首页> 外文会议>ASME Turbo Expo: Turbomachinery Technical Conference and Exposition >APPLICATION OF QUANTITATIVE MONOCHROME CALIBRATED SCHLIEREN TECHNIQUE IN HIGHLY-LOADED TURBINE CASCADE TEST
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APPLICATION OF QUANTITATIVE MONOCHROME CALIBRATED SCHLIEREN TECHNIQUE IN HIGHLY-LOADED TURBINE CASCADE TEST

机译:定量单调校准谢列人技术在高负荷涡轮级联试验中的应用

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As the load of the turbine components of aircraft engines continuously increases, shock loss becomes the dominant factor of turbine stage loss and has become a hot topic. Schlieren technique is one of the few effective experimental methods to observe and study shock wave and, thus, has been widely used. Nevertheless, limited by camera accuracy and computer image processing technology, quantitative schlieren analysis methods were difficult to achieve in engineering applications. Fortunately, several quantitative schlieren methods have been developed with the help of new digital technology. Applying schlieren technique to the highly-loaded turbine cascade test is of great significance to the study of shock wave in highly-loaded turbine cascades. In this paper, the results of quantitative density field and shock intensity and loss in the cascade are obtained by using a double reflection type monochrome schlieren device. The boundary condition of density field is obtained by pressure test, and MATLAB software is used as image processing calculation tool. The quantitative results of this paper prove the feasibility of applying quantitative schlieren method to highly-loaded turbine cascade tests. Also, the implemented image processing method and density boundary condition acquisition method are suitable and convenient for cascade flow and shock measurement tests.
机译:随着飞机发动机的涡轮部件的负荷不断增加,冲击损失成为涡轮级损失的主要因素,并且已经成为热门话题。 Schlieren技术是观察和研究冲击波的少数有效实验方法之一,因此已被广泛使用。然而,受照相机精度和计算机图像处理技术的限制,定量的schlieren分析方法在工程应用中很难实现。幸运的是,借助新的数字技术,已经开发了几种定量的波形分析方法。将schlieren技术应用于高负荷涡轮叶栅试验中,对研究高负荷涡轮叶栅的冲击波具有重要意义。本文通过使用双反射型单色纹影装置获得了级联中的定量密度场和冲击强度及损失的结果。通过压力测试获得了密度场的边界条件,并使用MATLAB软件作为图像处理计算工具。本文的定量结果证明了将定量schlieren方法应用于高负荷涡轮机级联试验的可行性。而且,所实施的图像处理方法和密度边界条件获取方法对于级联流动和冲击测量测试是合适且方便的。

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