首页> 外文OA文献 >Comparative Measurements of Earth and Martian Entry Environments in the NASA Langley HYMETS Facility
【2h】

Comparative Measurements of Earth and Martian Entry Environments in the NASA Langley HYMETS Facility

机译:NASA Langley HYMETS设施中地球和火星进入环境的比较测量

摘要

Arc-jet facilities play a major role in the development of heat shield materials for entry vehicles because they are capable of producing representative high-enthalpy flow environments. Arc-jet test data is used to certify material performance for a particular mission and to validate or calibrate models of material response during atmospheric entry. Materials used on missions entering Earth s atmosphere are certified in an arc-jet using a simulated air entry environment. Materials used on missions entering the Martian atmosphere should be certified in an arc-jet using a simulated Martian atmosphere entry environment, which requires the use of carbon dioxide. Carbon dioxide has not been used as a test gas in a United States arc-jet facility since the early 1970 s during the certification of materials for the Viking Missions. Materials certified for the Viking missions have been used on every entry mission to Mars since that time. The use of carbon dioxide as a test gas in an arc-jet is again of interest to the thermal protection system community for certification of new heat shield materials that can increase the landed mass capability for Mars bound missions beyond that of Viking and Pathfinder. This paper describes the modification, operation, and performance of the Hypersonic Materials Environmental Test System (HYMETS) arc-jet facility with carbon dioxide as a test gas. A basic comparison of heat fluxes, various bulk properties, and performance characteristics for various Earth and Martian entry environments in HYMETS is provided. The Earth and Martian entry environments consist of a standard Earth atmosphere, an oxygen-rich Earth atmosphere, and a simulated Martian atmosphere. Finally, a preliminary comparison of the HYMETS arc-jet facility to several European plasma facilities is made to place the HYMETS facility in a more global context of arc-jet testing capability.
机译:电弧喷射设备在开发用于入门级车辆的隔热屏材料方面起着重要作用,因为它们能够产生具有代表性的高焓流动环境。电弧喷射测试数据用于验证特定任务的材料性能,并在大气进入过程中验证或校准材料响应模型。用于进入地球大气层的任务中使用的材料已通过使用模拟空气进入环境的电弧喷射器进行了认证。进入火星大气层的任务中使用的材料应使用模拟火星大气层进入环境进行电弧喷射认证,这需要使用二氧化碳。自1970年代初以来,在维京飞行任务的材料认证期间,二氧化碳一直没有在美国的电弧喷射设备中用作测试气体。自那以后,每次进入火星的任务都使用经过维京任务认证的材料。热保护系统界再次对在电弧喷射器中使用二氧化碳作为测试气体感兴趣,以认证新的隔热屏材料,这种材料可以使火星飞行任务的着陆质量能力超过维京和探路者。本文介绍了以二氧化碳为测试气体的高超声速材料环境测试系统(HYMETS)电弧喷射设备的修改,操作和性能。提供了HYMETS中各种地球和火星进入环境的热通量,各种体积特性和性能特征的基本比较。地球和火星的进入环境包括一个标准的地球大气层,一个富氧的地球大气层和一个模拟的火星大气层。最后,对HYMETS电弧喷射设备与欧洲的等离子设备进行了初步比较,以将HYMETS设备置于电弧喷射测试能力的更全球范围内。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号