深空探测行星环境模拟试验技术及装置研究进展

Progress in planetary environment simulation technologies and facilities fordeep space exploration

  • 摘要: 行星表面大气、风场、沙尘、高低温和辐射等复杂环境给深空探测航天器及其载荷的可靠性带来严峻考验,而地面环境模拟试验对于保障任务成功至关重要。文章综述了国内外深空探测行星环境模拟试验技术及装置的现状,重点介绍了中国科学院国家空间科学中心研制的两套行星大气模拟装置(KM3-PAS和PMES)以及已开展的行星环境模拟试验。最后指出:未来环境模拟试验技术应围绕我国后续深空探测计划和空间科学发展需求进行布局;同时应重视基础试验研究对深空探测的推动作用,建立可开展行星科学和太空生物学等研究的中小型试验装置,为相关学科的发展提供支撑。

     

    Abstract: The complex environment of planetary surfaces, including atmospheric conditions, wind fields, dust, extreme temperatures, and radiation, presents significant challenges for maintaining the reliability of deep-space exploration spacecraft and their payloads. Ground-based environmental simulation testing has been demonstrated to be critical for mission success. In this study, current planetary environment simulation technologies and test facilities were systematically reviewed, with particular attention paid to two planetary atmosphere simulators (KM3-PAS and PMES) developed by the National Space Science Center of the Chinese Academy of Sciences. The results suggest that future developments in environmental simulation technology should align with China's forthcoming deep-space exploration initiatives and evolving space science requirements. More importantly, the fundamental role of experimental research in advancing deep-space exploration has been emphasized, and the establishment of small- to medium-scale test facilities is proposed to support planetary science and space biology research, thereby facilitating progress in these disciplines.

     

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