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STEREOSCOPIC IMAGING OF TRANSVERSE DETONATIONS IN DIFFRACTION

机译:横向爆轰的立体成像

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Diffraction of gaseous detonations has received considerable attention for many years, yet there is limited understanding of the failure and initiation phenomena due to the complex coupling between the combustion and the fluid dynamics. A variety of optical techniques such as streak imaging, open shutter photography, high-speed schlieren imaging, and, more recently, planar laser induced fluorescence (PLIF) has been used to visualize the diffraction process in detonations. To overcome the integrating nature of visualization techniques and also allow for sooted foil records, many diffraction experiments in the past were carried out in narrow channels, studying detonation transition from planar to cylindrical geometry. The experimental investigation on spherically diffracting detonations described in this paper uses stereoscopic image reconstruction of the transverse detonations. The aim is to obtain further insight into the transverse detonations, which are the re-coupling phenomena identified to occur in the critical diffraction regime following a re-initiation event. The 3D reconstruction technique visualizes the transverse detonation as defined by the volume in space with high luminosity. The reconstruction technique is based on gradients, in contrast to those techniques based on target points as used, for example, in 3D particle image velo-cimetry. Together with a simultaneously obtained schlieren image, the location of the transverse detonation could be determined to be just below the shock surface.
机译:多年来,气体爆轰的扩散受到了相当大的关注,但是由于燃烧与流体动力学之间的复杂耦合,对破坏和起爆现象的理解仍然有限。各种光学技术,例如条纹成像,快门摄影,高速schlieren成像,以及最近使用的平面激光诱导荧光(PLIF),已被用于可视化爆轰中的衍射过程。为了克服可视化技术的整合性并允许箔记录灰化,过去在狭窄的通道中进行了许多衍射实验,研究了从平面到圆柱几何形状的爆轰过渡。本文描述的球形衍射爆轰的实验研究使用了横向爆轰的立体图像重建。目的是获得对横向爆震的进一步了解,横向爆震是在重新引发事件之后被确定在临界衍射区域中发生的再耦合现象。 3D重建技术可视化具有高亮度的空间中定义的横向爆炸。与例如在3D粒子图像测速中使用的基于目标点的那些技术相反,重建技术基于梯度。与同时获得的schlieren图像一起,可以确定横向爆震的位置恰好位于冲击表面的下方。

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