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Experimental evidence for non-linear growth in compressible mixing layer 被引量:1

Experimental evidence for non-linear growth in compressible mixing layer
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摘要 An experimental study of compressible mixing layers(CMLs)was conducted using planar laser Mie scattering(PLMS)visualizations from condensed ethanol droplets in the flow.Large ensembles of digital images were collected for two flow conditions at convective Mach numbers Mc=0.11 and 0.47.The coherent vortices,braids and eruptions in the mixing zone were observed,interpreted as evidence of multi-scale,three-dimensional structures at a high Reynolds number.The mixing layers with a large visualized range present two stages along the streamwise direction,corresponding to the initial mixing and the well-developed stage.A new method,the gray level ensemble average method(GLEAM),by virtue of the similarity of the mixing layer,was applied to measure the growth rate of the CML thickness.New evidence for a nonlinear growth of CML is reported,providing an interpretation of previous observations of the scattering of the growth rate. An experimental study of compressible mixing layers (CMLs) was conducted using planar laser Mie scattering (PLMS) visualiza- tions from condensed ethanol droplets in the flow. Large ensembles of digital images were collected for two flow conditions at convective Mach numbers Mc = 0.11 and 0.47. The coherent vortices, braids and eruptions in the mixing zone were observed, interpreted as evidence of multi-scale, three-dimensional structures at a high Reynolds number. The mixing layers with a large visualized range present two stages along the streamwise direction, corresponding to the initial mixing and the well-developed stage. A new method, the gray level ensemble average method (GLEAM), by virtue of the similarity of the mixing layer, was applied to measure the growth rate of the CML thickness. New evidence for a nonlinear growth of CML is reported, providing an interpretation of previous observations of the scattering of the growth rate.
出处 《Science China(Physics,Mechanics & Astronomy)》 SCIE EI CAS 2014年第5期963-970,共8页 中国科学:物理学、力学、天文学(英文版)
基金 supported by the National Natural Science Foundation of China(Grant Nos.11172006,10572004 and 90716008) by the National Basic Research Program of China(Grant No.2009CB724100)
关键词 compressible mixing layer growth rate coherent structures flow visualization 可压缩混合层 非线性增长 实验证据 慢性粒细胞白血病 Mie散射 流动条件 可视系统 数字图像
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