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Analysis of the spatial distribution of collectors in dust scrubber based on image processing

机译:基于图像处理的除尘器集尘器空间分布分析

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The spatial distribution of the collectors in dust scrubber is key in determining the effectiveness of the dust removal process. In the present study, a high-speed camera was used to capture images of the distribution of the collectors. Some of the image information was extracted by image processing, such as the gray mean (GM), the angular second moment (ASM), and the entropy (ENT) from the gray-level co-occurrence matrix of the image. Subsequently, the spatial distribution rules of the collectors were studied by analyzing the spatial proportion, dispersion area, and uniformity and intensiveness of the collectors. It is an intuitive approach and a novel analysis method for the operating state of dust scrubber. The results show that the spatial distribution of the collectors could be better reflected by image processing methods. The dispersion area of the collectors expanded with an increase in the airflow velocity. When the initial liquid level (ILL) was higher, the collectors expanded in an approximate circular shape, and when the ILL was lower the collectors expanded in an approximate sector shape. In general, the variation trend in the spatial proportion enhanced with an increase in ILL and airflow velocity, which is consistent with the uniformity of collectors. When the liquid level was 0-20 mm and the airflow velocity was greater than 6.5 m/sec, the spatial proportion and uniformity of the collectors reached the highest degree. However, the growth rate of the spatial proportion and uniformity of the collectors slowed down and even led to negative growth when the ILL was lower and the airflow velocity was higher. The intensiveness of the collectors was great when the ILL was higher, which was free from the apparent influence of the airflow velocity and the ILL. However, when the ILL was lower, the intensiveness of the collectors was poor, intensifying as the airflow velocity and ILL increased. When the liquid level was -5-10 mm and the airflow velocity was greater than 8 m/sec, the intensiveness of the collectors reached the highest degree, indicating that a liquid level greater than 0 mm and a higher airflow velocity improved the spatial distribution of the collectors. Implications: This paper focuses on the spatial distribution of the collectors in dust scrubber. Some of the image information was extracted by image processing, such as the gray mean of the image, the angular second moment, and the entropy from the gray-level co-occurrence matrix of the image. The spatial distribution rules of the collectors were studied by analyzing the spatial proportion, the dispersion area, and the uniformity and intensiveness of the collectors.
机译:除尘器中集尘器的空间分布是决定除尘过程有效性的关键。在本研究中,使用高速相机捕获收集器分布的图像。通过图像处理从图像的灰度共生矩阵中提取一些图像信息,例如灰度均值(GM),第二矩角(ASM)和熵(ENT)。随后,通过分析收集器的空间比例,分散面积以及均匀性和强度来研究收集器的空间分布规律。它是一种用于除尘器运行状态的直观方法和新颖的分析方法。结果表明,图像处理方法可以更好地反映集热器的空间分布。收集器的分散面积随着气流速度的增加而扩大。当初始液位(ILL)较高时,收集器以近似圆形的形状膨胀,而当ILL较低时,收集器以近似扇形的形状膨胀。通常,随着ILL和气流速度的增加,空间比例的变化趋势增强,这与收集器的均匀性是一致的。当液位为0-20mm,气流速度大于6.5m / sec时,集尘器的空间比例和均匀度达到最高。但是,当ILL较低且气流速度较高时,集尘器的空间比例和均匀性的增长速度会减慢,甚至导致负增长。当ILL较高时,收集器的强度很大,不受气流速度和ILL的明显影响。但是,当ILL较低时,收集器的强度很差,随着气流速度和ILL的增加而增强。当液位为-5-10 mm且气流速度大于8 m / sec时,收集器的强度达到最高程度,表明液位大于0 mm和较高的气流速度改善了空间分布的收藏家。启示:本文着重于除尘器中集尘器的空间分布。一些图像信息是通过图像处理提取的,例如图像的灰度平均值,秒矩和从图像的灰度共生矩阵中获取的熵。通过分析集尘器的空间比例,分散面积,均匀性和强度,研究了集尘器的空间分布规律。

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    Minist Educ, Key Lab Coal Proc & Efficient Utilizat, Xuzhou 221008, Jiangsu, Peoples R China|China Univ Min & Technol, Sch Chem Engn & Technol, Xuzhou, Jiangsu, Peoples R China|Ohio State Univ, Dept Food Agr & Biol Engn, Columbus, OH 43210 USA;

    China Univ Min & Technol, Sch Chem Engn & Technol, Xuzhou, Jiangsu, Peoples R China;

    China Univ Min & Technol, Sch Chem Engn & Technol, Xuzhou, Jiangsu, Peoples R China;

    China Univ Min & Technol, Sch Chem Engn & Technol, Xuzhou, Jiangsu, Peoples R China;

    China Univ Min & Technol, Sch Safety Engn, Xuzhou, Jiangsu, Peoples R China;

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