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Design, development, and performance of an ammonia self-managed vaporization propulsion system for micro-nano satellites 被引量:3
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作者 Shu-jian SUN Tao MENG Zhong-he JIN 《Frontiers of Information Technology & Electronic Engineering》 SCIE EI CSCD 2019年第11期1516-1529,共14页
An ammonia self-managed vaporization propulsion (ASVP) system for micro-nano satellites is presented. Compared with a normal cold gas or liquefied gas propulsion system, a multiplex parallel sieve type vaporizer and r... An ammonia self-managed vaporization propulsion (ASVP) system for micro-nano satellites is presented. Compared with a normal cold gas or liquefied gas propulsion system, a multiplex parallel sieve type vaporizer and related vaporization control methods are put forward to achieve self-managed vaporization of liquefied propellant. The problems of high vaporization latent heat and incomplete vaporization of liquefied ammonia are solved, so that the ASVP system takes great advantage of high theoretical specific impulse and high propellant storage density. Furthermore, the ASVP operation procedure and its physical chemistry theories and mathematical models are thoroughly analyzed. An optimal strategy of thrust control is proposed with consideration of thrust performance and energy efficiency. The ground tests indicate that the ASVP system weighs 1.8 kg (with 0.34-kg liquefied ammonia propellant) and reaches a specific impulse of more than 100 s, while the power consumption is less than 10 W. The ASVP system meets multiple requirements including high specific impulse, low power consumption, easy fabrication, and uniform adjustable thrust output, and thus is suitable for micro-nano satellites. 展开更多
关键词 Self-managed vaporization Liquefied ammonia Milli-Newton level propulsion MICRO-THRUST High-precision orbital control micro-nano satellite
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精致微纳卫星设计与实践 被引量:5
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作者 张伟 彭攀 +2 位作者 沈朱泉 施伟璜 徐云东 《航天器工程》 CSCD 北大核心 2018年第6期19-26,共8页
针对传统卫星制造过程复杂,无法满足面向商业市场的微纳卫星批量化生产需求的问题,文章提出了一种"单机标准化、系统模块化、整星二度集成化"的精致微纳卫星设计理念。采用"配置精简化、结构虚拟化、功能软件化"设... 针对传统卫星制造过程复杂,无法满足面向商业市场的微纳卫星批量化生产需求的问题,文章提出了一种"单机标准化、系统模块化、整星二度集成化"的精致微纳卫星设计理念。采用"配置精简化、结构虚拟化、功能软件化"设计方法,实现了微纳卫星"高承载、高精度、高速率、高功率"的设计,并通过"精致微纳技术试验卫星"进行了验证。针对微纳卫星传统评价方式单纯以技术指标为依据、缺乏全面性的问题,文章提出了一种面向商业市场的微纳卫星效费比评价体系,以微纳卫星质量承载比、功率承载比和通信密度比为关键因素,综合卫星制造成本,较为全面地对微纳卫星效费比进行评估,以衡量其商业市场竞争力。可为我国微纳卫星设计、制造与评价提供新的理念与方法。 展开更多
关键词 精致微纳卫星 高效费比 评价体系
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