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EXPERIMENTAL AND NUMERICAL INVESTIGATION OF FLOW SEPARATION IN A SUPERSONIC NOZZLE

机译:超音速喷管内流场分离的实验与数值研究

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The flow in a two-dimensional symmetric convergent-divergent supersonic nozzle with and without a deflector at the exit plane was tested experimentally and numerically. Combined optoelectronic devices were used to demonstrate the possibilities of the shadow and schlieren methods and holographic interferometry for the flow visualization especially in the separation region. A series of experiments was performed in a trisonic wind tunnel (VTI, Beograd). The experimental results obtained using optical methods are compared with the pressure measurements and numerical calculations. Numerical results were obtained using a code for solving the average Navier-Stokes equations. Five structured meshes with different resolutions and two turbulent models were employed. The coupled influence of the mesh resolution and the order of accuracy of the used numerical scheme is analyzed.
机译:实验和数值测试了二维对称的收敛-发散的超音速喷嘴在出口平面上和没有偏转器时的流动。组合的光电器件被用来演示阴影和刻纹方法以及全息干涉测量技术用于流动可视化的可能性,尤其是在分离区域。在三速风洞(VTI,Beograd)中进行了一系列实验。将使用光学方法获得的实验结果与压力测量结果和数值计算进行比较。使用用于求解平均Navier-Stokes方程的代码获得了数值结果。使用了五个具有不同分辨率的结构化网格和两个湍流模型。分析了网格分辨率和所用数值方案的精度顺序的耦合影响。

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