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Beschreibung
At the present time, space travel is characterized by separately developed technologies of the space-traveling nations. Depending on fixed financial budgets and expensive technology companies, the developed spaceships are strongly designed just for a specific mission profile in order to reduce costs and risks as far as possible. Because of their less sustainable supply concept, these spacecraft allow only a limited mission duration and require regular supply deliveries in addition.

On the other hand side, mission periods continue to lengthen with the planned exploration of Mars, asteroids or other objects that are even more distant. These missions will require high sustainable supply concepts in order to enable autonomous and long-term life support of human mission participants. The now existing solutions do not yet meet these requirements, so the current approach of spacecraft design had to undergo a conceptual review.

The research made in the context of this work led to the design of a new generation of spacecraft, which supports with its optimized hull construction such extended long-term missions in terms of durability, variability and life support. All its embedded biological and chemical processes have, on the one hand, the primary aim to enable humans a long stay in space and, on the other hand, to be independent of an external mission supply. The performed research activities also included the necessary mechanical and energetical functions for which an extreme lifetime extension of up to 60 years was aimed.
At the present time, space travel is characterized by separately developed technologies of the space-traveling nations. Depending on fixed financial budgets and expensive technology companies, the developed spaceships are strongly designed just for a specific mission profile in order to reduce costs and risks as far as possible. Because of their less sustainable supply concept, these spacecraft allow only a limited mission duration and require regular supply deliveries in addition.

On the other hand side, mission periods continue to lengthen with the planned exploration of Mars, asteroids or other objects that are even more distant. These missions will require high sustainable supply concepts in order to enable autonomous and long-term life support of human mission participants. The now existing solutions do not yet meet these requirements, so the current approach of spacecraft design had to undergo a conceptual review.

The research made in the context of this work led to the design of a new generation of spacecraft, which supports with its optimized hull construction such extended long-term missions in terms of durability, variability and life support. All its embedded biological and chemical processes have, on the one hand, the primary aim to enable humans a long stay in space and, on the other hand, to be independent of an external mission supply. The performed research activities also included the necessary mechanical and energetical functions for which an extreme lifetime extension of up to 60 years was aimed.
Über den Autor
Christian Zschoch is a freelance scientist, process designer, and software architect. His interest in spaceflight and supply systems dates back to his childhood and he has been developing his skills through research on the subject ever since. He lives near Munich, Germany, in an area characterised by a research and industrial environment that has always inspired and supported him.
Details
Erscheinungsjahr: 2020
Fachbereich: Allgemeines
Genre: Mathematik, Medizin, Naturwissenschaften, Technik
Rubrik: Naturwissenschaften & Technik
Medium: Taschenbuch
Inhalt: 140 S.
ISBN-13: 9783752842890
ISBN-10: 375284289X
Sprache: Englisch
Einband: Kartoniert / Broschiert
Autor: Zschoch, Christian
Auflage: 3. Auflage
Hersteller: BoD - Books on Demand
Verantwortliche Person für die EU: BoD - Books on Demand, In de Tarpen 42, D-22848 Norderstedt, info@bod.de
Maße: 297 x 210 x 9 mm
Von/Mit: Christian Zschoch
Erscheinungsdatum: 19.02.2020
Gewicht: 0,428 kg
Artikel-ID: 114117554