首页> 外文会议>55th International Astronautical Congress 2004 vol.10 >TRANSITIONING A FUNDAMENTAL RESEARCH PROGRAM TO ALIGN WITH THE NASA EXPLORATION INITIATIVE - PERSPECTIVES FROM MICROGRAVITY COMBUSTION SCIENCE AND FLUID PHYSICS
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TRANSITIONING A FUNDAMENTAL RESEARCH PROGRAM TO ALIGN WITH THE NASA EXPLORATION INITIATIVE - PERSPECTIVES FROM MICROGRAVITY COMBUSTION SCIENCE AND FLUID PHYSICS

机译:过渡基础研究计划,以与美国国家航空航天局(NASA)的勘探计划相吻合,从微观重力燃烧科学和流体物理学角度出发

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A new Vision for Space Exploration was announced earlier this year by U.S. President George W. Bush. NASA has evaluated on-going programs for strategic alignment with this vision. The evaluation proceeded at a rapid pace and is resulting in changes to the scope and focus of experimental research that will be conducted in support of the new vision. The existing network of researchers in the physical sciences - a highly capable, independent, and loosely knitted community - typically have shared conclusions derived from their work within appropriate discipline-specific peer reviewed journals and publications. The initial result of introducing this Vision for Space Exploration has been to shift research focus from a broad coverage of numerous, widely varying topics into a research program focused on a nearly-singular set of supporting research objectives to enable advances in space exploration.rnTwo of these traditional physical science research disciplines, Combustion Science and Fluid Physics, are implementing a course adjustment from a portfolio dominated by "Fundamental Science Research" to one focused nearly exclusively on supporting the Exploration Vision. Underlying scientific and engineering competencies and infrastructure of the Microgravity Combustion Science and Fluid Physics disciplines do provide essential research capabilities to support the contemporary thrusts of human life support, radiation countermeasures, human health, low gravity research for propulsion and materials and, ultimately, research conducted on the Moon and Mars.rnA perspective on how these two research disciplines responded to the course change will be presented. The relevance to the new NASA direction is provided, while demonstrating through two examples how the prior investment in fundamental research is being brought to bear on solving the issues confronting the successful implementation of the exploration goals.
机译:美国总统乔治·W·布什(George W. Bush)于今年早些时候宣布了一项新的太空探索构想。美国国家航空航天局(NASA)已对正在进行的计划进行了评估,以实现与该构想的战略一致性。评估工作进展迅速,并且正在改变实验研究的范围和重点,以支持新的愿景。物理科学领域的现有研究人员网络-一个功能强大,独立且组织松散的社区-通常在适当的学科特定同行评审期刊和出版物中分享了他们的工作所得出的结论。引入这一“太空探索愿景”的最初结果是将研究重点从广泛涵盖众多不同主题的研究重点转移到一项研究计划,该计划着眼于一组几乎唯一的支持研究目标,以推动太空探索的发展。这些传统的物理科学研究学科,燃烧科学和流体物理,正在实施课程调整,从“基础科学研究”主导的组合到几乎专门致力于支持“探索视野”的组合。微重力燃烧科学和流体物理学学科的基础科学和工程能力以及基础设施确实提供了必要的研究能力,以支持当代人类生命支持,辐射对策,人类健康,低重力推进和材料研究以及最终进行的研究在月球和火星上。将提供有关这两个研究学科如何响应课程变化的观点。提供了与新的NASA方向的相关性,同时通过两个示例演示了如何将先前对基础研究的投资用于解决成功实现勘探目标所面临的问题。

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