ANALYSIS OF THE INFLUENCE OF THE GEOMETRY OF THE BLADE MIXER ON THE TURBULENCE AND INTENSITY OF LIQUID MIXING

Serhii Burlaka, Ihor Kupchuk, Serhii Shapovaliuk, Mykola Chernysh
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Abstract

Turbulent fluid mixing is an important aspect of many industrial and technological processes where efficient mixing of various components is of paramount importance to achieve the desired results. Optimal mixing can improve product quality, ensure the unity of complex reactions, and reduce process lead times. In this regard, the study and understanding of the influence of the geometry of the mixer on the characteristics of the turbulent flow becomes an urgent task of scientific research. The relevance of the study is explained by the wide application of mixers in industrial and technological processes, where the efficiency of mixing is crucial for achieving optimal results. The work used methods of experimental and numerical modeling of turbulent flow in various geometric configurations of blade mixers. Indicators such as turbulence intensity, pressure gradient, and fluid mixing ratio were used to quantify the turbulent characteristics. The obtained results demonstrate that the geometric configuration of the blade mixer has a significant effect on the formation of the turbulent flow. Some geometric parameters of the mixer can contribute to increasing the intensity of liquid mixing, while others can reduce its efficiency. Scientific results can be useful for designing optimal paddle mixers for specific industrial tasks that require intensive liquid mixing. The use of optimized mixers can help increase process productivity, save energy resources, and improve product quality.
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叶片混合器的几何形状对湍流度和液体混合强度的影响分析
湍流流体混合是许多工业和技术过程中的一个重要方面,其中各种成分的有效混合对于达到预期结果至关重要。优化混合可以提高产品质量,保证复杂反应的统一性,缩短工艺交货期。在这方面,研究和认识混合器的几何形状对湍流特性的影响成为科学研究的一项紧迫任务。在工业和技术过程中,混合器的广泛应用解释了该研究的相关性,其中混合效率对于获得最佳结果至关重要。本文采用实验和数值模拟的方法对不同几何构型的叶片混合器进行了紊流模拟。湍流强度、压力梯度、流体混合比等指标被用来量化湍流特性。结果表明,叶片混合器的几何形状对湍流的形成有显著影响。混合器的一些几何参数有助于提高液体的混合强度,而另一些则会降低其效率。科学结果可用于设计最佳的桨叶混合器的特定工业任务,需要密集的液体混合。使用优化的混合器可以帮助提高工艺生产率,节约能源,提高产品质量。
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