Quantitative Color Schlieren for an H2–O2 Exhaust Jet Developing in Air

IF 1.8 Q3 MECHANICS Fluids Pub Date : 2024-01-08 DOI:10.3390/fluids9010019
E. Prisăcariu, T. Prisecaru
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Abstract

Throughout many decades, the Schlieren visualization method has been mainly used as means to visualize transparent flows in a qualitative manner. The images recorded provide data regarding the existence of the flow, or illustrate predicted flow geometries and details. The colored Schlieren method has been developed in the late 1890s and has always had the intent to provide quantitative data rather than qualitative pictures of the studied phenomena. This paper centers on applying a quantitative color Schlieren method to help determine the gasodynamic parameters of an H2–O2 exhaust jet, developing in air. A comparison between the parameters obtained through calibrating the color filter for the Schlieren method and the results from a CFD simulation is performed to assess the range of the CS (color Schlieren) measurement. This paper’s findings address the issues of calibrated color filter Schlieren encounter during its implementation and discusses possible errors appearing when the method is applied to a 3D flow. While the qualitative Schlieren images are still impressive to observe, the quantitative Schlieren presents challenges and a low measurement accuracy (75%) when applied to 3D flows and compared to 2D cases found in the literature (97–98%).
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在空气中形成的 H2-O2 废气喷射的定量彩色舍利子
几十年来,席勒能可视化方法主要用于定性地可视化透明流动。所记录的图像可提供有关流动存在的数据,或说明预测的流动几何形状和细节。彩色 Schlieren 方法开发于 19 世纪 90 年代末,其目的一直是提供定量数据,而非所研究现象的定性图像。本文的重点是应用定量彩色 Schlieren 方法来帮助确定在空气中形成的 H2-O2 废气射流的气体动力学参数。本文对通过校准 Schlieren 方法的彩色滤光片获得的参数和 CFD 模拟结果进行了比较,以评估 CS(彩色 Schlieren)测量的范围。本文的研究结果解决了校准彩色滤波器 Schlieren 在实施过程中遇到的问题,并讨论了该方法应用于三维流动时可能出现的误差。虽然定性 Schlieren 图像仍然令人印象深刻,但定量 Schlieren 在应用于三维流动时,与文献中发现的二维案例(97-98%)相比,面临着挑战,测量精度较低(75%)。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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来源期刊
Fluids
Fluids Engineering-Mechanical Engineering
CiteScore
3.40
自引率
10.50%
发文量
326
审稿时长
12 weeks
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