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首页> 外文期刊>International Journal of Mineral Processing >Numerical investigation of the separation behaviours of fine particles in large dense medium cyclones
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Numerical investigation of the separation behaviours of fine particles in large dense medium cyclones

机译:大密度介质旋风分离器中细颗粒分离行为的数值研究

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摘要

Use of large dense medium cyclones (DMCs) is a potential trend in the coal industry but its usage is limited by the poor separation efficiency of fine particles. This paper presents a numerical study of the multiphase flows and performance of DMCs used for coal preparation by means of the two-fluid model. The validity of the model has been verified by various applications. It is used here to study the behaviours of fine particles in a 2-m DMC that is larger than the biggest DMCs reported thus far in the coal industry. The numerical results show that in the extra-large DMC, the poor separation efficiency of fine particles gets worse compared to that of a widely used 1-m DMC. This deficiency is found to be attributed to the strong vortexes developed and the asymmetrical separation zone that can be characterised by the correlation between pressure gradient and tangential velocity. Several modifications with respect to mounting degree, operational Head, conical section length, and inlet number are introduced to improve the performance of the 2-m DMC. It is shown that the separation efficiency of fine particles in the 2-m DMC can be better compared to the 1-m DMC by increasing the Head or conical section length, because such modifications reduce the asymmetrical separation zone and/or amount of vortexes. (C) 2015 Elsevier B.V. All rights reserved.
机译:在煤炭工业中,使用大密度介质旋风分离器(DMC)是一个潜在的趋势,但由于细颗粒的分离效率差,其使用受到限制。本文通过双流模型对用于选煤的DMC的多相流动和性能进行了数值研究。该模型的有效性已被各种应用程序验证。在这里,它用于研究2 m DMC中细颗粒的行为,该行为大于迄今为止在煤炭行业中报告的最大DMC。数值结果表明,在超大型DMC中,与广泛使用的1-m DMC相比,细颗粒的分离效率差。发现该缺陷归因于形成的强旋涡和不对称分离区,该不对称分离区可以通过压力梯度和切向速度之间的相关性来表征。引入了有关安装度,操作头,圆锥形截面长度和入口数量的一些修改,以提高2-m DMC的性能。结果表明,通过增加压头或圆锥形截面的长度,与1-m DMC相比,2-m DMC中细颗粒的分离效率会更高,因为这样的修改减少了不对称分离区和/或涡旋量。 (C)2015 Elsevier B.V.保留所有权利。

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