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Extreme Environment Simulation - Current and New Capabilities to Simulate Venus and other Planetary Bodies

机译:极端环境模拟 - 模拟金星和其他行星体的最新功能和新功能

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Science, technology, and planetary mission communities have a growing interest in components and systems that are capable of working in extreme (high) temperature and pressure conditions. Terrestrial applications range from scientific research, aerospace, defense, automotive systems, energy storage and power distribution, deep mining and others. As the target environments get increasingly extreme, capabilities to develop and test the sensors and systems designed to operate in such environments will be required. An application of particular importance to the planetary science community is the ability for a robotic lander to survive on the Venus surface where pressures are nearly 100 times that of Earth and temperatures approach 500C. The scientific importance and relevance of Venus missions are stated in the current Planetary Decadal Survey. Further, several missions to Venus were proposed in the most recent Discovery call. Despite this interest, the ability to accurately simulate Venus conditions at a scale that can test and validate instruments and spacecraft systems and accurately simulate the Venus atmosphere has been lacking. This paper discusses and compares the capabilities that are known to exist within and outside the United States to simulate the extreme environmental conditions found in terrestrial or planetary surfaces including the Venus atmosphere and surface. The paper then focuses on discussing the recent additional capability found in the NASA Glenn Extreme Environment Rig (GEER). The GEER, located at the NASA Glenn Research Center in Cleveland, Ohio, is designed to simulate not only the temperature and pressure extremes described, but can also accurately reproduce the atmospheric compositions of bodies in the solar system including those with acidic and hazardous elements. GEER capabilities and characteristics are described along with operational considerations relevant to potential users. The paper presents initial operating results and concludes with a sampling of investigations or tests that have been requested or expected.
机译:科学,技术和行星使命社区对能够在极端(高)温度和压力条件下的组件和系统的兴趣日益增长。地面应用范围从科学研究,航空航天,防御,汽车系统,储能和配电,深度挖掘等。随着目标环境越来越极端的,需要开发和测试设计用于在这种环境中运行的传感器和系统的功能。特别重要对行星科学界特别重要的是机器人着陆器能够在金星表面存活,其中压力几乎是地球和温度接近500℃的100倍。金星任务的科学重要性和相关性在目前的行星划分调查中陈述。此外,在最近的发现呼叫中提出了几个关于金星的任务。尽管有这种兴趣,但能够以可以测试和验证仪器和航天器系统的规模准确地模拟金星条件,并缺乏准确模拟金星氛围。本文讨论并比较了美国内部内外存在的能力,以模拟陆地或行星表面中发现的极端环境条件,包括金星大气和表面。然后,该文件侧重于讨论NASA Glenn Extrement环境钻机(GEER)中发现的近额额外功能。位于俄亥俄州克利夫兰的NASA Glenn Research中心的GEER,旨在模拟描述的温度和压力,但也可以准确地再现太阳系中的尸体的大气组成,包括酸性和危险的元素。与潜在用户相关的操作考虑,描述了GEER能力和特征。本文提出了初步的经营结果,并结束了所要求或预期的调查或测试的取样。

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