11/1/2023 0 Comments Design gravit![]() Most prominently, the Von Braun paradigm has been an important influence as a systematic staging process for developing key technical abilities in space exploration. The Apollo program, among others, made an indelible impression on the technology development for human space exploration. This habitat, space village one, allows a long-term human presence in space such as space tourism, interstellar travel, space mineral mining, Mars colonization, etc. Based on the human needs of temperature, cosmic radiation protection, atmosphere, clean water, food, physical fitness, and mental health, a life support system is demonstrated to show the livable environment under thermal and energy equilibrium. Then, a detailed discussion of the structural dynamics and attitude control is given. The tensegrity paradigm is used to design the structure and to optimize the mass and cost of the habitat. We present a detailed design of a rotating shielded habitat system and a growth strategy by repeated addition of new layers, without disturbing the inhabitants of the current habitat. We first review the previous work on space explorations and summarized five unsolved fundamental problems: providing gravity, radiation protection, sustainable life support system, a large open space for human physiological and psychological comfort (survivable by professionals in trades other than highly trained astronauts), and a growth strategy to avoid the economic infeasibility of starting with the largest final version of the habitat. ![]() The goal of this study is to show the feasibility of designing a space habitat that advances the ability of humans to live in space for long periods. ![]()
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