矿山企业水工系统无压流动研究

IF 2.8 Q2 MINING & MINERAL PROCESSING Mining of Mineral Deposits Pub Date : 2023-03-30 DOI:10.33271/mining17.01.028
Ye.V. Semenenko, O. Medvedieva, V. Medianyk, Borys Bluyss, Oleksandr Khaminich
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引用次数: 0

摘要

意图本研究的目的是建立一个无压流动的数学模型,该数学模型发生在溢流层过墙的某些区域。使用该模型,可以计算溢流层的高度和长度,以及由于溢流而抽取部分流体而导致的通道流速变化。方法。该研究采用了综合的多阶段分析方法。首先,为了建立溢流层过墙部分区域出现的渠道无压流的数学模型,本研究基于堰流量系数的计算公式,分析确定了过墙流量的相关性。在第二阶段,建立了矩形通道中水力混合物无压流动的数学模型,该矩形通道具有通过壁的溢流,以确定流的参数和流态。调查结果。对于不同的作用力参数和流体过流过程参数,得到了过流通道壁无量纲高度和有效临界流深与无量纲流通道长度的关系。这使得研究指定参数的各种值沿通道的这些值变化的动力学成为可能,并评估相关因素对沿通道的无压流动特性和流体通过壁溢流过程的影响程度。独创性首次将通道中无压流动的模型推广到溢流层穿过墙壁的某些区域的情况下,当溢流层的长度和高度不是由侧面上的孔决定的,而是由相应流速的降低来控制的。该模型首次能够计算溢流层的高度和长度,以及在不稳定和未计算的流态下,由于溢流导致部分流体排出而导致的通道流速变化。实际意义。该数学模型和计算结果可用于确保矿山企业物流系统的环境安全,以及评估选矿厂和冶金厂废物无压液压运输通道壁溢流时的环境污染量。
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Research into the pressureless flow in hydrotechnical systems at mining enterprises
Purpose. The research purpose is to develop a mathematical model of a pressureless flow in a channel with the occurrence in some areas of overflow layer through the wall. Using this model, it is possible to calculate the overflow layer height and length, as well as the change in flow rate in the channel due to the withdrawal of part of the fluid as a result of the overflow. Methods. The research uses a comprehensive multi-stage analytical approach. Firstly, in order to develop a mathematical model for a pressureless flow in the channel with the occurrence in some areas of overflow layer through the wall, this research analytically determines the dependence of the flow rate through the channel wall based on formulas for calculating the weir discharge coefficient. At the second stage, a mathematical model of a hydraulic mixture pressureless flow in a rectangular channel with an overflow through the wall is developed to determine the parameters and flow regimes of the stream. Findings. The dependences of the dimensionless height of the overflow through the channel wall and the effective critical flow depth on the dimensionless current channel length have been obtained for various values of the acting force parameters and the process parameter of the fluid overflow through the channel wall. This made it possible to study the dynamics of changes in these values along the channel for various values of the specified parameters, and to assess the degree of influence of the relevant factors on the characteristics of the pressureless flow along the channel and the process of fluid overflow through wall. Originality. For the first time, the model of the pressureless flow in the channel is generalized for the case of occurrence in some areas of overflow layer through the wall, when the length and height of the overflow layer are not determined by a hole in the side surface, but are controlled by a decrease in the corresponding flow rate. For the first time, this model makes it possible to calculate the height and length of the overflow layer and the change in the flow rate in the channel due to the withdrawal of part of the fluid as a result of the overflow in cases of overflowing condition of the channel with the stream under unstable and non-calculated flow regimes. Practical implications. The mathematical model and the calculation results can be used to ensure the environmental safety of the logistics systems of mining enterprises, as well as to assess the volume of the environmental pollution in case of overflowing through the wall of the channels of pressureless hydraulic transportation of waste from mineral processing and metallurgical plants.
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来源期刊
Mining of Mineral Deposits
Mining of Mineral Deposits MINING & MINERAL PROCESSING-
CiteScore
5.20
自引率
15.80%
发文量
52
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