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Performance characteristics of pilot plant dense media hydrocyclone for beneficiation of coal and 3-D CFD simulation

机译:煤选矿中试用重介质水力旋流器的性能特征及3-D CFD模拟

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Dense-medium separators have proven to be the most efficient processes for removing the undesirable material from run-of-mine coal. The application of high-pressure feed injection into dense-medium cyclones to provide an elevated centrifugal force has recently been found to allow efficient separation performances for the treatment of fine coal (i.e., <1000 γm). However, high-pressure injection requires specialized pumps and results in relatively high maintenance requirements. the Current study involves experimental investigation of separation performance characteristics of the dense media hydrocyclone (DMC). A pilot plant DMC has been designed and fabricated for performance characterization. Experiments have been conducted on 300. mm dense medium cyclone treating coal in the size range of -6 to +2. mm using magnetite as the medium under operating conditions. The operating variable was the specific gravity of the medium, feed inlet pressure and feed inlet flow rate. The ash contents of the feed coal reporting to the overflow and underflow have been analyzed qualitatively. The result indicates that the use of magnetite as dense medium in DMC resulted in the yield of clean coal, which is 5% more when the air core is suppressed as compared to the same conditions when the air core remains. A 3-D geometry is created in Gambit to support the experimental findings by using CFD simulation. It is interesting to observe that experimental findings agree well with the simulation results.
机译:事实证明,密集介质分离器是从残煤中去除不良物质的最有效方法。最近发现,向致密介质旋风分离器中施加高压进料以提供升高的离心力可实现有效的分离性能,以处理细煤(即<1000γm)。但是,高压喷射需要专用的泵,并且导致相对较高的维护要求。当前的研究涉及对重介质水力旋流器(DMC)分离性能特征的实验研究。已经设计和制造了中试工厂DMC以进行性能表征。已经对尺寸为-6至+2的300.mm密度中等的旋风分离器进行了实验。在操作条件下使用磁铁矿作为介质。操作变量是介质的比重,进料入口压力和进料入口流速。定性分析了上溢和下溢的进料煤灰分。结果表明,在DMC中使用磁铁矿作为致密介质可产生洁净煤,与空心球保留时的相同条件相比,空心球受抑制的产量高出5%。通过使用CFD仿真,在Gambit中创建了3-D几何形状以支持实验结果。有趣的是,实验结果与模拟结果非常吻合。

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