基于随机过程的铁矿进排水系统能耗评估数学模型

IF 2.8 Q2 MINING & MINERAL PROCESSING Mining of Mineral Deposits Pub Date : 2022-12-30 DOI:10.33271/mining16.04.019
O. Sinchuk, R. Strzelecki, I. Sinchuk, Теtуаnа Веridzе, V. Fedotov, V. Baranovskyi, K. Budnikov
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引用次数: 1

摘要

目的是开发一个统一的数学模型来评估进水-排水过程的能源效率,作为从铁矿地下开采抽水的随机方法的真实变体。方法。研究过程基于概率论方法以及随机建模方法。随机函数积分已被简化为其坐标的总和,并进一步过渡到适当的边界。调查结果。根据一个标准运营铁矿的输入参数,建立了一个作为随机过程的进水-排水系统的数学模型。上述内容使实际评估、证实和获得特定生产设施的可能性成为可能,并使涉及确定排水过程随机特征的结果泛化成为可能。独创性首次将铁矿地下排水作为一个随机过程建立了数学模型。过程特征已经根据水泵技术的随机性进行了识别。与现有设置相比,新的模型参数表征了它们的色散。获得完全能耗特性的可能性已经获得:用于排水;地下水收集器中的积水量;用于在作为随机过程的特定时期内从指定矿井深度抽水。利用铁矿地下集水器积水速度的非线性规律,对其排水特性进行了分析和判别。实际意义。根据铁矿石的开采情况,利用地下水收集器中积水速度的统计数据,建立了一个广义排水数学模型,将其作为一个随机过程。已经证明,如果地下水收集器中的积水速度坐标服从正态分布规律,那么将排水描述为一个随机过程是有利的。所开发的方法将排水年龄作为一个随机过程进行研究,有助于扩大在铁矿石原料地下开采过程中进行的其他辅助作业的研究范围。
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Mathematical model to assess energy consumption using water inflow-drainage system of iron-ore mines in terms of a stochastic process
Purpose is to develop a unified mathematical model to assess energy efficiency of a water inflow-drainage process as the real variant of stochastic method for water pumping from underground workings of iron-ore mines. Methods. The research process was based upon the methods of probability theory as well as stochastic modelling methods. The stochastic function integration has been reduced to summation of its ordinates and further transition to a proper boundary. Findings. A mathematical model of a water inflow-drainage system as a stochastic process has been developed in terms of input parameters of a standard operating iron-ore mine. The abovementioned has made it possible to assess realistically, substantiate, and obtain possibilities for a specific production facility as well as for generalization of the results involving determination of stochastic characteristics of drainage process. Originality. For the first time, a mathematical model of drainage from underground levels of iron-ore mines has been developed as a stochastic process. The process characteristics have been identified relying upon randomness of a water pumping technique. In contrast to the available settings, the new model parameters characterize their dispersion. Possibility to obtain complete characteristics of energy consumption has been obtained: for drainage; for water accumulation volume in underground water collectors; for water pumping from the specified mine depths over the specific period as random processes. A number of drainage features have been analyzed and differentiated being determined with the help of nor-mal law of water accumulation velocity in the underground water collectors in iron-ore mines. Practical implications. In terms of operating iron-ore mine, a generalized drainage mathematical model has been developed as a stochastic process using statistical data concerning water accumulation velocity in the underground water collectors. It has been proved that if the ordinates of water accumulation velocity in the underground water collectors obey the normal distribution law then it is expedient to characterize drainage as a stochastic process. The developed methods, studying drain-age as a stochastic process, help expand the research boundaries involving other auxiliary operations performed during underground mining of iron ore raw materials.
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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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