Influence of hydrodynamic effects on dispersoid structural changes under microdisintegration

N. Khrunina
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Abstract

The purpose of the presented study is to give a theoretical substantiation of the formation process of a high-clay sand dispersoid from placers with a high content of fine and finely dispersed gold under changing hydrodynamic parameters of the hydro mixture flow by means of enclosing and reflecting surfaces of the proposed installation. The object of the research is the process of hydrodynamic disintegration. The subject of the study includes the main parameters of the hydrodynamic effect on the mineral environment and the destruction nature of high-clay sands under hydrodynamic conditions. While doing the research, the author used the methods for constructing a mathematical model of dispersoid transformation under hydrodynamic effect on the hydro mixture, analytical and numerical calculations. The analysis of the aspects of hydrodynamic phenomena and interactions made it possible to substantiate the dispersoid formation process based on the intensification of microdisintegration and to identify the characteristic impact factors as well. Based on the theory of changes in the thermodynamic potential of the system of particle surfaces under dynamic exposure, a method has been proposed for determining the hydrodynamic variation parameters of the hydromixture structural component in the closed cavity of the generator when interacting with the elements of the enclosing and reflecting surfaces. The performed numerical calculations allowed to reveal a significant increase in the specific interphase surface of the dispersoid of the mineral component. The interaction of the elements of enclosing and reflecting surfaces according to the proposed innovative layout of elements location in the generator under the directed supply of the hydromixture from the nozzle into a closed cavity resulted in the increase from 3 to 4 times. A new design of a hydrodynamic generator and a flow diagram have been introduced on order to activate the extraction process of microparticles of valuable components.
流体动力效应对微崩解下分散体结构变化的影响
本研究的目的是通过所提出的装置的封闭面和反射面,在改变水力混合流的水动力参数下,为高粘土砂的形成过程提供理论依据。研究的对象是水动力解体过程。本课题包括水动力对矿物环境影响的主要参数和水动力条件下高粘砂的破坏性质。在研究过程中,作者采用了建立水动力作用下水混合物弥散变换的数学模型、解析和数值计算的方法。通过对水动力现象和相互作用方面的分析,可以证实基于微崩解加剧的分散形成过程,并确定特征影响因素。基于动态暴露下颗粒表面系统热力学势的变化理论,提出了一种确定发电机封闭腔内水混合结构部件与封闭面和反射面元素相互作用时的水动力变化参数的方法。所进行的数值计算允许揭示显着增加的特定相界面表面的矿物成分的分散。根据所提出的元件位置的创新布局,在喷嘴向封闭腔内直接供应氢化混合物的情况下,封闭面和反射面元件的相互作用使其从3倍增加到4倍。介绍了一种新的流体动力发生器设计和流程,以激活有价组分微粒的提取过程。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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