首页> 外文期刊>Advanced Powder Technology: The internation Journal of the Society of Powder Technology, Japan >Numerical study of flow field in new design cyclone separators with one, two and three tangential inlets
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Numerical study of flow field in new design cyclone separators with one, two and three tangential inlets

机译:一种新设计旋风分离器流域的数值研究,具有一个,两个和三个切向入口

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Numerical study of the fluid flow and particle dynamics is presented by numerical techniques to characterize the performance of new design cyclone separators with one, two and three tangential inlets. The design of this cyclone is based on the idea of improving cyclone performance by increasing the vortex length. This cyclone differs from a conventional cyclone with the separation space. Instead of conical part, the separation space of this cyclone consists of an outer cylinder and a vortex limiter. The Reynolds averaged Navier-Stokes equations with Reynolds stress turbulence model (RSM) are solved by use of the finite volume method based on the SIMPLE pressure correction algorithm in the computational domain. The Eulerian-Lagrangian computational procedure is used to predict particles tracking in the cyclones. The velocity fluctuations are simulated using the Discrete Random Walk (DRW). In the results the effects of number of inlets on the different important parameters such as pressure drop, collection efficiency, axial velocity and turbulence are investigated and deeply discussed. Contours of velocity, pressure and turbulent kinetic energy within these cyclones with different number of inlets are shown. The results show that the cyclone with three inlets has more collection efficiency, less pressure drop and less turbulence distribution with respect to cyclones with one and two inlets which is good in cyclones performance. Generally it is recommended to use the new cyclone designs with higher number of inlets. (C) 2017 The Society of Powder Technology Japan. Published by Elsevier B.V. and The Society of Powder Technology Japan. All rights reserved.
机译:通过数值技术提出了流体流动和粒子动力学的数值研究,以表征具有一个,两个和三个与三个切向入口的新设计旋风分离器的性能。该旋风的设计基于通过增加涡流长度来改善旋风性能的想法。该旋风分离器与具有分离空间的常规旋风分离器不同。该旋风器的分离空间而不是锥形部分,而是由外筒和涡流限制器组成。利用基于计算域中的简单压力校正算法的有限体积方法,通过使用基于计算域中的简单压力校正算法来解决与Reynolds应力湍流模型(RSM)的reynolds vier-stokes方程。 Eulerian-Lagrangian计算程序用于预测旋风器中的粒子跟踪。使用离散随机步行(DRW)模拟速度波动。结果在结果中,研究并深受讨论了对压降,收集效率,轴向速度和湍流等不同重要参数对不同重要参数的影响。示出了这些旋风内的速度,压力和湍流动能的轮廓,具有不同数量的入口。结果表明,具有三个入口的旋风内具有更多的收集效率,较小的压降和相对于旋风分离器的压力降低和湍流分布,旋风分离器具有良好的旋风分离器性能。一般来说,建议使用具有较高数量的入口的新旋风设计。 (c)2017年日本粉末科技学会。由elsevier b.v发表。和日本粉末科技会。版权所有。

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