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Background-oriented schlieren technique for two-dimensional visualization of convective indoor air flows

机译:用于对流室内空气流动的二维可视化的背景面向Schlieren技术

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This article focuses on further developments of the background-oriented schlieren (BOS) technique to visualize convective indoor air flow, which is usually defined by very small density gradients. Since the light rays deflect when passing through fluids with different densities, BOS can detect the resulting refractive index gradients as integration along a line of sight. In this paper, the BOS technique is used to yield a two-dimensional visualization of small density gradients. The novelty of the described method is the implementation of a highly sensitive BOS setup to visualize the ascending thermal plume from a heated thermal manikin with temperature differences of minimum 1 K. To guarantee steady boundary conditions, the thermal manikin was seated in a climate laboratory. For the experimental investigations, a high-resolution DLSR camera was used capturing a large field of view with sufficient detail accuracy. Several parameters such as various backgrounds, focal lengths, room air temperatures, and distances between the object of investigation, camera, and structured background were tested to find the most suitable parameters to visualize convective indoor air flow. Besides these measurements, this paper presents the analyzing method using cross-correlation algorithms and finally the results of visualizing the convective indoor air flow with BOS. The highly sensitive BOS setup presented in this article complements the commonly used invasive methods that highly influence weak air flows.
机译:本文侧重于背景导向的Schlieren(BOS)技术的进一步发展,以可视化对流室内空气流,这通常由非常小的密度梯度定义。由于光线在通过具有不同密度的流体时偏转,因此BOS可以检测所得到的折射率梯度作为沿视线的集成。在本文中,BOS技术用于产生小密度梯度的二维可视化。所描述的方法的新颖性是实现高度敏感的BOS设置,以从加热的热人体模型可视化上升的热羽状,温度差异最小1 K.为了保证稳定的边界条件,热人体模型坐在气候实验室中。对于实验研究,使用高分辨率DLSR相机,捕获了具有足够的细节精度的大视野。测试了几种参数,例如各种背景,焦距,房间空气温度和调查对象之间的距离,以及调查,相机和结构化背景之间的距离,以找到最合适的参数,可视化对流室内空气流量。除了这些测量之外,本文介绍了使用互相关算法的分析方法,最后用BOS可视化对流室内空气流量的结果。本文中提出的高度敏感的BOS设置补充了高度影响弱空气流量的常用侵入性方法。

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