WATER AS AN ENVIRONMENTALLY FRIENDLY PROPELLANT FOR A MULTI-FUNCTIONAL SPACECRAFT ARCHITECTURE

IF 0.5 Q4 ENGINEERING, AEROSPACE
Jesús Manuel Muñoz Tejeda, A. Schwertheim, A. Knoll
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引用次数: 0

Abstract

Water can be utilized as spacecraft propellant to dramatically reduce the environmental impact of constructing and operating a satellite. In this work, a multi-mode chemical-electrical propulsion system, in which water was used as the propellant in both high thrust chemical and high specific impulse electrical maneuvres, was studied. This type of system allows the spacecraft architecture community to divest from traditional propellants such as hydrazine and xenon, thus reducing the production of highly toxic chemicals and dramatically reducing the carbon footprint of propulsion systems. Water has the lowest toxicity, carbon footprint, and price of any current or proposed propellant, and has been shown in laboratory testing to be a feasible alternative compared to traditionally used propellants. The unique role it can play across multiple spacecraft subsystems suggests that the commercial adoption of water as a propellant will reduce cost and mass while also reducing the environmental impact of the satellites of tomorrow. This technology has the ability to enable the development of modular, multifunctional, competitive, and environmentally friendly spacecraft architectures.
水作为一种环保推进剂用于多功能航天器结构
水可以用作航天器推进剂,大大减少建造和运行卫星对环境的影响。本文研究了一种以水为推进剂进行大推力化学和高比冲电气机动的多模式化学-电力推进系统。这种类型的系统使航天器建筑界摆脱了传统的推进剂,如肼和氙气,从而减少了剧毒化学物质的产生,并大大减少了推进系统的碳足迹。水的毒性、碳足迹和价格都是目前或拟议的推进剂中最低的,并且在实验室测试中显示,与传统使用的推进剂相比,水是一种可行的替代品。它可以在多个航天器子系统中发挥的独特作用表明,将水作为推进剂的商业采用将降低成本和质量,同时也减少未来卫星对环境的影响。该技术能够实现模块化、多功能、竞争性和环境友好型航天器架构的开发。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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来源期刊
CiteScore
1.20
自引率
14.30%
发文量
22
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