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Comparison of digital holographic interferometry and constant temperature anemometry for measurement of temperature field in fluid

机译:数字全息干涉仪和恒温风速仪测量流体温度场的比较

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摘要

The presented paper shows possibility of using digital holographic interferometry (DHI) for temperature field measurement in moving fluids. This method uses a modified Twymann-Green setup having double sensitivity instead of commonly used Mach-Zehnder type of interferometer in order to obtain sufficient phases change of the field. On the other hand this setup is not light efficient as Mach-Zehnder interferometer. For measurement of the fast periodical phenomenon is not necessary to use always the high speed camera. One can consider this field to coherent phenomenon. With employing one digital camera synchronized to periodic field and external triggered one can capture whole period of the phenomenon. However the projections form one viewing direction of asymmetrical temperature field maybe misguided. Hence for sufficient examination of the asymmetrical field one should capture a large number of the phenomenon's projections from different viewing directions. This projections are later used for 3D tomographic reconstruction of the whole temperature field and its time evolution. One of the commonly used method for temperature field measurement in moving fluids is hot wire method - constant temperature anemometry (CTA). In contrast to whole field measurement of DHI it is an invasive point temperature measurement method. One of the limiting factor of using CTA in moving fluids is frequency of temperature changes. This changes should not exceed 1 kHz. This limitation could be overcome by using of optical methods such as DHI. The results of temperature field measurement achieved by both method are compared in the paper.
机译:提出的论文显示了使用数字全息干涉术(DHI)进行运动流体温度场测量的可能性。该方法使用具有双重灵敏度的改进的Twymann-Green装置来代替常用的Mach-Zehnder型干涉仪,以获得足够的磁场相位变化。另一方面,这种设置不像马赫曾德尔干涉仪那样光效高。为了测量快速的周期性现象,不必始终使用高速摄像机。可以考虑这一领域的连贯现象。通过使用一台与周期场同步的数码相机和外部触发的数码相机,可以捕获整个现象周期。但是,这些投影形成不对称温度场的一个观察方向,可能会导致误导。因此,对于不对称场的充分检查,应该从不同的观察方向捕获大量现象的投影。该投影随后用于整个温度场及其时间演变的3D层析成像重建。用于测量运动流体温度场的常用方法之一是热线法-恒温风速法(CTA)。与DHI的全场测量相反,它是一种侵入点温度测量方法。在运动流体中使用CTA的限制因素之一是温度变化的频率。此变化不应超过1 kHz。通过使用光学方法(例如DHI)可以克服此限制。比较了两种方法测得的温度场结果。

著录项

  • 来源
    《Holography: Advances and modern trends IV》|2015年|95080P.1-95080P.10|共10页
  • 会议地点 Prague(CZ)
  • 作者单位

    Regional Centre for Special Optics and Optoelectronic Systems (TOPTEC), Institute of Plasma Physics, Academy of Sciences of the Czech Republic, Praha, Czech Republic,Technical university of Liberec, Liberec, Czech Republic;

    Regional Centre for Special Optics and Optoelectronic Systems (TOPTEC), Institute of Plasma Physics, Academy of Sciences of the Czech Republic, Praha, Czech Republic,Technical university of Liberec, Liberec, Czech Republic;

    Regional Centre for Special Optics and Optoelectronic Systems (TOPTEC), Institute of Plasma Physics, Academy of Sciences of the Czech Republic, Praha, Czech Republic,Technical university of Liberec, Liberec, Czech Republic;

    Regional Centre for Special Optics and Optoelectronic Systems (TOPTEC), Institute of Plasma Physics, Academy of Sciences of the Czech Republic, Praha, Czech Republic,Technical university of Liberec, Liberec, Czech Republic;

    Technical university of Liberec, Liberec, Czech Republic;

    Technical university of Liberec, Liberec, Czech Republic;

  • 会议组织
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    digital holography; holographic interferometry; temperature measurement; tomography;

    机译:数字全息术全息干涉术温度测量;断层扫描;

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