Rapid technology assessment via unified deployment of global optical and virtual diagnostics

Jeffrey D Jordan, A. N. Watkins, Gary A Fleming, B. Leighty, Richard J Schwartz, J. L. Ingram, K. D. Grinstead, D. M. Oglesby, Charles Tyler
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引用次数: 12

Abstract

This paper discusses recent developments in rapid technology assessment resulting from an active collaboration between researchers at the Air Force Research Laboratory (AFRL) at Wright Patterson Air Force Base (WPAFB) and the NASA Langley Research Center (LaRC). This program targets the unified development and deployment of global measurement technologies coupled with a virtual diagnostic interface to enable the comparative evaluation of experimental and computational results. Continuing efforts focus on the development of seamless data translation methods to enable integration of data sets of disparate file format in a common platform. Results from a successful low-speed wind tunnel test at WPAFB in which global surface pressure distributions were acquired simultaneously with model deformation and geometry measurements are discussed and comparatively evaluated with numerical simulations. Intensity- and lifetime-based pressure-sensitive paint (PSP) and projection moire interferometry (PMI) results are presented within the context of rapid technology assessment to enable simulation-based R&D.
通过统一部署全球光学和虚拟诊断快速技术评估
本文讨论了赖特帕特森空军基地(WPAFB)空军研究实验室(AFRL)和美国宇航局兰利研究中心(LaRC)研究人员之间积极合作所产生的快速技术评估的最新发展。该计划的目标是统一开发和部署全球测量技术,并结合虚拟诊断接口,以便对实验和计算结果进行比较评估。继续致力于开发无缝数据转换方法,以便在公共平台中集成不同文件格式的数据集。讨论了在WPAFB进行的一次成功的低速风洞试验的结果,该试验同时获得了模型变形和几何测量的全球表面压力分布,并与数值模拟进行了比较评价。基于强度和寿命的压敏涂料(PSP)和投影云纹干涉测量(PMI)结果在快速技术评估的背景下呈现,以实现基于仿真的研发。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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