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Recommendations for Hypersonic Boundary Layer Transition Flight Testing

机译:高超音速边界层过渡飞行测试的建议

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Much has been learned about the physics underlying the transition process at supersonic and hypersonic speeds through years of analysis, experiment and computation. Generally, the application of this knowledge has been restricted to simple shapes like plates, cones and spherical bodies. However, flight reentry vehicles are in reality never simple. They typically are highly complex geometries flown at angle of attack so three-dimensional effects are very important, as are roughness effects due to surface features and/or ablation. This paper will review our present understanding of the physics of the transition process and look back at some of the recent flight test programs for their successes and failures. The goal of this paper is to develop rationale for new hypersonic boundary layer transition flight experiments. Motivations will be derived from both an inward look at what we believe constitutes a good flight test program as well as an outward review of the goals and objectives of some recent US based unclassified proposals and programs. As part of our recommendations, this paper will address the need for careful experimental work as per the guidelines enunciated years ago by the U.S. Transition Study Group. Following these guidelines is essential to obtaining reliable, usable data for allowing refinement of transition estimation techniques.
机译:通过多年的分析,实验和计算,已经学到了很多有关超音速和高音速过渡过程的基础物理学的知识。通常,此知识的应用仅限于简单的形状,如板,圆锥和球形。但是,再入飞行器实际上从来都不简单。它们通常是高度复杂的几何形状,以迎角飞行,因此三维效果非常重要,由于表面特征和/或烧蚀引起的粗糙度效果也很重要。本文将回顾我们目前对过渡过程物理的理解,并回顾一下最近的一些飞行测试程序的成败情况。本文的目的是为新的高超声速边界层过渡飞行实验开发理论基础。动机将源于对我们认为构成良好的飞行测试计划的内向型观察,以及对一些近期基于美国的未分类建议和方案的目的和目标的向外审查。作为我们建议的一部分,本文将根据美国过渡研究小组几年前阐述的指导原则,解决认真进行实验工作的需求。遵循这些准则对于获取可靠,可用的数据至关重要,以便可以完善过渡估计技术。

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