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Visual hull based 3D reconstruction of shocks in under-expanded supersonic bevelled jets

机译:基于可视困境的3D重建膨胀超声波膨胀喷射器的冲击

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摘要

Three-dimensional shock structures produced by Mach 1.45 supersonic bevelled jets were digitally reconstructed based on schlieren photography and a voxel-based visual hull technique. By taking advantage of the strong edge features commonly found in schlieren images of shock waves, the proposed technique demonstrates the possibility of performing shock wave reconstruction in supersonic jet applications without prior knowledge of the global density or velocity field. Semi-synthetic camera parameters were introduced as a method to circumvent camera calibration issues faced in the reconstruction procedure. This is key to achieving accurate and high-resolution reconstructed shock waves for both axisymmetric and asymmetric test cases with an average of 2.5% error when validated against raw schlieren images. When applied to bevelled jets with non-uniform nozzle exit geometries, an additional assumption was made to address the problem of schlieren line-of-sight blockage by the non-conventional nozzle, and reconstruction errors were found to be larger near regions of poorer shock wave contrast. Current results indicate that the technique is robust and fast during image calibration and processing, with accuracy of reconstructed shock waves in both conventional and non-conventional nozzles strongly dependent on shock wave contrast. Compared to existing techniques that can be used to reconstruct 3D shock structures, the proposed technique has the advantage of being totally non-intrusive as compared to point or particle-based measurements, requires significantly less computation than tomographic methods, offers high resolution reconstruction even with limited camera resolution and projected schlieren views, and is easy and cost effective to implement.
机译:基于Schlieren摄影和基于体素的视觉壳技术,通过Mach 1.45超声波倾斜喷射器产生的三维冲击结构。通过利用常用于冲击波的Schlieren图像中常见的强边特征,所提出的技术展示了在没有先验的全球密度或速度场的情况下在超音速喷射应用中执行冲击波重建的可能性。将半合成摄像机参数作为一种旨在重建过程所面临的绕过摄像机校准问题的方法。这是轴对称和不对称测试用例的准确和高分辨率重建冲击波实现准确,高分辨率的重建冲击波,而在验证原始Schlieren图像时平均误差为2.5%。当用非均匀喷嘴出口几何形状施加到膨胀的喷射时,额外的假设是通过非传统喷嘴解决Schlieren视线堵塞的问题,并且发现重建误差在较差的休克附近的区域附近更大波对比度。电流结果表明,在图像校准和处理期间,该技术在校准和处理期间具有稳健且快速,并且在传统和非传统喷嘴中的重建冲击波的精度强烈地取决于冲击波对比度。与可用于重建3D冲击结构的现有技术相比,所提出的技术具有与点或基于点或基于粒子的测量相比完全非侵入性的优点,需要比断层扫描方法显着更少,即使是高分辨率的重建有限的相机分辨率和预计的Schlieren景观,并且可以实现简单且具有成本效益。

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