2015
DOI: 10.1017/jfm.2015.257
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On the interaction of a planar shock with an polygon

Abstract: The interaction of a planar shock wave (M ≈ 1.2) with an SF 6 polygonal inhomogeneity surrounded by air is experimentally investigated. Six polygons including a square, two types of rectangle, two types of triangle, and a diamond are generated by the soap film technique developed in our previous work, in which thin pins are used as angular vertexes to avoid the pressure singularities caused by the surface tension. The evolutions of the shock-accelerated SF 6 polygons are captured by a high-speed schlieren syst… Show more

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Cited by 78 publications
(38 citation statements)
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“…In this way, the gas interface has an almost ideal two-dimensional shape with a polygonal cross-section. The effects of the thin pins and fine chamfers on the shock propagation and interface deformation have been evaluated numerically and experimentally in planar shock-polygonal interface interactions Zhai et al 2014;Luo et al 2015), which predict a good performance of the soap film method in the interface formation and the successive RM instability study.…”
Section: Formation Of Initial Polygonal Interfacesmentioning
confidence: 99%
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“…In this way, the gas interface has an almost ideal two-dimensional shape with a polygonal cross-section. The effects of the thin pins and fine chamfers on the shock propagation and interface deformation have been evaluated numerically and experimentally in planar shock-polygonal interface interactions Zhai et al 2014;Luo et al 2015), which predict a good performance of the soap film method in the interface formation and the successive RM instability study.…”
Section: Formation Of Initial Polygonal Interfacesmentioning
confidence: 99%
“…When the initial interface is formed in the test section, the pollution of the disks by of soap liquid and the arrangement of the thin pins would contaminate the schlieren images of the evolving interface, which can be seen in studies of planar shock-polygonal interface interactions Zhai et al 2014;Luo et al 2015). Moreover, the schlieren system often obtains an integrated view of the flow field along the light path.…”
Section: Flow Diagnosticsmentioning
confidence: 99%
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