国内能源设施干式除尘器开发过程中气固流动的数值分析

IF 2.2 3区 工程技术 Q2 ENGINEERING, MULTIDISCIPLINARY
Albert Maćkowiak, Mariusz Kostrzewski, Artur Bugała, Norbert Chamier-Gliszczyński, Dorota Bugała, Jarosław Jajczyk, Waldemar Woźniak, Grzegorz Dombek, Karol Nowak
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引用次数: 0

摘要

本文介绍了分离粉尘的切向旋流器的模拟结果:不同几何形状的单旋流器和固定几何形状和部件的轴向多旋流器。其目标是在工业实现中应用旋风的低成本分析。因此,本研究作为计算流体力学的一个问题,应用了仿真方法。采用SolidWorks Flow Simulation软件对模型进行分析。所提出的除尘器是现实生活中的对象,应用于工业设施。对于多旋流器,叶片数量从5个增加到8个,加上叶片俯角(30°和45°)的变化,导致沿内壁的粉尘浓度从5个叶片的10%增加到6个叶片的37.5%,8个叶片的50%,而设备中心部分的粉尘浓度等于最后一个选项的20%。模型验证使人们注意到该软件在流问题以及常见和更复杂的数值环境中的潜在适用性。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Investigation into the Flow of Gas-Solids during Dry Dust Collectors Exploitation, as Applied in Domestic Energy Facilities – Numerical Analyses
The paper presents the results related to the simulation of dust-separating tangential cyclones: single cyclones of various geometries, and an axial multi-cyclone with fixed geometries and components. Its goal was to apply low-cost analyses for cyclones in industrial realization. Therefore, the presented research was applied with simulation methodology as a problem of Computational Fluid Dynamics. The models were analyzed using SolidWorks Flow Simulation software. The presented dust collectors are real-life objects, applied in industrial facilities. For a multi-cyclone, the increase in the number of blades, from 5 to 8, together with the change in the angle of a blade’s pitch i.e., 30° and 45°, resulted in dust concentration along the internal walls from just 10% for 5 blades up to c.a. 37.5% for 6 blades, and c.a. 50% for 8 blades, whereas the dust concentration in the device’s central part equals c.a. 20% for the last option. The model validation draws attention to the potential applicability of the software in flow issues alongside common and more complex numerical environments.
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来源期刊
CiteScore
5.70
自引率
24.00%
发文量
55
审稿时长
3 months
期刊介绍: The quarterly Eksploatacja i Niezawodność – Maintenance and Reliability publishes articles containing original results of experimental research on the durabilty and reliability of technical objects. We also accept papers presenting theoretical analyses supported by physical interpretation of causes or ones that have been verified empirically. Eksploatacja i Niezawodność – Maintenance and Reliability also publishes articles on innovative modeling approaches and research methods regarding the durability and reliability of objects.
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