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OPTICAL 3D MEASUREMENTS IN HYDRODYNAMIC TUNNEL FOR AIRCRAFT ICING STUDY

机译:飞机锦绣研究流体动力隧道中的光学3D测量

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The study of how aircraft icing influences on aircraft aerodynamic performance is very important for developing measures and recommendation to improve aircraft flight safety. The effective method of aerodynamic processes modeling is experiment in wind (aerodynamic) tunnel or water (hydrodynamic) tunnel. They allow to perform experiments with a scaled model of an aircraft affected by icing and to visualize the wing flow process and changes caused by icing. While visualization of the wing flow yields useful qualitative information about flow, it is more important to retrieve quantitative 3D data of flow, which allows to forecast icing process and to develop anti-icing techniques and recommendations.The presented study addresses to creating an photogrammetric system and 3D measurement techniques for quantitate evaluation of 3D flow parameters in a hydrodynamic tunnel for aircraft icing influence exploration. Being an initial part of a long-term research project, this study is aimed at developing of an accurate calibration technique of the photogrammetric system for 3D measurement in condition of two optical media interfaces. The developed algorithms for imaging process through two optical media interfaces are used in calibration procedure and object 3D coordinates measuring. The results of the photogrammetric system calibration are given in comparison with standard (single media) case. Experimental 3D reconstruction of a typical object demonstrated high accuracy of the developed algorithms.
机译:研究飞机对飞机空气动力学性能的影响如何对发展措施和建议来改善飞机飞行安全性非常重要。空气动力学过程建模的有效方法是风(空气动力学)隧道或水(流体动力学)隧道的实验。它们允许通过冰布影响的飞机的缩放模型进行实验,并可视化机翼流程过程和由结冰引起的变化。虽然翼流的可视化产生有关流量的有用定性信息,但更为重要的是检索流量的定量3D数据,这允许预测结冰过程并开发反冰技术和推荐。所提出的研究地址为创建摄影测量系统的研究地址和3D测量技术,用于定量评估飞机结冰影响勘探的流体动力学隧道中的3D流动参数。该研究旨在成为长期研究项目的初始部分,旨在在两个光学介质接口条件下开发用于3D测量的摄影测量系统的准确校准技术。通过两个光学媒体接口的成像过程的开发算法用于校准过程和对象3D坐标测量。与标准(单介质)案例相比,给出了摄影测量系统校准的结果。典型物体的实验3D重建显示出显影算法的高精度。

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