多尺度条形阵列中PIV速度矢量场 PLIF浓度场检测方案(粒子图像测速)

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检测样品: 其他
检测项目: PIV速度矢量场 PLIF浓度场
浏览次数: 130
发布时间: 2019-07-17
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北京欧兰科技发展有限公司

金牌17年

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采用LaVision公司的DaVis软件平台,利用PIV和PLIF技术,对多尺度条形阵列后尾迹发展和混合过程进行了实验研究。

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     This thesis considers the experimental investigation of the near wakes of arrays composed of bars of uniform and non-uniform thickness (i.e. single and multi-scale arrays). The velocity and passive scalar concentration elds are measured by means of Particle Image Velocimetry (PIV) and Planar Laser Induced Fluorescence (PLIF). The objective is to identify distinctive features associated with the multi-scale turbulence forcing and to characterise their importance for the flow's dynamics and the scalar dispersion.      The velocity fields' inspection reveals shedding modes associated with the particular bars. Additional energetic coherent fluctuations are spotted in the vicinities of wakes intersections in the multiscale array case. In order to better understand these features, an energy budget of the multi-scale flow is considered in its triple-decomposed version where coherent and stochastic fluctuations are treated separately. The latter reveals, amongst other things, that the additional coherence is produced by triadic interactions of the primary shedding fluctuations. The analysis of scalar dispersion shows a specific way of fluid exchange between adjacent wakes, i.e. a quasi-periodic bursting. This phenomenon also appears to be triggered as the wakes intersection occurs. Its effects on the quantitative scalar dispersion statistics is carefully studied for the multi-scale array case and related to the underlyingvelocity field.     A considerable part of this thesis is dedicated to the development of tools needed in the course of the data analysis. Two major outcomes are the PLIF quantification technique and the triple decomposition technique. The former is a major improvement to classical quantification approaches, accounting for a non-linear fluorescent response of the dye, strong attenuation effects and so-called secondary fluorescence. The developed triple decomposition methodology allows distinguishing a number of separate coherent fluctuations coexisting in a flow, e.g. shedding modes of particular bars (as opposed to a singular mode usually considered in the literature)
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北京欧兰科技发展有限公司为您提供《多尺度条形阵列中PIV速度矢量场 PLIF浓度场检测方案(粒子图像测速)》,该方案主要用于其他中PIV速度矢量场 PLIF浓度场检测,参考标准--,《多尺度条形阵列中PIV速度矢量场 PLIF浓度场检测方案(粒子图像测速)》用到的仪器有德国LaVision PIV/PLIF粒子成像测速场仪、LaVision HighSpeedStar 高帧频相机、LaVision DaVis 智能成像软件平台