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CFD SIMULATIONS OF CYCLONE SEPARATORS WITH DIFFERENT DIAMETERS: Analysis of gas cyclones with different cylinder diameters

机译:具有不同直径的旋风分离器的CFD模拟:不同圆柱直径的气体旋风分离器的分析

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The present work is based on studying the effect of varying cyclone main body diameter on its performance. For this purpose Stairmand high efficiency cyclone with main body diameter of 0.29m has been considered. Three different diameters are considered, viz. 0.9D, 1.0D and 1.1 D; with D as the diameter of standard cyclone model and the constants being the scaling factor. Pressure drops and collection efficiencies of all the cyclone models have been predicted using commercially available CFD code FLUENT 6.3.26. High quality block structured hexahedral mesh has been created using industry standard software ICEM CFD, upon which the Navier-Stokes equations are solved iteratively using finite volume methods. Reynolds stress model is used as a closure model to solve Reynolds averaged Navier-Stokes (RANS) equations that solves for stress tensors together with the equation for the dissipation rates. The present study shows remarkable effect of the cyclone diameter on its performance which are discussed in details.
机译:本作本作基于研究不同旋风机主体直径对其性能的影响。为此目的,静止效率高效率旋风,主体直径为0.29m。考虑了三个不同的直径,viz。 0.9d,1.0d和1.1 d;用D作为标准旋风模型的直径,常数是缩放因子。所有旋风模型的压降和收集效率都已使用商业上可获得的CFD代码精通6.3.26预测。使用工业标准软件ICEM CFD创建了高质量的块结构六偏向网格,使用有限体积方法迭代地解决了Navier-Stokes方程。 Reynolds应力模型用作封闭模型来解决reynolds平均的Navier-Stokes(RAN)方程,其解决应力张力与耗散速率的等式一起解决。本研究表明了旋风直径对细节讨论的性能的显着影响。

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