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首页> 外文期刊>Sadhana: Academy Proceedings in Engineering Science >Resection methodology for PSP data processing: Recent experiences in NAL
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Resection methodology for PSP data processing: Recent experiences in NAL

机译:PSP数据处理后方交会方法:NAL的最新经验

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摘要

PSP data processing, which primarily involves image alignment and image analysis, is a crucial element in obtaining accurate PSP results. There are two broad approaches to image alignment: the algebraic transformation technique, often called image-warping technique, and resection methodology, which uses principles of optical photogrammetry. Resection is found to have higher resolution, especially when large gradients in pressure or significantly three-dimensional regions have to be resolved, and even with flat models when the camera angles are large. A processing software based on these methodologies has been successfully developed and validated and is currently in use at the Experimental Aerodynamics Division of the National Aerospace laboratories, Bangalore. In this paper, we show the merits of resection methodology through two examples: (a) a wing-body model in transonic flow (M = 0.8) and (b) a simple delta wing in low supersonic flow (M = 1.8). The PSP system utilized for both the cases involve Optrod-B1 paint, a specially designed UV lamp for excitation and two scientific grade CCD cameras for imaging. Typical results are shown using both the algebraic transformation approach and resection methodology.
机译:PSP数据处理主要涉及图像对齐和图像分析,是获得准确的PSP结果的关键要素。有两种广泛的图像对齐方法:代数变换技术(通常称为图像扭曲技术)和后方交会方法(使用光学摄影测量原理)。人们发现后方交会具有更高的分辨率,尤其是当必须解决压力的大梯度或明显的三维区域时,甚至当摄像机角度较大时,对于平面模型也是如此。基于这些方法的处理软件已经成功开发和验证,目前已在班加罗尔国家航空航天实验室的实验空气动力学部门使用。在本文中,我们通过两个示例展示了切除方法的优点:(a)跨音速流中的机翼模型(M = 0.8)和(b)低超音速流中的简单三角翼(M = 1.8)。在这两种情况下使用的PSP系统都包括Optrod-B1涂料,专门设计用于激发的UV灯和两个用于成像的科学级CCD相机。使用代数变换方法和后方交会方法显示了典型结果。

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