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Unambiguous Optimization of Multicomponent Separation

机译:多组分分离的明确优化

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The composition of multi-component materials is proved to be unambiguously determined by the composition uncertainty parameter (composition entropy).At the same time, every component, depending on its content, introduces a certain value into this parameter.Quality criterion of multi-component separation is determined by the total change of this parameter for all products obtained as a result of the separation process. This parameter can unambiguously estimate both multi-product separation and complicated schemes of modem beneficiation plants. It can be used to estimate binary mixtures separation, too.During the optimization of multi-product separation, another problem arises, which is not peculiar to binary mixtures. In this case, the total efficacy depends on the order of separation boundaries,as well.In the present paper, a specific example of initial product separation into seven products by six boundaries is investigated. It is clear that with respect to a single boundary, two products only can be obtained.In this case, the separation optimum is shown to correspond to the separation of boundary-class particles equally into both products.We have also established that from the point of view of entropy, the maximal possible separation efficacy corresponds to equiprobable composition of the initial mixture, i.e., the fine product quantity in the material to be separated is equal to that of the coarse product.Three groups of experiments were carded out. In the first group, the boundaries were consecutively specified from the finest to the coarsest one. In the second group, the boundaries were set vice-versa, i.e., consecutively from the coarsest to the finest one.In the third group, no sequence was observed. At every separation stage, a boundary was specified in such a way that the separated material composition was as close as possible to equiprobable one relative to this boundary.Total efficacy was different in all the three cases. In third group of experiments, its value is the highest, which confirms the advanced supposition.The obtained results are phenomenological, they can be applied to any processes of solid, liquid and gaseous materials separation.
机译:证明了多组分材料的组成是由组成不确定性参数(组成熵)明确确定的,同时,每种组分根据其含量将一定的值引入该参数中。对于分离过程中获得的所有产品,此参数的总变化决定了分离。该参数可以明确估计现代选矿厂的多产品分离和复杂方案。它也可以用于估计二元混合物的分离。在多产品分离的优化过程中,会出现另一个问题,这对二元混合物而言并不是特有的。在这种情况下,总功效也取决于分离边界的顺序。在本文中,研究了将初始产品通过六个边界分离为七个产品的具体示例。显然,对于一个单一边界,只能获得两个产物,在这种情况下,分离最优值显示为对应于将边界类颗粒均等地分离到两个产物中。从熵的角度来看,最大可能的分离效率对应于初始混合物的等概率组成,即,待分离物料中的细产物量等于粗产物的量。进行了三组实验。在第一组中,从最细到最粗的顺序连续地指定了边界。在第二组中,反之亦然,即从最粗到最细的连续设置边界。在第三组中,未观察到任何序列。在每个分离阶段,都以这样一种方式指定边界,即所分离的物料组成相对于该边界尽可能接近等价的三种方法的总功效是不同的。在第三组实验中,它的值最高,证实了先进的假设。所获得的结果是现象学上的,可以应用于固体,液体和气体物质分离的任何过程。

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