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Technology demonstration for reusable launchers

机译:可重复使用发射器的技术演示

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Reusable launchers have been studied under CNES contracts for more than 30 years, with early concepts such as STS-2000 or Oriflamme, more recently with very significant efforts devoted to Liquid Fly Back Boosters as with the Bargouzin project led with Tsniimash, TSTO with the Everest concept studied by Airbus-DS as prime contractor or the RFS Reusable First Stage concept of a large first stage associated to a cryotechnic second stage. These investigations, summarized in the first part of the paper, enabled CNES to identify clearly the technology requirements associated to reusability, as well as cost efficiency through detailed non-recurring costs and mission costs analysis. In parallel, CNES set in place development logic for sub-systems and equipment based on demonstrators, hardware test benches enabling maturation of technologies up to a TRL such that an actual development can be decided with limited risk. This philosophy has been applied so far to a large number of cases, such as TPTech and TPX for Hydrogen turbo pump, GGPX as demonstrator of innovative gas generator, HX demonstrator of modern cryotechnic upper stage with a dozen of different objectives (Thermal Protection, 20K Helium storage, measurements...). This virtuous approach, "learn as you test", is currently applied in the phased approach towards scaled down reusable booster stage, whose possibility to be used as first stage of a microlaunch vehicle is under investigation. The selected technologies allow paving the way towards reusable booster stages for Ariane 6 evolutions or main reusable stage for a further generation of heavy launchers. The paper describes the logic behind this project, together with the demonstration objectives set for the various sub-systems as well as operations. (C) 2015 IAA. Published by Elsevier Ltd. All rights reserved.
机译:可重复使用的发射器已经根据CNES合同进行了30多年的研究,包括STS-2000或Oriflamme等早期概念,最近在液体反激式助推器方面做出了巨大的努力,Tsniimash,TSTO和Everest领导的Bargouzin项目由空客DS作为总承包商研究的概念,或与冷冻技术第二阶段相关的大型第一阶段的RFS可重复使用的第一阶段概念。这些研究总结在本文的第一部分中,使CNES能够通过详细的非经常性成本和任务成本分析来明确确定与可重用性相关的技术要求以及成本效率。同时,CNES根据演示者,硬件测试平台为子系统和设备设置了开发逻辑,从而使技术成熟到TRL,从而可以以有限的风险确定实际的开发。迄今为止,这一理念已被广泛应用,例如用于氢气涡轮泵的TPTech和TPX,作为创新型气体发生器的GGPX演示器,具有多种不同目标(热保护,20K)的现代冷冻技术上层级的HX演示器。氦气存储,测量...)。目前,这种“测试时学习”的良性方法已逐步应用于按比例缩小规模的可重复使用的助推器阶段,目前正在研究将其用作微型发射车的第一阶段的可能性。选定的技术可以为实现Ariane 6演变的可重用增压器阶段或为下一代重型发射器的主要可重用阶段铺平道路。本文描述了该项目背后的逻辑,以及为各个子系统和操作设置的演示目标。 (C)2015年IAA。由Elsevier Ltd.出版。保留所有权利。

著录项

  • 来源
    《Acta astronautica》 |2016年第maraaapra期|43-58|共16页
  • 作者

    Baiocco P.; Bonnal Ch.;

  • 作者单位

    CNES, Paris, France;

    CNES, Paris, France;

  • 收录信息 美国《科学引文索引》(SCI);美国《工程索引》(EI);
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

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