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NASA's Role in Gas Turbine Technology Development: Accelerating Technical Progress Via Collaboration Between Academia, Industry, and Government Agencies

机译:美国宇航局在燃气轮机技术开发中的作用:通过学术界,工业和政府机构之间的合作加速技术进步

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Given the maturity of the gas turbine engine since its invention and considering the limited resources expected to be allocated for NASA aeronautics research and development, we ask the question are NASA technology investments still needed to enable future turbine engine-based propulsion systems? If so, what is NASA's unique role to justify NASA's investment? To address this topic, we first summarize NASA's role and contributions to turbine engine development, specific to both (1) NASA's role in conducting experiments to understand flow physics and provide relevant benchmark validation experiments for computational fluid dynamics (CFD) code development, validation, and assessment and (2) the impact of technologies resulting from NASA collaborations with industry, academia, and other government agencies. Note that the scope of the discussion is limited to the NASA technology contributions with which the author was intimately associated and does not represent the entirety of the NASA contributions to turbine engine technology. The specific research, development, and demonstrations discussed herein were selected to both (1) provide a comprehensive review and reference list of the technology and its impact and (2) identify NASA's unique role and highlight how NASA's involvement resulted in additional benefit to the gas turbine engine community. Second, we will discuss current NASA collaborations that are in progress and provide a status of the results. Finally, we discuss the challenges anticipated for future turbine engine-based propulsion systems for civil aviation and identify potential opportunities for collaboration where NASA involvement would be beneficial.
机译:鉴于燃气轮机发动机的成熟以来,由于本发明并考虑到预期的国家航空航天局航空研究和发展所预期的有限资源,我们提出了问题,仍然需要NASA技术投资,以便能够实现基于涡轮发动机的推进系统?如果是的话,NASA是合理的独特作用,证明了NASA的投资?为了解决这一主题,我们首先将NASA的作用和贡献总结为涡轮发动机开发,特定于(1)NASA在进行实验中的作用,以了解流量物理学,为计算流体动力学(CFD)代码开发,验证提供相关的基准验证实验,提供相关的基准验证实验,和评估和(2)NASA合作与行业,学术界和其他政府机构产生的技术的影响。请注意,讨论的范围仅限于美国国家航空航天局技术贡献,其中作者密切相关,并不代表了对涡轮发动机技术的全部航空航天局的贡献。本文所讨论的具体研究,开发和示范均选择(1)提供技术的全面审查和参考清单及其影响,并识别NASA的独特作用,并强调NASA的参与如何导致燃气额外的福利涡轮发动机群落。其次,我们将讨论当前正在进行的NASA合作,并提供结果的状态。最后,我们讨论了对民用航空的未来基于涡轮发动机的推进系统预期的挑战,并确定了美国航空航天局参与的合作的潜在机会。

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