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利用纹影摄影技术对高大空间火灾热流进行模型实验可视化。

Visualization of hot flows of tall space fires in model experiments with Schlieren Photography technique.

作者信息

Su ChungHwei, Wang ShiuanCheng, Shih ChiaYuan, Yang YungChang

机构信息

Department of Safety, Health and Environmental Engineering, National Kaohsiung First University of Science and Technology, No. 1, Daxue Rd., Yanchao Dist., Kaohsiung City, 82445 Taiwan.

出版信息

Springerplus. 2016 Oct 7;5(1):1744. doi: 10.1186/s40064-016-3422-8. eCollection 2016.

Abstract

The natural smoke exhaust system for tall spaces is more advantageous than the mechanical type of exhaust. In Taiwan, the effectiveness of natural smoke exhaust systems is inspected only by checking the vent area size. However, the air flow field in a tall space is very complicated, both at ordinary times or during fires. This study used Schlieren Photography technique, on the principle that light rays are refracted when penetrating materials of different densities, to test and simulate the dynamic measurement of hot air in tall space model. A single-mirror Schlieren system, including an 838 mm (H) × 736 mm (W) square concave mirror, as well as the focal length of 3100 mm was adopted. The experimental process of six smokeless candles were used for 1/12.5 model experiment to record the dynamic distribution and accumulation of air flow in the abovementioned space. FDS software was used to simulate various fire scenarios. The different locations of openings in some cases were studied with the maximum temperature scales of 40 and 45 °C, separately. The simulation results and experimental images showed highly similar hot air flow patterns. Schlieren Photography was proved capable of recording and visualizing the dynamic flow of hot air immediately, directly and accurately.

摘要

高大空间的自然排烟系统比机械排烟系统更具优势。在台湾,自然排烟系统的有效性仅通过检查通风口面积大小来检验。然而,高大空间中的气流场非常复杂,无论是平时还是火灾期间。本研究采用纹影摄影技术,基于光线穿过不同密度材料时会发生折射的原理,对高大空间模型中的热空气进行动态测量测试与模拟。采用了单镜纹影系统,包括一个838毫米(高)×736毫米(宽)的方形凹面镜,以及焦距为3100毫米的镜头。使用六根无烟蜡烛进行1/12.5模型实验的过程,以记录上述空间内气流的动态分布和积聚情况。利用FDS软件模拟各种火灾场景。在某些情况下,分别以40和45℃的最高温度尺度研究了开口的不同位置。模拟结果和实验图像显示出高度相似的热空气流动模式。结果证明,纹影摄影能够立即、直接且准确地记录和可视化热空气的动态流动。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/8248/5055517/8538a9122d14/40064_2016_3422_Fig1_HTML.jpg

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