Modeling And Designing Simulation Using CFD Computational Fluid Dynamics Application For The Process Of Capture Diesel Soot Particles By Hydro Cyclone

M. Shahda, Mahmod Alfattamah, Y. Johar
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Abstract

The research aims to predict the efficiency of capturing the soot particles generated by the diesel generator within the Hydro Cyclone by conducting the applied study using the Computational Fluid Dynamics (CFD) application through modeling and simulation of the turbulent flow within the Hydro Cyclone using SOLIDWORKS Flow Simulation. The ability to predict the impact of such flows on your product performance is time consuming and costly without some form of simulation tools...SOLIDWORKS Flow Simulation uses Computational Fluid Dynamics (CFD) analysis to enable quick, efficient simulation of fluid flow and can easily calculate fluid forces and help the designer to understand the impact of a liquid or gas on product performance and comparing the results with experimental reality. In this research, the engineering simulation confirmed the importance of using Hydro Cyclone in the capture of diesel soot particles by an error rate of only 4% compared to experimental reality.
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基于CFD计算流体动力学的水力旋流器捕集柴油烟尘颗粒过程建模与设计仿真
本研究旨在利用计算流体动力学(CFD)应用程序进行应用研究,利用SOLIDWORKS flow simulation对水力旋流器内的湍流进行建模和仿真,预测水力旋流器内柴油发电机产生的烟尘颗粒的捕获效率。如果没有某种形式的模拟工具,预测这些流对产品性能的影响的能力是耗时且昂贵的……SOLIDWORKS Flow Simulation使用计算流体动力学(CFD)分析来实现快速、高效的流体流动模拟,可以轻松计算流体力,帮助设计人员了解液体或气体对产品性能的影响,并将结果与实验现实进行比较。在本研究中,工程模拟证实了使用水力旋流器捕获柴油烟尘颗粒的重要性,与实验实际相比,误差率仅为4%。
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