...
首页> 外文期刊>Applied optics >Application of the windowed-Fourier-transform-based fringe analysis technique for investigating temperature and concentration fields in fluids
【24h】

Application of the windowed-Fourier-transform-based fringe analysis technique for investigating temperature and concentration fields in fluids

机译:基于窗口傅里叶变换的条纹分析技术在流体温度场和浓度场研究中的应用

获取原文
获取原文并翻译 | 示例
   

获取外文期刊封面封底 >>

       

摘要

The present work is concerned with the development and application of a novel fringe analysis technique based on the principles of the windowed-Fourier-transform (WFT) for the determination of temperature and concentration fields from interferometric images for a range of heat and mass transfer applications. Based on the extent of the noise level associated with the experimental data, the technique has been coupled with two different phase unwrapping methods: the Itoh algorithm and the quality guided phase unwrapping technique for phase extraction. In order to generate the experimental data, a range of experiments have been carried out which include cooling of a vertical flat plate in free convection conditions, combustion of mono-propellant flames, and growth of organic as well as inorganic crystals from their aqueous solutions. The flat plate and combustion experiments are modeled as heat transfer applications wherein the interest is to determine the whole-field temperature distribution. Aqueous-solution-based crystal growth experiments are performed to simulate the mass transfer phenomena and the interest is to determine the two-dimensional solute concentration field around the growing crystal. A Mach-Zehnder interferometer has been employed to record the path-integrated quantity of interest (temperature and/or concentration) in the form of interferometric images in the experiments. The potential of the WFT method has also been demonstrated on numerically simulated phase data for varying noise levels, and the accuracy in phase extraction have been quantified in terms of the root mean square errors. Three levels of noise, i.e., 0%, 10%, and 20% have been considered. Results of the present study show that the WFT technique allows an accurate extraction of phase values that can subsequently be converted into two-dimensional temperature and/or concentration distribution fields. Moreover, since WFT is a local processing technique, speckle patterns and the inherent noise in the interferometric data do not affect the resultant phase values. Brief comparisons of the accuracy of the WFT with other standard techniques such as conventional Fourier-filtering methods are also presented.
机译:目前的工作涉及基于窗傅立叶变换(WFT)原理的新型条纹分析技术的开发和应用,该技术可用于从干涉图图像中确定一系列传热和传质应用中的温度和浓度场。基于与实验数据相关的噪声水平的范围,该技术已与两种不同的相位解缠方法相结合:Itoh算法和用于相位提取的质量指导相位解缠技术。为了生成实验数据,已进行了一系列实验,包括在自由对流条件下冷却垂直平板,燃烧单推进剂火焰以及从水溶液中生长有机和无机晶体。将平板和燃烧实验建模为热传递应用,其中的重点是确定全场温度分布。进行基于水溶液的晶体生长实验以模拟传质现象,并且感兴趣的是确定生长晶体周围的二维溶质浓度场。在实验中,已采用Mach-Zehnder干涉仪以干涉图像的形式记录感兴趣的路径积分量(温度和/或浓度)。 WFT方法的潜力也已经在数值模拟的相位数据上证明了变化的噪声水平,并且已经根据均方根误差对相位提取的精度进行了量化。已经考虑了三个级别的噪声,即0%,10%和20%。本研究的结果表明,WFT技术可以准确提取相位值,然后可以将其转换为二维温度和/或浓度分布场。此外,由于WFT是本地处理技术,所以干涉数据中的斑点图案和​​固有噪声不影响所得的相位值。还介绍了WFT与其他标准技术(例如常规傅里叶滤波方法)的准确性的简要比较。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号