center, and the 14th and 24th Air Forces, the Air Force Space Command identified four long-term science and technology (S&T) challenges critical to meeting these goals. One of these challenges is to provide full-spectrum launch capability at dramatically lower cost, and a reusable booster system (RBS) has been proposed as an approach to meet this challenge. The Air Force Space Command asked the Aeronautics and Space Engineering Board of the National Research Council to conduct an independent review and assessment of the RBS concept prior to considering a continuation of RBS-related activities within the Air Force Research Laboratory portfolio and before initiating a more extensive RBS development program. The committee for the Reusable Booster System: Review and Assessment was formed in response to that request and charged with reviewing and assessing the criteria and assumptions used in the current RBS plans, the cost model methodologies used to fame [frame?] the RBS business case, and the technical maturity and development plans of key elements critical to RBS implementation. The committee consisted of experts not connected with current RBS activities who have significant expertise in launch vehicle design and operation, research and technology development and implementation, space system operations, and cost analysis. The committee solicited and received input on the Air Force launch requirements, the baseline RBS concept, cost models and assessment, and technology readiness. The committee also received input from industry associated with RBS concept, industry independent of the RBS concept, and propulsion system providers which is summarized in Reusable Booster System: Review and Assessment.