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Calculation model of coal comminution energy consumption

机译:煤炭粉碎能耗计算模型

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Experiments on comminution energy of different coals under conditions for CFB (circulating fluidized bed) boilers were carried out in a jaw crusher and a parallel roller crusher. The R-R (Rosin-Rammler) distribution was used to describe the size distribution of the crushing product. The size distribution of the product has a significant influence on comminution energy. With lower values of X-P=63.2% (size modulus) or a (distribution modulus), the comminution energy increases. With a fixed particle size distribution of the product, the comminution energy increases gradually with the increasing of feed coal size, while, when the feed coal size is larger than 15 mm, the effect can be neglected. With a fixed outlet width of the crusher, the average product size tends to be finer when smaller sized particles or coal with higher HGI (Hardgrove grindability index) are fed into the crusher. Therefore, in coal preparation process, the adjustment of the crusher should be performed considering coal grindability or crushability and the feed coal size distribution. At last, an empirical model of comminution energy was proposed and validated by the measured values with +/- 25% of accuracy. (C) 2016 Elsevier Ltd. All rights reserved.
机译:在颚式破碎机和平行辊式破碎机中,对循环流化床锅炉条件下不同煤的粉碎能进行了实验。 R-R(Rosin-Rammler)分布用于描述破碎产品的尺寸分布。产品的尺寸分布对粉碎能量有重要影响。当X-P的值较低时,即为63.2%(尺寸模量)或a(分布模量),则粉碎能增加。在产物的粒径分布固定的情况下,粉碎能随着进料煤粒度的增加而逐渐增加,而当进料煤粒度大于15mm时,其效果可忽略不计。在破碎机的出口宽度固定的情况下,将较小尺寸的颗粒或具有较高HGI(Hardgrove可磨性指数)的煤进料时,平均产品尺寸往往会更细。因此,在选煤过程中,应根据煤的可磨性或可破碎性以及进料煤的粒度分布来调整破碎机。最后,提出了一种粉碎能量的经验模型,并通过测量值进行了验证,精度为+/- 25%。 (C)2016 Elsevier Ltd.保留所有权利。

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